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        <title>Latest Articles from Plant Ecology and Evolution</title>
        <description>Latest 10 Articles from Plant Ecology and Evolution</description>
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            <title>Latest Articles from Plant Ecology and Evolution</title>
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		    <title>Symmetry and structure re-visited: is symmetry still over-emphasised as a taxonomic character for naviculoid diatoms?</title>
		    <link>https://plecevo.eu/article/152748/</link>
		    <description><![CDATA[
					<p>Plant Ecology and Evolution 158(2): 309-322</p>
					<p>DOI: 10.5091/plecevo.152748</p>
					<p>Authors: Eileen J. Cox</p>
					<p>Abstract: Background and aims – Over 40 years ago, I explored the use of symmetry and structure as taxonomic criteria for naