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  <front>
    <journal-meta>
      <journal-id journal-id-type="publisher-id">118</journal-id>
      <journal-id journal-id-type="index">urn:lsid:arphahub.com:pub:71cc5dc6-a767-5334-951f-ef6ae8936459</journal-id>
      <journal-title-group>
        <journal-title xml:lang="en">Plant Ecology and Evolution</journal-title>
        <abbrev-journal-title xml:lang="en">plecevo</abbrev-journal-title>
      </journal-title-group>
      <issn pub-type="ppub">2032-3913</issn>
      <issn pub-type="epub">2032-3921</issn>
      <publisher>
        <publisher-name>Meise Botanic Garden and Royal Botanical Society of Belgium</publisher-name>
      </publisher>
    </journal-meta>
    <article-meta>
      <article-id pub-id-type="doi">10.5091/plecevo.188286</article-id>
      <article-id pub-id-type="publisher-id">188286</article-id>
      <article-categories>
        <subj-group subj-group-type="heading">
          <subject>Research Article</subject>
        </subj-group>
        <subj-group subj-group-type="biological_taxon">
          <subject>Arecaceae</subject>
        </subj-group>
        <subj-group subj-group-type="scientific_subject">
          <subject>Morphology &amp; Anatomy</subject>
          <subject>Taxonomy</subject>
        </subj-group>
        <subj-group subj-group-type="geographical_area">
          <subject>Brazil</subject>
        </subj-group>
      </article-categories>
      <title-group>
        <article-title>A new dwarf palm from the campo rupestre: another piece of the <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> complex (<tp:taxon-name><tp:taxon-name-part taxon-name-part-type="family" reg="Arecaceae">Arecaceae</tp:taxon-name-part></tp:taxon-name>)</article-title>
      </title-group>
      <contrib-group content-type="authors">
        <contrib contrib-type="author" corresp="no">
          <name name-style="western">
            <surname>Reis</surname>
            <given-names>Stephane da Silva</given-names>
          </name>
          <uri content-type="orcid">https://orcid.org/0000-0002-0138-5470</uri>
          <xref ref-type="aff" rid="A1">1</xref>
          <role content-type="http://credit.niso.org/contributor-roles/writing-original-draft/">Writing - original draft</role>
          <role content-type="http://credit.niso.org/contributor-roles/formal-analysis/">Formal analysis</role>
          <role content-type="http://credit.niso.org/contributor-roles/investigation/">Investigation</role>
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        </contrib>
        <contrib contrib-type="author" corresp="no">
          <name name-style="western">
            <surname>Francino</surname>
            <given-names>Dayana Maria Teodoro</given-names>
          </name>
          <uri content-type="orcid">https://orcid.org/0000-0002-9160-1893</uri>
          <xref ref-type="aff" rid="A2">2</xref>
          <role content-type="http://credit.niso.org/contributor-roles/writing-original-draft/">Writing - original draft</role>
          <role content-type="http://credit.niso.org/contributor-roles/writing-review-editing/">Writing - review and editing</role>
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          <role content-type="http://credit.niso.org/contributor-roles/visualization/">Visualization</role>
        </contrib>
        <contrib contrib-type="author" corresp="no">
          <name name-style="western">
            <surname>Dias</surname>
            <given-names>Bernardo Otávio</given-names>
          </name>
          <uri content-type="orcid">https://orcid.org/0009-0001-7065-4427</uri>
          <xref ref-type="aff" rid="A2">2</xref>
          <role content-type="http://credit.niso.org/contributor-roles/investigation/">Investigation</role>
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        </contrib>
        <contrib contrib-type="author" corresp="no">
          <name name-style="western">
            <surname>Ferreira-Filho</surname>
            <given-names>Ramon Martins</given-names>
          </name>
          <uri content-type="orcid">https://orcid.org/0009-0005-9637-537X</uri>
          <xref ref-type="aff" rid="A2">2</xref>
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        </contrib>
        <contrib contrib-type="author" corresp="no">
          <name name-style="western">
            <surname>Pinto</surname>
            <given-names>Lucas Giovanni</given-names>
          </name>
          <uri content-type="orcid">https://orcid.org/0009-0007-2926-0446</uri>
          <xref ref-type="aff" rid="A1">1</xref>
          <role content-type="http://credit.niso.org/contributor-roles/data-curation/">Data curation</role>
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        </contrib>
        <contrib contrib-type="author" corresp="no">
          <name name-style="western">
            <surname>Nunes</surname>
            <given-names>Elaine Lopes Pereira</given-names>
          </name>
          <uri content-type="orcid">https://orcid.org/0000-0002-8317-0472</uri>
          <xref ref-type="aff" rid="A3">3</xref>
          <role content-type="http://credit.niso.org/contributor-roles/writing-review-editing/">Writing - review and editing</role>
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        </contrib>
        <contrib contrib-type="author" corresp="yes">
          <name name-style="western">
            <surname>Sant’Anna-Santos</surname>
            <given-names>Bruno Francisco</given-names>
          </name>
          <email xlink:type="simple">bsantannaufmg@gmail.com</email>
          <uri content-type="orcid">https://orcid.org/0000-0002-8327-2081</uri>
          <xref ref-type="aff" rid="A1">1</xref>
          <role content-type="http://credit.niso.org/contributor-roles/conceptualization/">Conceptualization</role>
          <role content-type="http://credit.niso.org/contributor-roles/writing-original-draft/">Writing - original draft</role>
          <role content-type="http://credit.niso.org/contributor-roles/writing-review-editing/">Writing - review and editing</role>
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          <role content-type="http://credit.niso.org/contributor-roles/visualization/">Visualization</role>
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      </contrib-group>
      <aff id="A1">
        <label>1</label>
        <addr-line content-type="verbatim">Departamento de Botânica, Universidade Federal do Paraná, Curitiba, Paraná, Brazil</addr-line>
        <institution>Universidade Federal do Paraná</institution>
        <addr-line content-type="city">Curitiba</addr-line>
        <country>Brazil</country>
      </aff>
      <aff id="A2">
        <label>2</label>
        <addr-line content-type="verbatim">Departamento de Ciências Biológicas, Universidade Federal dos Vales do Jequitinhonha e Mucuri (UFVJM, Campus JK), Diamantina, Minas Gerais, Brazil</addr-line>
        <institution>Universidade Federal dos Vales do Jequitinhonha e Mucuri (UFVJM, Campus JK)</institution>
        <addr-line content-type="city">Diamantina</addr-line>
        <country>Brazil</country>
      </aff>
      <aff id="A3">
        <label>3</label>
        <addr-line content-type="verbatim">National Coalition of Independent Scholars, Battleboro, USA</addr-line>
        <institution>National Coalition of Independent Scholars</institution>
        <addr-line content-type="city">Battleboro</addr-line>
        <country>United States of America</country>
      </aff>
      <author-notes>
        <fn fn-type="corresp">
          <p>Corresponding author: Bruno Francisco Sant’Anna-Santos (<email xlink:type="simple">brunofrancisco@ufpr.br</email>)</p>
        </fn>
        <fn fn-type="edited-by">
          <p><bold>Academic editor</bold>: Igor Kessous</p>
        </fn>
      </author-notes>
      <pub-date pub-type="collection">
        <year>2026</year>
      </pub-date>
      <pub-date pub-type="epub">
        <day>16</day>
        <month>06</month>
        <year>2026</year>
      </pub-date>
      <volume>159</volume>
      <issue>2</issue>
      <fpage>356</fpage>
      <lpage>369</lpage>
      <uri content-type="arpha" xlink:href="http://openbiodiv.net/AD42E083-A3D2-5AF6-9712-049550E9ADCC">AD42E083-A3D2-5AF6-9712-049550E9ADCC</uri>
      <history>
        <date date-type="received">
          <day>10</day>
          <month>02</month>
          <year>2026</year>
        </date>
        <date date-type="accepted">
          <day>10</day>
          <month>04</month>
          <year>2026</year>
        </date>
      </history>
      <permissions>
        <copyright-statement>Stephane da Silva Reis, Dayana Maria Teodoro Francino, Bernardo Otávio Dias, Ramon Martins Ferreira-Filho, Lucas Giovanni Pinto, Elaine Lopes Pereira Nunes, Bruno Francisco Sant’Anna-Santos</copyright-statement>
        <license license-type="creative-commons-attribution" xlink:href="http://creativecommons.org/licenses/by/4.0/" xlink:type="simple">
          <license-p>This is an open access article distributed under the terms of the Creative Commons Attribution License (CC BY 4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.</license-p>
        </license>
      </permissions>
      <abstract>
        <label>Abstract</label>
        <p><bold>Background and aims</bold> – In the Espinhaço Range, the campos rupestres harbour many endemic acaulescent <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic>. Populations assigned to <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> include geographically and ecologically distinct populations. We reassessed the two populations used in the original circumscription of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> and revealed that they represent distinct species.</p>
        <p><bold>Material and methods</bold> – We compared morphological and anatomical characters from field collections of both populations. The pinnae anatomy was studied using light microscopy of free-hand cross sections. A diagnostic comparison with other members of the <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> complex is provided, together with a distribution map.</p>
        <p><bold>Key results</bold> – <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> sp. nov. resembles <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> but differs in leaf size, inflorescence architecture, and flower arrangement. <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> shows flowers only in triads, whereas <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> frequently bears tetrads and pentads. Additional diagnostic traits include indumentum on the pistil of the flowers in pre-anthesis, staminode shape, fruit and endocarp size, and several pinnae anatomy characters. An accessory vascular bundle within the expansion tissue is recorded only in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>, first recorded for the genus.</p>
        <p><bold>Conclusion</bold> – Morphological and anatomical evidence, together with geographic isolation and habitat differences, supports recognition of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> as a new species. <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> possess rare and exclusive morphological and anatomical characters. Our results highlight the need to reassess other poorly studied populations currently assigned as <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>. In addition, the data presented here corroborate the Espinhaço Range and its disjunctions as one of the centres of diversity of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic>. The discovery of this new species reinforces the uniqueness of the local flora and its classification as a priority area for conservation.</p>
      </abstract>
      <kwd-group>
        <label>Keywords</label>
        <kwd>Meridional Espinhaço</kwd>
        <kwd>
          <tp:taxon-name>
            <tp:taxon-name-part taxon-name-part-type="family" reg="Palmae">Palmae</tp:taxon-name-part>
          </tp:taxon-name>
        </kwd>
        <kwd>plant anatomy</kwd>
        <kwd>taxonomy</kwd>
      </kwd-group>
      <funding-group>
        <funding-statement>This study was financed in part by the Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - Brasil (CAPES) - Finance Code 001</funding-statement>
      </funding-group>
    </article-meta>
  </front>
  <body>
    <sec sec-type="Introduction" id="sec1">
      <title>Introduction</title>
      <p>The Espinhaço Range is found in eastern Brazil and extends for approximately 1,200 km (<xref ref-type="bibr" rid="B38">Rapini et al. 2008</xref>; <xref ref-type="bibr" rid="B48">Silveira et al. 2016</xref>). It occurs in a transition region encompassing two biodiversity hotspots, the Atlantic Forest and the Cerrado, and due to its remarkable biological diversity the Southern Espinhaço Range was recognized as a Biosphere Reserve (<xref ref-type="bibr" rid="B52">UNESCO 2005</xref>). In this region, the campos rupestres stand out for their high rates of endemism (<xref ref-type="bibr" rid="B48">Silveira et al. 2016</xref>; <xref ref-type="bibr" rid="B24">Morellato and Silveira 2018</xref>). These environments harbour a high number of rare and endemic species, including acaulescent palm species of the genus <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic> Mart. (<xref ref-type="bibr" rid="B37">Rabinowitz 1981</xref>; <xref ref-type="bibr" rid="B27">Noblick 2013</xref>).</p>
      <p>The genus is monophyletic (<xref ref-type="bibr" rid="B6">Dransfield et al. 2005</xref>, <xref ref-type="bibr" rid="B7">2008</xref>; <xref ref-type="bibr" rid="B21">Meerow et al. 2009</xref>), but <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic> comprises several species whose circumscription is challenging due to strong morphological similarity—a taxonomic problem that is particularly severe in species with subterranean or short stems, commonly found in high-elevation environments such as the Southern Espinhaço Range (<xref ref-type="bibr" rid="B28">Noblick 2017a</xref>). Even experienced taxonomists have difficulty distinguishing acaulescent <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic> (<xref ref-type="bibr" rid="B20">Marcato and Pirani 2001</xref>), both in the field and when analysing herbarium specimens, because diagnostic vegetative and reproductive characters used for identification—such as the arrangement and colour of pinnae—may be lost during pressing/drying or may be absent from specimen labels (<xref ref-type="bibr" rid="B14">Glassman 1972</xref>; <xref ref-type="bibr" rid="B7">Dransfield et al. 2008</xref>; <xref ref-type="bibr" rid="B25">Noblick 2009</xref>, <xref ref-type="bibr" rid="B27">2013</xref>, <xref ref-type="bibr" rid="B28">2017a</xref>, <xref ref-type="bibr" rid="B29">2017b</xref>; <xref ref-type="bibr" rid="B31">Noblick and Lorenzi 2010</xref>; <xref ref-type="bibr" rid="B10">Firmo et al. 2021</xref>; <xref ref-type="bibr" rid="B44">Sant’Anna-Santos et al. 2023a</xref>, <xref ref-type="bibr" rid="B45">2023b</xref>, <xref ref-type="bibr" rid="B46">2023c</xref>, <xref ref-type="bibr" rid="B47">2025</xref>).</p>
      <p>Before <xref ref-type="bibr" rid="B31">Noblick and Lorenzi (2010)</xref>, many acaulescent <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic> species currently recognized were treated as a single species, <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="petraea">petraea</tp:taxon-name-part></tp:taxon-name></italic> (Mart.) Becc. However, analysis of pinnae anatomy, combined with increased field experience by <xref ref-type="bibr" rid="B31">Noblick and Lorenzi (2010)</xref>, revealed that many populations formerly treated as <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="petraea">petraea</tp:taxon-name-part></tp:taxon-name></italic> represented undescribed species, and that <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="petraea">petraea</tp:taxon-name-part></tp:taxon-name></italic> probably does not occur in Brazil. Even species that are very similar may be anatomically distinct, making pinnae anatomy an important dataset for more detailed morphological studies of a given population, and a useful tool for resolving species complexes (<xref ref-type="bibr" rid="B28">Noblick 2017a</xref>).</p>
      <p>More recently, <xref ref-type="bibr" rid="B10">Firmo et al. (2021)</xref> showed that new anatomical data are also useful for separating similar species, revealing that <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> Noblick represents a complex of acaulescent <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic>. In <xref ref-type="bibr" rid="B46">Sant’Anna-Santos et al. (2023c)</xref>, the <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> complex began to be disentangled with the description of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="aristeae">aristeae</tp:taxon-name-part></tp:taxon-name></italic> Sant’Anna-Santos and, more recently, another population of the complex was recognized as <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="harenae">harenae</tp:taxon-name-part></tp:taxon-name></italic> Sant’Anna-Santos (<xref ref-type="bibr" rid="B10">Firmo et al. 2021</xref>; <xref ref-type="bibr" rid="B46">Sant’Anna-Santos et al. 2023c</xref>, <xref ref-type="bibr" rid="B47">2025</xref>).</p>
      <p>Currently, 70 <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic> species are recognized, of which 35 are acaulescent (<xref ref-type="bibr" rid="B25">Noblick 2009</xref>, <xref ref-type="bibr" rid="B27">2013</xref>, <xref ref-type="bibr" rid="B28">2017a</xref>, <xref ref-type="bibr" rid="B30">2018</xref>; <xref ref-type="bibr" rid="B33">Noblick et al. 2014</xref>; <xref ref-type="bibr" rid="B10">Firmo et al. 2021</xref>; <xref ref-type="bibr" rid="B44">Sant’Anna-Santos et al. 2023a</xref>, <xref ref-type="bibr" rid="B45">2023b</xref>, <xref ref-type="bibr" rid="B46">2023c</xref>, <xref ref-type="bibr" rid="B47">2025</xref>). In the Southern Espinhaço Range, <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> has the highest number of collection records, including populations geographically isolated (<xref ref-type="bibr" rid="B28">Noblick 2017a</xref>; <xref ref-type="bibr" rid="B47">Sant’Anna-Santos et al. 2025</xref>). Some of these populations are known from only one or a few collections, reinforcing the need to revisit them and reassess their morphology and pinnae anatomy (<xref ref-type="bibr" rid="B10">Firmo et al. 2021</xref>; <xref ref-type="bibr" rid="B47">Sant’Anna-Santos et al. 2025</xref>). When described by <xref ref-type="bibr" rid="B25">Noblick (2009)</xref>, in addition to the type population in an area adjacent to the Espinhaço Range, data from another geographically isolated population in the Espinhaço Range were also used to define the morphological spectrum of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>.</p>
      <p>Therefore, considering prior evidence (<xref ref-type="bibr" rid="B10">Firmo et al. 2021</xref>; <xref ref-type="bibr" rid="B44">Sant’Anna-Santos et al. 2023a</xref>, <xref ref-type="bibr" rid="B47">2025</xref>), we evaluate, separately, the morphology and anatomy of these two populations used by <xref ref-type="bibr" rid="B25">Noblick (2009)</xref> in the description of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>. We hypothesize that the two populations represent distinct species, which would further increase the need to reassess other populations treated as <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> since the revision of the genus by <xref ref-type="bibr" rid="B28">Noblick (2017a)</xref>. If confirmed, this new taxon will increase the diversity of endemic <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic> in campos rupestres and reinforce the need to protect and conserve these areas, which are under severe anthropogenic pressure.</p>
    </sec>
    <sec sec-type="materials|methods" id="sec2">
      <title>Material and methods</title>
      <p>This study was based on field observations in two different areas of the Minas Gerais State, Brazil (Fig. <xref ref-type="fig" rid="F1">1</xref>). The first area lies outside the Espinhaço Range and corresponds to the type population of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>, in a Cerrado sensu stricto area in the municipality of Jequitaí. The second area lies within the Espinhaço Range and corresponds to a campo rupestre in the municipality of Itacambira. These two populations were used in the protologue of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> for the description of the species (<xref ref-type="bibr" rid="B25">Noblick 2009</xref>) We conducted bibliographic surveys of available publications on the anatomy and taxonomy of the <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> complex (<xref ref-type="bibr" rid="B11">Glassman 1967</xref>, <xref ref-type="bibr" rid="B12">1968</xref>, <xref ref-type="bibr" rid="B13">1970</xref>, <xref ref-type="bibr" rid="B14">1972</xref>, <xref ref-type="bibr" rid="B15">1979</xref>, <xref ref-type="bibr" rid="B16">1987</xref>; <xref ref-type="bibr" rid="B17">Henderson et al. 1995</xref>; <xref ref-type="bibr" rid="B25">Noblick 2009</xref>, <xref ref-type="bibr" rid="B26">2010</xref>, <xref ref-type="bibr" rid="B27">2013</xref>, <xref ref-type="bibr" rid="B28">2017a</xref>, <xref ref-type="bibr" rid="B29">2017b</xref>; <xref ref-type="bibr" rid="B31">Noblick and Lorenzi 2010</xref>; <xref ref-type="bibr" rid="B49">Soares and Guimarães 2019</xref>; <xref ref-type="bibr" rid="B10">Firmo et al. 2021</xref>; <xref ref-type="bibr" rid="B44">Sant’Anna-Santos et al. 2023a</xref>, <xref ref-type="bibr" rid="B45">2023b</xref>, <xref ref-type="bibr" rid="B46">2023c</xref>, <xref ref-type="bibr" rid="B47">2025</xref>) and examined herbarium material (<named-content content-type="dwc:institutional_code" xlink:title="Universidade Federal dos Vales do Jequitinhonha e Mucuri" xlink:href="https://scientific-collections.gbif.org/institution/d70d80f4-1c52-469e-8eb1-cd62ffc0f5e8">DIAM</named-content>, <named-content content-type="dwc:institutional_code" xlink:title="Jardim Botânico do Rio de Janeiro" xlink:href="https://scientific-collections.gbif.org/institution/48b29504-e1ac-432c-a0d6-f09f46023207">RB</named-content>, <named-content content-type="dwc:institutional_code" xlink:title="Instituto de Pesquisas Ambientais" xlink:href="https://scientific-collections.gbif.org/institution/95c82c2d-a9e0-4aa5-8a40-6c589bfd6822">SP</named-content>, <named-content content-type="dwc:institutional_code" xlink:title="Universidade de São Paulo" xlink:href="https://scientific-collections.gbif.org/institution/d32ef874-a248-451e-bd16-8bf91e742241">SPF</named-content>, <named-content content-type="dwc:institutional_code" xlink:title="Jardim Botânico Plantarum" xlink:href="https://scientific-collections.gbif.org/institution/8a98655b-88a0-431f-a452-c2ce321c5b36">HPL</named-content>, <named-content content-type="dwc:institutional_code" xlink:title="San Jose State University, Museum of Birds and Mammals" xlink:href="https://scientific-collections.gbif.org/institution/48dfd1e9-ff16-403b-9d29-8d0ffd6f456c">MBM</named-content>, MCMG, <named-content content-type="dwc:institutional_code" xlink:title="Universidade Federal do Paraná" xlink:href="https://scientific-collections.gbif.org/institution/ab06648f-c439-4400-95d8-679bb2cd9f6e">UPCB</named-content>) and online databases (UB, ESA, NY, K).</p>
      <fig id="F1">
        <object-id content-type="doi">10.5091/plecevo.188286.figure1</object-id>
        <object-id content-type="arpha">1A32F2E1-7CBB-5F80-9DB8-A1AF6F2D5A56</object-id>
        <label>Figure 1.</label>
        <caption>
          <p>Geographic distribution of species of the <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> complex in Minas Gerais State, Brazil. The coloured lines indicate the municipalities of the type populations of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic>, <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>, and <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="aristeae">aristeae</tp:taxon-name-part></tp:taxon-name></italic>.</p>
        </caption>
        <graphic xlink:href="plecevo-159-356-g001.jpg" id="oo_1676890.jpg">
          <uri content-type="original_file">https://binary.pensoft.net/fig/1676890</uri>
        </graphic>
      </fig>
      <p>Morphological and anatomical terminology follows <xref ref-type="bibr" rid="B14">Glassman (1972)</xref>, <xref ref-type="bibr" rid="B7">Dransfield et al. (2008)</xref>, <xref ref-type="bibr" rid="B51">Tomlinson et al. (2011)</xref>, Noblick (<xref ref-type="bibr" rid="B28">2017a</xref>, <xref ref-type="bibr" rid="B29">2017b</xref>), and <xref ref-type="bibr" rid="B10">Firmo et al. (2021)</xref>. The circumscription adopted for <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic> follows <xref ref-type="bibr" rid="B28">Noblick (2017a)</xref> and Sant’Anna-Santos et al. (<xref ref-type="bibr" rid="B44">2023a</xref>, <xref ref-type="bibr" rid="B45">2023b</xref>, <xref ref-type="bibr" rid="B46">2023c</xref>, <xref ref-type="bibr" rid="B47">2025</xref>). Morphobiometric data and photographs were recorded in situ for both populations previously treated as <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> since <xref ref-type="bibr" rid="B25">Noblick (2009)</xref>, but here treated as different species: <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> and <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> sp. nov. Data were obtained from 15 reproductive individuals (bearing inflorescences and/or fruits) of each species, from which two botanical illustrations were prepared. The illustration of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> in <xref ref-type="bibr" rid="B25">Noblick (2009)</xref> was prepared using specimens from different populations (Fig. <xref ref-type="fig" rid="F2">2</xref>; <xref ref-type="bibr" rid="B25">Noblick 2009</xref>); therefore, we provide illustrations for both <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> and <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic>. For <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="aristeae">aristeae</tp:taxon-name-part></tp:taxon-name></italic>, considered by <xref ref-type="bibr" rid="B46">Sant’Anna-Santos et al. (2023c)</xref> as part of the <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> complex, data were taken from <xref ref-type="bibr" rid="B10">Firmo et al. (2021)</xref> and <xref ref-type="bibr" rid="B46">Sant’Anna-Santos et al. (2023c)</xref> and used to prepare Tables <xref ref-type="table" rid="T1">1</xref> and <xref ref-type="table" rid="T2">2</xref>. Flower samples from both populations were analysed fresh and immediately stored in ethanol for examination under a Bioptika L60T stereomicroscope coupled with a CMOS 12mp PLUS camera.</p>
      <fig id="F2">
        <object-id content-type="doi">10.5091/plecevo.188286.figure2</object-id>
        <object-id content-type="arpha">2E327F3C-3E57-5C0D-89BC-3B9078A9F4FC</object-id>
        <label>Figure 2.</label>
        <caption>
          <p><italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>. <bold>A</bold>. Acaulescent habit. <bold>B</bold>. Asymmetric pinnae with a long tapering tip. <bold>C</bold>. Unbranched inflorescence. <bold>D</bold>. Staminate flower. <bold>E</bold>. Sepals connate at the base. <bold>F</bold>. Filament bases connate. <bold>G</bold>. Lateral view of the stamen, sagittate anther base. <bold>H</bold>. Stamen, dorsal view. <bold>I</bold>. Trifid pistillode. <bold>J</bold>. Pistillate flower, sepals. <bold>K</bold>. Pistillate flower, petals. <bold>L</bold>. Pistil, glabrous ovary and dentate staminodes. <bold>M</bold>. Fruit covered by dense indumentum. <bold>N</bold>. Ellipsoid epicarp, lateral view. <bold>O</bold>. Basal view of the epicarp, pores. Based on <italic>Sant’Anna-Santos 405</italic> (<named-content content-type="dwc:institutional_code" xlink:title="Universidade Federal dos Vales do Jequitinhonha e Mucuri" xlink:href="https://scientific-collections.gbif.org/institution/d70d80f4-1c52-469e-8eb1-cd62ffc0f5e8">DIAM</named-content>). Illustration by Gustavo Surlo.</p>
        </caption>
        <graphic xlink:href="plecevo-159-356-g002.jpg" id="oo_1676891.jpg">
          <uri content-type="original_file">https://binary.pensoft.net/fig/1676891</uri>
        </graphic>
      </fig>
      <table-wrap id="T1" position="float" orientation="portrait">
        <label>Table 1.</label>
        <caption>
          <p>Differences in habitat and morphology among <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic>, <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>, and <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="aristeae">aristeae</tp:taxon-name-part></tp:taxon-name></italic>.</p>
        </caption>
        <table>
          <tbody>
            <tr>
              <td rowspan="1" colspan="1"/>
              <td rowspan="1" colspan="1">
                <bold>
                  <italic>
                    <tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name>
                  </italic>
                </bold>
              </td>
              <td rowspan="1" colspan="1">
                <bold>
                  <italic>
                    <tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name>
                  </italic>
                </bold>
              </td>
              <td rowspan="1" colspan="1">
                <bold>
                  <italic>
                    <tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="aristeae">aristeae</tp:taxon-name-part></tp:taxon-name>
                  </italic>
                </bold>
              </td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Habitat</td>
              <td rowspan="1" colspan="1">Campo rupestre</td>
              <td rowspan="1" colspan="1">Cerrado</td>
              <td rowspan="1" colspan="1">Campo rupestre</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Plant height</td>
              <td rowspan="1" colspan="1">37–80 cm</td>
              <td rowspan="1" colspan="1">62–100 cm</td>
              <td rowspan="1" colspan="1">100–165 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Leaf rachis</td>
              <td rowspan="1" colspan="1">21–57 cm</td>
              <td rowspan="1" colspan="1">79–97 cm</td>
              <td rowspan="1" colspan="1">94–145 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Leaves</td>
              <td rowspan="1" colspan="1">3–6(–10)</td>
              <td rowspan="1" colspan="1">6–11</td>
              <td rowspan="1" colspan="1">3–6</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Sheathing leaf base ca.</td>
              <td rowspan="1" colspan="1">12–20 cm long</td>
              <td rowspan="1" colspan="1">1.5–12 cm long</td>
              <td rowspan="1" colspan="1">13–23 cm long</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Pseudopetiole</td>
              <td rowspan="1" colspan="1">10–23 cm long</td>
              <td rowspan="1" colspan="1">15–33 cm long</td>
              <td rowspan="1" colspan="1">15–34 cm long</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">True petiole</td>
              <td rowspan="1" colspan="1">0–39.5 × 0.6–1.1 cm</td>
              <td rowspan="1" colspan="1">17.5–32 × 1.0–1.5 cm</td>
              <td rowspan="1" colspan="1">10–32.5 × 0.8–1.4 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Pinnae number</td>
              <td rowspan="1" colspan="1">18–43</td>
              <td rowspan="1" colspan="1">33–48</td>
              <td rowspan="1" colspan="1">38–67</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Pinna arrangement</td>
              <td rowspan="1" colspan="1">2–5(–6)</td>
              <td rowspan="1" colspan="1">2–4(–5)</td>
              <td rowspan="1" colspan="1">2–3(–4)</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Apical pinnae</td>
              <td rowspan="1" colspan="1">3–8.5 × 0.1–0.9 cm</td>
              <td rowspan="1" colspan="1">9–12 × 0.5–0.7 cm</td>
              <td rowspan="1" colspan="1">7–18 × 0.6–1.0 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Middle pinnae</td>
              <td rowspan="1" colspan="1">12–18 × 1.3–2.0 cm</td>
              <td rowspan="1" colspan="1">19–30 × 1.5–3.0 cm</td>
              <td rowspan="1" colspan="1">22–33 × 1.3–3.0 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Basal pinnae</td>
              <td rowspan="1" colspan="1">11–18 × 0.5–0.9 cm</td>
              <td rowspan="1" colspan="1">15.5–16 × 0.6–0.7 cm</td>
              <td rowspan="1" colspan="1">20–32 × 0.5–1.2 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Prophyll size</td>
              <td rowspan="1" colspan="1">5–14 × 1.0–1.8 cm</td>
              <td rowspan="1" colspan="1">6–16 × 1.3–2.6 cm</td>
              <td rowspan="1" colspan="1">7–23 × 1.3–4.8 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Inflorescence</td>
              <td rowspan="1" colspan="1">Usually branched</td>
              <td rowspan="1" colspan="1">Usually spicate</td>
              <td rowspan="1" colspan="1">Spicate or branched</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Inflorescence length</td>
              <td rowspan="1" colspan="1">8–26 cm</td>
              <td rowspan="1" colspan="1">16.5–34 cm</td>
              <td rowspan="1" colspan="1">36–71.5 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Peduncle</td>
              <td rowspan="1" colspan="1">8–16 cm</td>
              <td rowspan="1" colspan="1">8–27 cm</td>
              <td rowspan="1" colspan="1">18–42 × 0.4–0.9 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Axis of the inflorescence</td>
              <td rowspan="1" colspan="1">8–15 cm</td>
              <td rowspan="1" colspan="1">9.5–20 cm</td>
              <td rowspan="1" colspan="1">18–29.5 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Rachis of the inflorescence</td>
              <td rowspan="1" colspan="1">0–2.5 cm</td>
              <td rowspan="1" colspan="1">0–13 cm</td>
              <td rowspan="1" colspan="1">0–5(–10) cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Rachillae</td>
              <td rowspan="1" colspan="1">1–6</td>
              <td rowspan="1" colspan="1">1–8</td>
              <td rowspan="1" colspan="1">1–9</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Apical rachillae</td>
              <td rowspan="1" colspan="1">10.5–11 cm</td>
              <td rowspan="1" colspan="1">4.5–10 cm</td>
              <td rowspan="1" colspan="1">11–21 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Basal rachillae</td>
              <td rowspan="1" colspan="1">(2–)4–9.5 cm</td>
              <td rowspan="1" colspan="1">5–8 cm</td>
              <td rowspan="1" colspan="1">11–21 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Flower arrangement</td>
              <td rowspan="1" colspan="1">Triad</td>
              <td rowspan="1" colspan="1">Triads, tetrads, and pentads</td>
              <td rowspan="1" colspan="1">Triad</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Peduncular bract</td>
              <td rowspan="1" colspan="1">12–31 cm</td>
              <td rowspan="1" colspan="1">18.5–48 cm</td>
              <td rowspan="1" colspan="1">32–67 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Beak</td>
              <td rowspan="1" colspan="1">0.4–0.8 cm</td>
              <td rowspan="1" colspan="1">0.3–1.5 cm</td>
              <td rowspan="1" colspan="1">1–2 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Inflated portion</td>
              <td rowspan="1" colspan="1">7–16.5 × 1.5–4.8 cm</td>
              <td rowspan="1" colspan="1">13–22 × 3–7 cm</td>
              <td rowspan="1" colspan="1">14–31 × 3.3–6.5 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Peduncular bract perimeter and thickness</td>
              <td rowspan="1" colspan="1">2.5–6.2 cm× 1–2.5 mm</td>
              <td rowspan="1" colspan="1">4–11 cm × 1.5–3 mm</td>
              <td rowspan="1" colspan="1">4–7 cm × 2.5–3 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="4">
                <bold>Staminate flowers</bold>
              </td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Flowers</td>
              <td rowspan="1" colspan="1">Pedicellate on the basal portion</td>
              <td rowspan="1" colspan="1">Sessile</td>
              <td rowspan="1" colspan="1">Sessile</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Size at apex</td>
              <td rowspan="1" colspan="1">8–14 × 3–6 mm</td>
              <td rowspan="1" colspan="1">10–14.5 × 4–7 mm</td>
              <td rowspan="1" colspan="1">10–12.5 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Size at base</td>
              <td rowspan="1" colspan="1">13–15 × 4–6 mm</td>
              <td rowspan="1" colspan="1">13–20 × 5–7 mm</td>
              <td rowspan="1" colspan="1">11.2–15.9 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Sepal size</td>
              <td rowspan="1" colspan="1">0.5–4 × 0.5–2 mm</td>
              <td rowspan="1" colspan="1">1.5–5 × 1–1.5 mm</td>
              <td rowspan="1" colspan="1">1.3–3.6 × 0.7–2.6 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Petal size</td>
              <td rowspan="1" colspan="1">7–13 × 2–5 mm</td>
              <td rowspan="1" colspan="1">9–16 × 2–5 mm</td>
              <td rowspan="1" colspan="1">9–14.8 × 2.1–4.5 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Stamen</td>
              <td rowspan="1" colspan="1">4–8 mm</td>
              <td rowspan="1" colspan="1">4–9 mm</td>
              <td rowspan="1" colspan="1">5.9–9.0 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Anther</td>
              <td rowspan="1" colspan="1">3.5–6 mm</td>
              <td rowspan="1" colspan="1">4–5.5 mm</td>
              <td rowspan="1" colspan="1">4.4–7.7 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Base of the anther</td>
              <td rowspan="1" colspan="1">Cordate</td>
              <td rowspan="1" colspan="1">Sagittate</td>
              <td rowspan="1" colspan="1">Cordate</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Filament</td>
              <td rowspan="1" colspan="1">1–3 mm</td>
              <td rowspan="1" colspan="1">1.5–4 mm</td>
              <td rowspan="1" colspan="1">1.3–3.2 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Pistillode</td>
              <td rowspan="1" colspan="1">0.5–1.5(–3) mm</td>
              <td rowspan="1" colspan="1">0.5–1.0 mm</td>
              <td rowspan="1" colspan="1">0.5–1.5 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="4">
                <bold>Pistillate flowers</bold>
              </td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Size at apex</td>
              <td rowspan="1" colspan="1">8–15 × 6–7 mm</td>
              <td rowspan="1" colspan="1">15–18 × 4–7 mm</td>
              <td rowspan="1" colspan="1">12.1–16 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Size at base</td>
              <td rowspan="1" colspan="1">11–16 × 3–6 mm</td>
              <td rowspan="1" colspan="1">17–20 × 5–10 mm</td>
              <td rowspan="1" colspan="1">12.1–16 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Number of sepals</td>
              <td rowspan="1" colspan="1">3</td>
              <td rowspan="1" colspan="1">2–3</td>
              <td rowspan="1" colspan="1">3</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Sepal</td>
              <td rowspan="1" colspan="1">11–16 × 3–7 mm</td>
              <td rowspan="1" colspan="1">12–19 × 5–8 mm</td>
              <td rowspan="1" colspan="1">11.1–14.6 × 3.9–8.2 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Number of petals</td>
              <td rowspan="1" colspan="1">3 or occasionally 4</td>
              <td rowspan="1" colspan="1">3</td>
              <td rowspan="1" colspan="1">3</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Petal</td>
              <td rowspan="1" colspan="1">8–14 × 3.5–5 mm</td>
              <td rowspan="1" colspan="1">14–18 × 8–7 mm</td>
              <td rowspan="1" colspan="1">7–12 × 1.6–4.7 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Petal tip</td>
              <td rowspan="1" colspan="1">2/3 of the petal length</td>
              <td rowspan="1" colspan="1">1/3 to 1/2 of the petal length</td>
              <td rowspan="1" colspan="1">2/5 to 1/2 of the petal length</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Pistil</td>
              <td rowspan="1" colspan="1">6–8 × 2–4 mm</td>
              <td rowspan="1" colspan="1">9–13 × 2–4 mm</td>
              <td rowspan="1" colspan="1">5.8–7.7 × 2.1–3.9 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Pistil indumentum</td>
              <td rowspan="1" colspan="1">Present</td>
              <td rowspan="1" colspan="1">Absent</td>
              <td rowspan="1" colspan="1">Absent</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Stigma</td>
              <td rowspan="1" colspan="1">2–5 mm</td>
              <td rowspan="1" colspan="1">3–5 mm</td>
              <td rowspan="1" colspan="1">2.8–3.4 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Staminodial ring</td>
              <td rowspan="1" colspan="1">1–1.5 mm</td>
              <td rowspan="1" colspan="1">1–3 mm</td>
              <td rowspan="1" colspan="1">1 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Staminodes</td>
              <td rowspan="1" colspan="1">Undulate</td>
              <td rowspan="1" colspan="1">Dentate</td>
              <td rowspan="1" colspan="1">Dentate</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Fruit</td>
              <td rowspan="1" colspan="1">Nearly globose</td>
              <td rowspan="1" colspan="1">Ellipsoid</td>
              <td rowspan="1" colspan="1">Nearly globose</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Fruit sized</td>
              <td rowspan="1" colspan="1">1.4–1.6 × 1.1–1.4 cm</td>
              <td rowspan="1" colspan="1">2.0–2.3 × 1.4–1.6 cm</td>
              <td rowspan="1" colspan="1">1.7–2.5 × 1.1–1.9 cm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Epicarp indumentum</td>
              <td rowspan="1" colspan="1">Thick brownish</td>
              <td rowspan="1" colspan="1">Thick brownish</td>
              <td rowspan="1" colspan="1">Cracked plates</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Mesocarp</td>
              <td rowspan="1" colspan="1">ca 0.5 mm</td>
              <td rowspan="1" colspan="1">ca 1.0 mm</td>
              <td rowspan="1" colspan="1">1.0–2.5 mm</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Endocarp size</td>
              <td rowspan="1" colspan="1">1.3–1.4 × 1.0–1.2 cm</td>
              <td rowspan="1" colspan="1">1.6–2.0 × 0.9–1.3 cm</td>
              <td rowspan="1" colspan="1">1.3–1.8 × 1.1–1.4 cm</td>
            </tr>
          </tbody>
        </table>
      </table-wrap>
      <table-wrap id="T2" position="float" orientation="portrait">
        <label>Table 2.</label>
        <caption>
          <p>Differences in pinnae anatomy between <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic>, <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>, and <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="aristeae">aristeae</tp:taxon-name-part></tp:taxon-name></italic>.</p>
        </caption>
        <table>
          <tbody>
            <tr>
              <td rowspan="1" colspan="1"/>
              <td rowspan="1" colspan="1">
                <bold>
                  <italic>
                    <tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name>
                  </italic>
                </bold>
              </td>
              <td rowspan="1" colspan="1">
                <bold>
                  <italic>
                    <tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name>
                  </italic>
                </bold>
              </td>
              <td rowspan="1" colspan="1">
                <bold>
                  <italic>
                    <tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="aristeae">aristeae</tp:taxon-name-part></tp:taxon-name>
                  </italic>
                </bold>
              </td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Expansion tissue</td>
              <td rowspan="1" colspan="1">Continuous</td>
              <td rowspan="1" colspan="1">Interrupted</td>
              <td rowspan="1" colspan="1">Interrupted</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Stomata on adaxial surface</td>
              <td rowspan="1" colspan="1">Absent</td>
              <td rowspan="1" colspan="1">Present</td>
              <td rowspan="1" colspan="1">Present</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Raphides</td>
              <td rowspan="1" colspan="1">Frequent</td>
              <td rowspan="1" colspan="1">Rare</td>
              <td rowspan="1" colspan="1">Absent</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Mesophyll</td>
              <td rowspan="1" colspan="1">Homogeneous</td>
              <td rowspan="1" colspan="1">Heterogeneous</td>
              <td rowspan="1" colspan="1">Heterogeneous</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Adaxial fibre bundles</td>
              <td rowspan="1" colspan="1">Very narrow</td>
              <td rowspan="1" colspan="1">Narrow</td>
              <td rowspan="1" colspan="1">Narrow</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Number of accessory vascular bundles around the main vascular system of the midrib</td>
              <td rowspan="1" colspan="1">0–1</td>
              <td rowspan="1" colspan="1">0–2</td>
              <td rowspan="1" colspan="1">2</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Number of collateral bundles in the vascular system of the midrib</td>
              <td rowspan="1" colspan="1">1</td>
              <td rowspan="1" colspan="1">2–4</td>
              <td rowspan="1" colspan="1">3</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Fibrous ring reaching the abaxial hypodermis</td>
              <td rowspan="1" colspan="1">Absent</td>
              <td rowspan="1" colspan="1">Absent</td>
              <td rowspan="1" colspan="1">Present</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Group of fibres in the abaxial hypodermis</td>
              <td rowspan="1" colspan="1">Present, small</td>
              <td rowspan="1" colspan="1">Present, large</td>
              <td rowspan="1" colspan="1">Present, small</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Large first adaxial fibre bundle at the margin</td>
              <td rowspan="1" colspan="1">Present</td>
              <td rowspan="1" colspan="1">Absent</td>
              <td rowspan="1" colspan="1">Absent</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Adaxial hypodermis walls</td>
              <td rowspan="1" colspan="1">Thick</td>
              <td rowspan="1" colspan="1">Thin</td>
              <td rowspan="1" colspan="1">Thin</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Midrib hypodermis stratification</td>
              <td rowspan="1" colspan="1">Biseriate</td>
              <td rowspan="1" colspan="1">Uniseriate</td>
              <td rowspan="1" colspan="1">Uniseriate</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Midrib format</td>
              <td rowspan="1" colspan="1">Triangular</td>
              <td rowspan="1" colspan="1">Truncate</td>
              <td rowspan="1" colspan="1">Truncate</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Fibre bundles around the fibrous ring</td>
              <td rowspan="1" colspan="1">Up to 5</td>
              <td rowspan="1" colspan="1">10–15</td>
              <td rowspan="1" colspan="1">10–15</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Small accessory bundle between the expansion tissue</td>
              <td rowspan="1" colspan="1">Absent</td>
              <td rowspan="1" colspan="1">Present</td>
              <td rowspan="1" colspan="1">Absent</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1">Fibres in the expansion tissue arrangement</td>
              <td rowspan="1" colspan="1">In a line</td>
              <td rowspan="1" colspan="1">Dispersed</td>
              <td rowspan="1" colspan="1">In a line</td>
            </tr>
          </tbody>
        </table>
      </table-wrap>
      <p>A distribution map showing all species of the <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> complex was produced using QGIS v.3.40.3 (<xref ref-type="bibr" rid="B36">QGIS Development Team 2024</xref>) based on the following sources: state and municipal boundaries (<xref ref-type="bibr" rid="B18">IBGE 2020</xref>), elevation (<xref ref-type="bibr" rid="B8">EMBRAPA 2005</xref>), and occurrence localities (data from the current species). Distribution data for <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="aristeae">aristeae</tp:taxon-name-part></tp:taxon-name></italic> were taken from <xref ref-type="bibr" rid="B46">Sant’Anna-Santos et al. (2023c)</xref>. Anatomical analyses were based on 15 samples from each population, taken from the central region of a median pinna, from herbarium specimens from our own collections and from plants in the field, following <xref ref-type="bibr" rid="B10">Firmo et al. (2021)</xref>. After rehydration (<xref ref-type="bibr" rid="B23">Meira and Martins 2003</xref>), freehand cross sections were prepared. The samples were cleared using sodium hypochlorite and distilled water (1:1) and stained with Safrablau (1% Astra blue + 1% Safranin) (<xref ref-type="bibr" rid="B2">Bukatsch 1972</xref>, modified). Temporary slides were mounted, and photographs were taken with a light photomicroscope (Bioptika B20+) with an attached digital camera CMOS 12mp PLUS.</p>
    </sec>
    <sec sec-type="Taxonomic treatment" id="sec3">
      <title>Taxonomic treatment</title>
      <tp:taxon-treatment>
        <tp:treatment-meta>
          <kwd-group>
            <label>Taxon classification</label>
            <kwd>
              <named-content content-type="kingdom">Plantae</named-content>
            </kwd>
            <kwd>
              <named-content content-type="order">Arecales</named-content>
            </kwd>
            <kwd>
              <named-content content-type="family">Arecaceae</named-content>
            </kwd>
          </kwd-group>
        </tp:treatment-meta>
        <tp:nomenclature>
          <tp:taxon-name><object-id content-type="arpha">941A7512-6779-5A76-AAD7-040F1F11D010</object-id>
                		<tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part>
                	
                		<object-id content-type="ipni" xlink:type="simple">urn:lsid:ipni.org:names:77381242-1</object-id>
                	</tp:taxon-name>
          <tp:taxon-authority>B.F.Sant’Anna-Santos</tp:taxon-authority>
          <tp:taxon-status>sp. nov.</tp:taxon-status>
          <xref ref-type="fig" rid="F1">Figs 1</xref>
          <xref ref-type="fig" rid="F3">, 3</xref>
          <xref ref-type="fig" rid="F7">–7</xref>
          <xref ref-type="table" rid="T1">; Tables 1</xref>
          <xref ref-type="table" rid="T2">, 2</xref>
        </tp:nomenclature>
        <tp:treatment-sec sec-type="Type">
          <title>Type</title>
          <p>BRAZIL – <bold>Minas Gerais</bold> • Itacambira; <named-content content-type="dwc:verbatimCoordinates">16°57’29.28”S, 43°25’4.98”W</named-content>; 1240 m; 30 Jul. 2024; fl., fr.; <italic>Sant’Anna–Santos 425</italic>; holotype: <named-content content-type="dwc:institutional_code" xlink:title="Universidade Federal dos Vales do Jequitinhonha e Mucuri" xlink:href="https://scientific-collections.gbif.org/institution/d70d80f4-1c52-469e-8eb1-cd62ffc0f5e8">DIAM</named-content>; isotypes: <named-content content-type="dwc:institutional_code" xlink:title="Universidade Federal do Paraná" xlink:href="https://scientific-collections.gbif.org/institution/ab06648f-c439-4400-95d8-679bb2cd9f6e">UPCB</named-content>, IBGE, HCF.</p>
          <fig id="F3">
            <object-id content-type="doi">10.5091/plecevo.188286.figure3</object-id>
            <object-id content-type="arpha">EA0444CF-7A7F-57A7-ABFD-CFBF0D158F02</object-id>
            <label>Figure 3.</label>
            <caption>
              <p><italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic>. <bold>A</bold>. Acaulescent habit. <bold>B</bold>. Asymmetric pinnae with a long tapering tip. <bold>C</bold>. Branched inflorescence. <bold>D</bold>. Unbranched inflorescence. <bold>E</bold>. Staminate flower. <bold>F</bold>. Stamen, lateral view showing the cordate base of the anther. <bold>G</bold>. Stamen, dorsal view. <bold>H</bold>. Lateral view of the stamen, cordate anther base. <bold>I</bold>. Trifid pistillode. <bold>J</bold>. Pistillate flower, sepals. <bold>K</bold>. Pistillate flower, petals. <bold>L</bold>. Pistil, ovary covered by indumentum and undulate staminodes. <bold>M</bold>. Fruit, epicarp densely covered by indumentum. <bold>N</bold>. Nearly globose epicarp, lateral view. <bold>O</bold>. Basal view of the epicarp. Based on the holotype <italic>Sant’Anna-Santos 425</italic> (<named-content content-type="dwc:institutional_code" xlink:title="Universidade Federal dos Vales do Jequitinhonha e Mucuri" xlink:href="https://scientific-collections.gbif.org/institution/d70d80f4-1c52-469e-8eb1-cd62ffc0f5e8">DIAM</named-content>). Illustration by Gustavo Surlo.</p>
            </caption>
            <graphic xlink:href="plecevo-159-356-g003.jpg" id="oo_1676892.jpg">
              <uri content-type="original_file">https://binary.pensoft.net/fig/1676892</uri>
            </graphic>
          </fig>
          <fig id="F4">
            <object-id content-type="doi">10.5091/plecevo.188286.figure4</object-id>
            <object-id content-type="arpha">BDABD7F8-5092-586A-A7EA-A5D0C9B12282</object-id>
            <label>Figure 4.</label>
            <caption>
              <p>Habitat and vegetative morphological aspects of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> (A, C, E, G, I, K) and <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (B, D, F, H, J, L). <bold>A</bold>. Campo rupestre, landscape view. <bold>B</bold>. Cerrado sensu stricto, landscape view. <bold>C</bold>–<bold>D</bold>. Solitary habit (white circles). <bold>E</bold>–<bold>F</bold>. Shorter leaf rachis in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> (<bold>E</bold>, two white arrowheads) compared with <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (<bold>F</bold>, two white arrowheads). <bold>G</bold>–<bold>H</bold>. Fibrous leaf sheath (two white arrowheads). <bold>I</bold>–<bold>J</bold>. Discolorous pinnae, adaxial (ad) and abaxial (ab) surfaces. <bold>K</bold>–<bold>L</bold>. Pinnae insertion on the leaf rachis (ra) without ramenta. Photographs by Bruno F. Sant’Anna-Santos.</p>
            </caption>
            <graphic xlink:href="plecevo-159-356-g004.jpg" id="oo_1676893.jpg">
              <uri content-type="original_file">https://binary.pensoft.net/fig/1676893</uri>
            </graphic>
          </fig>
          <fig id="F5">
            <object-id content-type="doi">10.5091/plecevo.188286.figure5</object-id>
            <object-id content-type="arpha">846582ED-8148-5079-A24B-0AEA3DA94E2D</object-id>
            <label>Figure 5.</label>
            <caption>
              <p>Morphological features of inflorescences, flowers, and fruits of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> (A–C, G–H, K) and <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (D–F, I–J, L). <bold>A</bold>. Branched inflorescence. <bold>B</bold>. Unbranched inflorescence. <bold>C</bold>. Striate peduncular bract. <bold>D</bold>. Unbranched inflorescence. <bold>E</bold>. Branched inflorescence. <bold>F</bold>. Striate peduncular bract. <bold>G</bold>. Triad: one pistillate flower (white dot) flanked by two staminate flowers (black dots). <bold>H</bold>. Pedicellate staminate flowers (pe): sepals (se) connate at the base and petal (pt). <bold>I</bold>. Tetrad: two pistillate flowers (white dots), each flanked by a staminate flower (black dots). <bold>J</bold>. Pentad: two pistillate flowers (white dots) flanked by three staminate flowers (black dots). <bold>K</bold>. Nearly globose fruit: epicarp covered by brown indumentum. <bold>L</bold>. Ellipsoid fruit: epicarp covered by brown indumentum. Photographs by Bruno F. Sant’Anna-Santos.</p>
            </caption>
            <graphic xlink:href="plecevo-159-356-g005.jpg" id="oo_1676894.jpg">
              <uri content-type="original_file">https://binary.pensoft.net/fig/1676894</uri>
            </graphic>
          </fig>
          <fig id="F6">
            <object-id content-type="doi">10.5091/plecevo.188286.figure6</object-id>
            <object-id content-type="arpha">83767ACC-547B-5AEE-847D-0949AC5275D4</object-id>
            <label>Figure 6.</label>
            <caption>
              <p>Anatomy of the margin and intermediate region of pinnae of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> (A–D) and <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (E–J) using LM in transverse sections. <bold>A</bold>. Empty raphide idioblasts (eight white arrowheads) in stained sample; narrow adaxial fibres (fd); stomata on the abaxial surface (black arrowheads); large first adaxial fibre bundle at the margin (la); and homogeneous mesophyll. <bold>B</bold>. Idioblast containing raphides (ra) in an unstained sample. <bold>C</bold>. Biseriate adaxial hypodermis (hy). <bold>D</bold>. Detail of the abaxial surface: subsidiary cells (two yellow dots), guard cells (two white dots) and fibres (fi) in the hypodermis. <bold>E</bold>. Stomata on both surfaces (black arrowheads); large adaxial fibres (fd); and dorsiventral mesophyll. <bold>F</bold>. Raphides (ra). <bold>G</bold>. Biseriate adaxial hypodermis (hy). <bold>H</bold>–<bold>I</bold>. Stomata on the adaxial (H) and abaxial (I) surfaces: subsidiary cells (two yellow dots), guard cells (two white dots). <bold>J</bold>. Fibre bundle on the abaxial surface (fi). Photographs by Bruno F. Sant’Anna-Santos.</p>
            </caption>
            <graphic xlink:href="plecevo-159-356-g006.jpg" id="oo_1676895.jpg">
              <uri content-type="original_file">https://binary.pensoft.net/fig/1676895</uri>
            </graphic>
          </fig>
          <fig id="F7">
            <object-id content-type="doi">10.5091/plecevo.188286.figure7</object-id>
            <object-id content-type="arpha">53960311-7E5D-5046-89C9-DCA92C8C5D6D</object-id>
            <label>Figure 7.</label>
            <caption>
              <p>Midrib anatomy of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> (A–E) and <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (F–J) using LM in transverse sections. <bold>A</bold>. Triangular midrib: collateral bundle (white circle), continuous expansion tissue (ex) with linearly arranged fibres (two yellow circles), accessory vascular bundle (white arrowhead), and non-vascular fibres (four black arrowheads). <bold>B</bold>–<bold>C</bold>. Detail of the expansion tissue: only non-vascular fibre bundles (black circle). <bold>D</bold>. Biseriate hypodermis (hy) with thickened walls. <bold>E</bold>. Detail of the collateral bundle: phloem poles (four white arrowheads). <bold>F</bold>–<bold>G</bold>. Truncate midrib: collateral bundles (three white circles), interrupted expansion tissue (ex) with non-linearly arranged fibres (two yellow circles), small accessory vascular bundle within the expansion-tissue caps (green arrowhead), small vascular bundle (white arrowhead), and non-vascular fibres (11 black arrowheads). <bold>H</bold>. Detail of the accessory vascular bundle: vascular tissue (white circle). <bold>I</bold>. Uniseriate hypodermis (hy) with thin walls. <bold>J</bold>. Detail of the collateral bundles: phloem poles (six white arrowheads). Photographs by Bruno F. Sant’Anna-Santos.</p>
            </caption>
            <graphic xlink:href="plecevo-159-356-g007.jpg" id="oo_1676896.jpg">
              <uri content-type="original_file">https://binary.pensoft.net/fig/1676896</uri>
            </graphic>
          </fig>
        </tp:treatment-sec>
        <tp:treatment-sec sec-type="Diagnosis">
          <title>Diagnosis</title>
          <p><italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> is similar to <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> Noblick, from which it differs in leaf rachis length (21–57 vs 79–97 cm); leaf sheath length (12–20 vs 1.5–12 cm); apical pinnae length (3–8.5 vs 9–12 cm), middle pinnae length (12–18 vs 19–30 cm); inflorescence rachis length (0–2.5 vs 0–13 cm); apical rachillae length (10.5–11 vs 4.5–10 cm); flowers always arranged in triads (vs triads, tetrads, and pentads); basal staminate flowers pedicellate (vs sessile); anther bases cordate (vs sagittate); apical pistillate flower length (8–15 vs 15–18 mm), basal pistillate flower length (11–16 vs 17–20 mm); pistillate flowers with 3 sepals (vs 2 to 3); pistillate flowers with 3 petals or occasionally 4 (vs 3), with valvate tips reaching 2/3 of the petal length (vs 1/3–1/2); pistil length (6–8 vs 9–13 mm), pistil with indumentum (vs glabrous flowers in pre-anthesis), staminodes undulate (vs dentate); fruit nearly globose (vs ellipsoid); endocarp length (1.3–1.4 vs 1.6–2.0 mm).</p>
        </tp:treatment-sec>
        <tp:treatment-sec sec-type="Description">
          <title>Description</title>
          <p><underline>Small palm</underline>, solitary palm, 37–80 cm tall. Apparently acaulescent. <underline>Leaves</underline> pinnate, 3–6(–10) in number; leaf sheath ca 12–20 cm long; pseudopetiole 10–23 cm long; true petiole absent to 39.5 × 0.6–1.1 cm and 0.3–0.6 cm thick, adaxially grooved and abaxially rounded; abaxial surface of the petiole and leaf rachis with white tomentum; leaf rachis 21–57 cm long; pinnae medium to dark-green, discolorous, abaxial surface glaucous, linear, rigid-coriaceous, with a more or less asymmetric apex and an elongated, tapering midrib, 18–43 pairs, arranged in 2–5(–6) along the leaf rachis and inserted in divergent planes; ramenta or tomentum absent at the insertion of pinnae on the leaf rachis and along the abaxial surface of the pinna midrib; apical pinnae 3–8.5 × 0.1–0.9 cm; median pinnae 12–18 × 1.3–2.0 cm; basal pinnae 11–18 × 0.5–0.9 cm; prophyll 5–14 × 1.0–1.8 cm; peduncle indumentum glabrous. <underline>Inflorescence</underline> erect, spicate or spirally branched, but usually spirally branched; prophyll 5–14 × 1.0–1.8 cm; peduncular bract ca 12–31 cm long, inflated portion 7–16.5 × 1.5–4.8 cm, including a beak 0.4–0.8 cm long, perimeter 2.5–6.2 cm, 1–2.5 mm thick, woody, striate, exterior glabrous; peduncle 8–16 cm long, 1.6–5 × 1.5–4 mm wide, elliptic in transverse section, glabrous; inflorescence axis 8–15 cm long; rachis 0–2.5 cm long; rachillae 1–6, 10.5–11 cm long at the apex, (2–)4–9.5 cm long at the base, glabrous. <underline>Staminate flowers</underline> 8–14 × 3–6 mm at the apex, 13–15 × 4–6 mm at the base, shortly pedicellate at the base of the inflorescence; pedicels ca 1 mm long, yellow; sepals 3, 0.5–4 × 0.5–2 mm, glabrous, without evident nerves, briefly connate at the base; petals 3, 7–13 × 2.0–5.0 mm, with acute apices, nerves inconspicuous; stamens 4–8 mm long, anthers 3.5–6 mm long; filaments 1–3 mm long, briefly connate at the base; pistillode trifid, ca 0.5–1.5(–3) mm long. <underline>Pistillate flowers</underline> elongate-pyramidal, 8–15 × 6–7 mm at the apex, 11–16 × 3–6 mm at the base, glabrous; sepals 3, 11–16 × 4–6.5 mm, yellow, without visible venation, imbricate; petals 3 or occasionally 4, 8–14 × 3.5–5 mm, with valvate apices reaching 2/3 of the petal length; pistil 6–8 × 2–4 mm, with lepidote indumentum from the base of the outer ovary wall to approximately the base of the stigmas; stigmas 3, 2–5 mm long; staminodial ring ca 1–1.5 mm tall; staminodes undulate. <underline>Fruits</underline> nearly globose, 1.4–1.6 × 1.1–1.4 cm, brown when mature; epicarp less than 1 mm thick, covered with dense brownish tomentum; mesocarp ca 0.5 mm thick, succulent and fibrous; endocarp ca 1.3–1.4 × 1.0–1.2 cm, ca 1 mm thick, with 3 pores in the basal portion. <underline>Seed</underline> nearly globose, endosperm homogeneous. <underline>Germination</underline> remote-tubular.</p>
        </tp:treatment-sec>
        <tp:treatment-sec sec-type="Distribution and habitat">
          <title>Distribution and habitat</title>
          <p><italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> is endemic to Minas Gerais State, Brazil, in a region known as the “Northern Mountains Complex”, in the southern portion of the Espinhaço Range (Fig. <xref ref-type="fig" rid="F1">1</xref>). The species occurs in campos rupestres, where it may be locally dominant, forming part of the graminoid stratum on high-elevation plateausat around 1240 m altitude, in the municipality of Itacambira and adjacent areas (<xref ref-type="bibr" rid="B28">Noblick 2017a</xref>). Campos rupestres are characterized by shallow, stony, nutrient-poor soils and are subject to severe fires (<xref ref-type="bibr" rid="B1">Almada et al. 2016</xref>; <xref ref-type="bibr" rid="B9">Fernandes 2016</xref>).</p>
        </tp:treatment-sec>
        <tp:treatment-sec sec-type="Phenology">
          <title>Phenology</title>
          <p><italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> was observed with flowers and fruits from November to December and from June to July in 2019 and 2024.</p>
        </tp:treatment-sec>
        <tp:treatment-sec sec-type="Etymology">
          <title>Etymology</title>
          <p>The specific epithet, montana, means “mountain” and refers to the high-elevation plateau where the species occurs.</p>
        </tp:treatment-sec>
        <tp:treatment-sec sec-type="Preliminary IUCN conservation assessment">
          <title>Preliminary IUCN conservation assessment</title>
          <p>The population of the new species is known only from the municipality of Itacambira, where no protected areas exist. Near the type population, there is a highway and <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Eucalyptus">Eucalyptus</tp:taxon-name-part></tp:taxon-name></italic> plantations. Considering the area of occupancy (<abbrev xlink:title="area of occupancy">AOO</abbrev> = 32 km<sup>2</sup>) and extent of occurrence (<abbrev xlink:title="extent of occurrence">EOO</abbrev> = 42.998 km<sup>2</sup>) and following the IUCN Categories and Criteria (<xref ref-type="bibr" rid="B19">IUCN 2022</xref>), <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> should be considered Critically Endangered: <abbrev xlink:title="Critically Endangered">CR</abbrev> B1ab(i,iii).</p>
        </tp:treatment-sec>
        <tp:treatment-sec sec-type="Additional specimens examined">
          <title>Additional specimens examined</title>
          <p>BRAZIL – <bold>Minas Gerais</bold> • Itacambira, à beira da rodovia Montes Claros-Itacambira (MG-308); 19 Nov. 2013; fl.; <italic>Medeiros &amp; Fonseca 84</italic>; <named-content content-type="dwc:institutional_code" xlink:title="Universidade de São Paulo" xlink:href="https://scientific-collections.gbif.org/institution/d32ef874-a248-451e-bd16-8bf91e742241">SPF</named-content> • same data as for preceding; <italic>Medeiros &amp; Fonseca 86</italic>; <named-content content-type="dwc:institutional_code" xlink:title="Universidade de São Paulo" xlink:href="https://scientific-collections.gbif.org/institution/d32ef874-a248-451e-bd16-8bf91e742241">SPF</named-content> • Itacambira, estrada para Montes Claros; 9 Jan. 1986; fl.; <italic>Mello-Silva et al. 9158</italic>; <named-content content-type="dwc:institutional_code" xlink:title="Universidade de São Paulo" xlink:href="https://scientific-collections.gbif.org/institution/d32ef874-a248-451e-bd16-8bf91e742241">SPF</named-content> • Itacambira, fazenda da plantar siderúrgica, em área de plantação de eucalipto, na rodovia entre Juramento e Itacambira; 13 Dec. 2019; fl., fr.; <italic>Sant’Anna-Santos &amp; Firmo 184</italic>; <named-content content-type="dwc:institutional_code" xlink:title="Universidade Federal do Paraná" xlink:href="https://scientific-collections.gbif.org/institution/ab06648f-c439-4400-95d8-679bb2cd9f6e">UPCB</named-content> • same data as for preceding; <italic>Sant’Anna-Santos &amp; Firmo 185</italic>; <named-content content-type="dwc:institutional_code" xlink:title="Universidade Federal do Paraná" xlink:href="https://scientific-collections.gbif.org/institution/ab06648f-c439-4400-95d8-679bb2cd9f6e">UPCB</named-content> • same data as for preceding; <italic>Sant’Anna-Santos &amp; Firmo 189</italic>; <named-content content-type="dwc:institutional_code" xlink:title="Universidade Federal do Paraná" xlink:href="https://scientific-collections.gbif.org/institution/ab06648f-c439-4400-95d8-679bb2cd9f6e">UPCB</named-content> • same data as for preceding; <italic>Sant’Anna-Santos &amp; Firmo 195</italic>; <named-content content-type="dwc:institutional_code" xlink:title="Universidade Federal do Paraná" xlink:href="https://scientific-collections.gbif.org/institution/ab06648f-c439-4400-95d8-679bb2cd9f6e">UPCB</named-content> • same data as for preceding; <italic>Sant’Anna-Santos &amp; Firmo 196</italic>; <named-content content-type="dwc:institutional_code" xlink:title="Universidade Federal do Paraná" xlink:href="https://scientific-collections.gbif.org/institution/ab06648f-c439-4400-95d8-679bb2cd9f6e">UPCB</named-content> • same data as for preceding; <italic>Sant’Anna-Santos &amp; Firmo 197</italic>; <named-content content-type="dwc:institutional_code" xlink:title="Universidade Federal do Paraná" xlink:href="https://scientific-collections.gbif.org/institution/ab06648f-c439-4400-95d8-679bb2cd9f6e">UPCB</named-content>.</p>
        </tp:treatment-sec>
        <tp:treatment-sec sec-type="Pinnae anatomy">
          <title>Pinnae anatomy</title>
          <p>In <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic>, stomata occur only on the abaxial surface, whereas in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> stomata are present on both surfaces (Fig. <xref ref-type="fig" rid="F6">6D–E</xref>, <xref ref-type="fig" rid="F6">H–I</xref>). In both species, subsidiary cells are arcuate and located entirely below the level of the cuticle (Fig. <xref ref-type="fig" rid="F6">6D, H–I</xref>). Adaxial non-vascular fibre bundles are narrower in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> than in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (Fig. <xref ref-type="fig" rid="F6">6A</xref> and <xref ref-type="fig" rid="F6">6E</xref>, respectively). On the abaxial surface, groups of fibres and isolated fibres are rarer in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> than in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (Fig. <xref ref-type="fig" rid="F6">6A–D</xref>, <xref ref-type="fig" rid="F6">E–J</xref>). In <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic>, raphide-containing idioblasts are frequent and occur both at the margin and in the intermediate region of the pinnae (Fig. <xref ref-type="fig" rid="F6">6A–B</xref>). In <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>, raphides are rare and restricted to the marginal region (Fig. <xref ref-type="fig" rid="F6">6E–F</xref>).</p>
          <p>Adaxial fibre bundles are connected to the adaxial hypodermis and reach nearly half of the mesophyll in both species (Fig. <xref ref-type="fig" rid="F6">6A–E</xref>). Only primary vascular bundles are connected to the hypodermis on both surfaces and are always completely surrounded by fibres in both species (Fig. <xref ref-type="fig" rid="F6">6A–E</xref>). In both species, primary vascular bundles always have a larger diameter, distinct phloem poles, and conspicuous protoxylem and metaxylem elements (Fig. <xref ref-type="fig" rid="F6">6A–E</xref>). Secondary and tertiary vascular bundles are surrounded abaxially only by a sclerenchymatous sheath (Fig. <xref ref-type="fig" rid="F6">6A–E</xref>). Whereas secondary vascular bundles are connected only to the abaxial hypodermis, tertiary vascular bundles may or may not be connected to the abaxial hypodermis (Fig. <xref ref-type="fig" rid="F6">6A–E</xref>). The mesophyll is homogeneous in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> (Fig. <xref ref-type="fig" rid="F6">6A</xref>) and dorsiventral in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (Fig. <xref ref-type="fig" rid="F6">6E</xref>). At the margin, a large first adaxial non-vascular fibre bundle is present in the new species, whereas in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> this bundle is not always present (Fig. <xref ref-type="fig" rid="F6">6A, E</xref>).</p>
          <p>The midrib is triangular in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> and the expansion tissue is continuous (Fig. <xref ref-type="fig" rid="F7">7A–B</xref>). In <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>, the midrib is truncate and the expansion tissue is interrupted (Fig. <xref ref-type="fig" rid="F7">7F</xref>). In both species, the midrib is adaxially projected, and the expansion tissue contains immersed fibre groups arranged in a line in the new species (Fig. <xref ref-type="fig" rid="F7">7A–B</xref>) and dispersed in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (Fig. <xref ref-type="fig" rid="F7">7F–G</xref>). The main vascular system of the midrib consists of a single collateral bundle in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> (Fig. <xref ref-type="fig" rid="F7">7A–E</xref>) and 2–4 in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (Fig. <xref ref-type="fig" rid="F7">7F–J</xref>). In both species, the collateral bundles are surrounded by a fibrous ring with a reinforced sheath that does not connect to the adaxial or abaxial hypodermis (Fig. <xref ref-type="fig" rid="F7">7B–G</xref>). There are 0–5 and 10–14 non-vascular fibre bundles around the fibrous ring in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> and <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>, respectively (Fig. <xref ref-type="fig" rid="F7">7A, F</xref>). The presence of a small accessory vascular bundle within the expansion-tissue caps is observed only in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (Fig. <xref ref-type="fig" rid="F7">7G</xref>), representing the first record for the genus. The midrib hypodermis is biseriate in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> (Fig. <xref ref-type="fig" rid="F7">7D</xref>) and uniseriate in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (Fig. <xref ref-type="fig" rid="F7">7I</xref>). Table <xref ref-type="table" rid="T2">2</xref> compares the leaf anatomy of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>, <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic>, and <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="aristeae">aristeae</tp:taxon-name-part></tp:taxon-name></italic>.</p>
        </tp:treatment-sec>
        <tp:treatment-sec sec-type="Notes">
          <title>Notes</title>
          <p>When described, <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> was characterized as a miniature of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="glaucescens">glaucescens</tp:taxon-name-part></tp:taxon-name></italic> Becc. and <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="duartei">duartei</tp:taxon-name-part></tp:taxon-name></italic> Glassman due to strong similarity in leaf morphology (<xref ref-type="bibr" rid="B25">Noblick 2009</xref>). However, the acaulescent habit and other important morphological characters, such as the occurrence of both branched and unbranched inflorescences, strongly supported its recognition as a distinct species (<xref ref-type="bibr" rid="B25">Noblick 2009</xref>). In the following year, additional acaulescent <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic> species were revealed as the result of an extensive effort to study these palms in their natural habitats combined with leaflet anatomy data (<xref ref-type="bibr" rid="B31">Noblick and Lorenzi 2010</xref>).</p>
          <p>Since then, it has become clear that most dwarf <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic> species do not occur over large geographic ranges and/or occupy different, geographically isolated areas (<xref ref-type="bibr" rid="B28">Noblick 2017a</xref>; <xref ref-type="bibr" rid="B10">Firmo et al. 2021</xref>; <xref ref-type="bibr" rid="B44">Sant’Anna-Santos et al. 2023a</xref>, <xref ref-type="bibr" rid="B45">2023b</xref>, <xref ref-type="bibr" rid="B46">2023c</xref>). However, some acaulescent <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic> still show broader geographic distributions, such as <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (<xref ref-type="bibr" rid="B28">Noblick 2017a</xref>; <xref ref-type="bibr" rid="B39">Reflora 2026</xref>; <xref ref-type="bibr" rid="B50">SpeciesLink Network 2026</xref>), because they represent unresolved species complexes (<xref ref-type="bibr" rid="B47">Sant’Anna-Santos et al. 2025</xref>). In <xref ref-type="bibr" rid="B25">Noblick (2009)</xref>, populations from two distinct regions were used in the characterization of the species: a cerrado sensu stricto population in the municipality of Jequitaí and a campo rupestre population in the municipality of Itacambira and adjacent areas. These two regions are more than 100 km apart in a straight line (Fig. <xref ref-type="fig" rid="F1">1</xref>), are geographically isolated, and occupy habitats with distinct conditions. Over subsequent years, additional areas were added to the distribution map of the species, such as Serra do Cabral and Serra do Ambrósio mountains (<xref ref-type="bibr" rid="B33">Noblick et al. 2014</xref>; <xref ref-type="bibr" rid="B28">Noblick 2017a</xref>).</p>
          <p><xref ref-type="bibr" rid="B10">Firmo et. al. (2021)</xref> provided the first step towards disentangling the <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> complex. The population treated as <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> from Serra do Cabral mountain, a disjunction in the southern portion of the Espinhaço Range, was formally described by <xref ref-type="bibr" rid="B44">Sant’Anna-Santos et al. (2023a)</xref> as <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="aristeae">aristeae</tp:taxon-name-part></tp:taxon-name></italic>. In <xref ref-type="bibr" rid="B28">Noblick (2017a)</xref>, another disjunction in the Espinhaço Range was indicated for the occurrence of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>: Serra do Ambrósio mountain. Recognized as an area of high endemism, Serra do Ambrósio harbours unique high-elevation environments known as carrascos, characterized by coarse sandy substrates and rare, microendemic species (<xref ref-type="bibr" rid="B22">Meguro et al. 1994</xref>; <xref ref-type="bibr" rid="B35">Pirani et al. 1994</xref>; <xref ref-type="bibr" rid="B34">Oliveira et al. 2014</xref>; <xref ref-type="bibr" rid="B4">Costa et al. 2016</xref>, <xref ref-type="bibr" rid="B5">2018</xref>; <xref ref-type="bibr" rid="B47">Sant’Anna-Santos et al. 2025</xref>). Accordingly, <xref ref-type="bibr" rid="B47">Sant’Anna-Santos et al. (2025)</xref> described <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="harenae">harenae</tp:taxon-name-part></tp:taxon-name></italic>, representing yet another step in resolving the complex.</p>
          <p>Therefore, targeting previously known localities of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> for fieldwork is an effective strategy to document <tp:taxon-name><tp:taxon-name-part taxon-name-part-type="family" reg="Arecaceae">Arecaceae</tp:taxon-name-part></tp:taxon-name> diversity in the southern Espinhaço Range and adjacent areas (<xref ref-type="bibr" rid="B10">Firmo et al. 2021</xref>; <xref ref-type="bibr" rid="B44">Sant’Anna-Santos et al. 2023a</xref>, <xref ref-type="bibr" rid="B47">2025</xref>). Many of these areas have experienced increased anthropogenic pressure in recent years, and localities formerly considered less suitable for agriculture—such as rocky outcrops along the Espinhaço Range—have become strongly impacted by mining, cattle raising, and silviculture (<xref ref-type="bibr" rid="B5">Costa et al. 2018</xref>; <xref ref-type="bibr" rid="B3">Carvalho et al. 2024</xref>), increasing the likelihood that new species will go extinct before being documented.</p>
          <p>However, an obstacle impedes studies of the <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> complex: it is necessary to take a step back and reassess the different populations used in the species’ original circumscription, as they may represent distinct species. Therefore, establishing the true morphological spectrum of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> is crucial for further work on the complex. To date, populations treated as <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> in the Espinhaço Range and adjacent areas still lack field-based study and detailed morphological and anatomical analyses (<xref ref-type="bibr" rid="B39">Reflora 2026</xref>; <xref ref-type="bibr" rid="B50">SpeciesLink Network 2026</xref>).</p>
          <p>In <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic> species delimitation, the size of leaf parts is an important diagnostic aspect (<xref ref-type="bibr" rid="B16">Glassman 1987</xref>; <xref ref-type="bibr" rid="B17">Henderson et al. 1995</xref>; <xref ref-type="bibr" rid="B25">Noblick 2009</xref>, <xref ref-type="bibr" rid="B28">2017a</xref>; <xref ref-type="bibr" rid="B10">Firmo et al. 2021</xref>; <xref ref-type="bibr" rid="B44">Sant’Anna-Santos et al. 2023a</xref>, <xref ref-type="bibr" rid="B45">2023b</xref>, <xref ref-type="bibr" rid="B46">2023c</xref>, <xref ref-type="bibr" rid="B47">2025</xref>). In <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic>, the length of the leaf rachis and sheath, as well as the length of apical and middle pinnae, are useful to distinguish it from <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (Table <xref ref-type="table" rid="T1">1</xref>). Regarding reproductive traits, both inflorescence architectures (unbranched and branched) occur in both species (Figs <xref ref-type="fig" rid="F2">2C</xref>, <xref ref-type="fig" rid="F3">3C–D</xref>, <xref ref-type="fig" rid="F5">5A–B</xref>, <xref ref-type="fig" rid="F5">5D–E</xref>). However, branched inflorescences are more common in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic>, whereas unbranched inflorescences are more common in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (Table <xref ref-type="table" rid="T1">1</xref>). In <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic>, flowers are always arranged in triads (Fig. <xref ref-type="fig" rid="F5">5G</xref>), whereas in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> we observed triads, tetrads, and pentads at similar frequencies (Fig. <xref ref-type="fig" rid="F5">5I–J</xref>). Pentads were first described for <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="harenae">harenae</tp:taxon-name-part></tp:taxon-name></italic> (<xref ref-type="bibr" rid="B47">Sant’Anna-Santos et al. 2025</xref>); therefore, this is the second record for the genus. We also observed differences in the length of apical rachillae (Table <xref ref-type="table" rid="T1">1</xref>). The length of pistillate flowers, as well as the number of sepals and petals, are also useful for distinguishing the two species, in addition to the valvate petal apices, which reach 2/3 of the petal length in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> (Fig. <xref ref-type="fig" rid="F3">3K</xref>) and 1/3–1/2 in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (Fig. <xref ref-type="fig" rid="F2">2K</xref>). The pistil is smaller in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> (Table <xref ref-type="table" rid="T1">1</xref>), bears indumentum and has an undulate staminodial ring (Fig. <xref ref-type="fig" rid="F3">3L</xref>), in contrast to <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>, where the pistil is glabrous and the staminodial ring is dentate (Fig. <xref ref-type="fig" rid="F2">2L</xref>). The fruit is smaller and nearly globose in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> (Fig. <xref ref-type="fig" rid="F3">3M</xref>, <xref ref-type="fig" rid="F5">5K</xref>) and ellipsoid in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (Fig. <xref ref-type="fig" rid="F2">2M</xref>, <xref ref-type="fig" rid="F5">5L</xref>).</p>
          <p>Anatomically, <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> is surprisingly different from <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> (Table <xref ref-type="table" rid="T2">2</xref>; Figs <xref ref-type="fig" rid="F6">6</xref>, <xref ref-type="fig" rid="F7">7</xref>). Notable differences include the frequency and location of raphides, the alignment of fibre groups in the expansion tissue, stomatal position, mesophyll differentiation, and an exclusive feature in <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>: the presence of a small accessory vascular bundle within the expansion tissue. Our results confirm that knowledge of the plant in its natural habitat, combined with leaf anatomical studies, is essential for circumscribing these dwarf palms. In <xref ref-type="bibr" rid="B31">Noblick and Lorenzi (2010)</xref>, these two factors supported the reinstatement of species previously synonymized and revealed multiple dwarf species that were unknown or treated as a single species. Since <xref ref-type="bibr" rid="B14">Glassman (1972)</xref>, pinnae anatomy has been known to be useful not only for distinguishing morphologically very distinct species, but also morphologically very similar species, and distinct populations treated as a single species (<xref ref-type="bibr" rid="B14">Glassman 1972</xref>, <xref ref-type="bibr" rid="B16">1987</xref>; <xref ref-type="bibr" rid="B31">Noblick and Lorenzi 2010</xref>; <xref ref-type="bibr" rid="B27">Noblick 2013</xref>, <xref ref-type="bibr" rid="B28">2017a</xref>, <xref ref-type="bibr" rid="B29">2017b</xref>; <xref ref-type="bibr" rid="B32">Noblick and Sant’Anna-Santos 2021</xref>; <xref ref-type="bibr" rid="B40">Sant’Anna-Santos 2021</xref>, <xref ref-type="bibr" rid="B41">2023</xref>; <xref ref-type="bibr" rid="B42">Sant’Anna-Santos et al. 2015</xref>, <xref ref-type="bibr" rid="B43">2018</xref>), as in the case of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic>.</p>
          <p><italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="montana">montana</tp:taxon-name-part></tp:taxon-name></italic> shows marked morphological and anatomical differences from <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>; together with geographic isolation and significant habitat differences, these data support its recognition as a distinct species. <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic> exhibits rare characters for the genus, such as flowers arranged in tetrads and pentads, and an exclusive trait: an accessory vascular bundle within the expansion tissue. These results reinforce the need to revise poorly studied populations of acaulescent <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic> that are still treated as <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">S.</tp:taxon-name-part> <tp:taxon-name-part taxon-name-part-type="species" reg="evansiana">evansiana</tp:taxon-name-part></tp:taxon-name></italic>. In addition, the data presented here corroborate the southern Espinhaço Range and its disjunctions as one of the centres of diversity of <italic><tp:taxon-name><tp:taxon-name-part taxon-name-part-type="genus" reg="Syagrus">Syagrus</tp:taxon-name-part></tp:taxon-name></italic>. The discovery of this new species highlights the singularity of the local flora and supports its classification as a priority area for conservation.</p>
        </tp:treatment-sec>
      </tp:taxon-treatment>
    </sec>
  </body>
  <back>
    <ack>
      <title>Acknowledgements</title>
      <p>This study was financed in part by the Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - Brasil (CAPES) - Finance Code 001.</p>
    </ack>
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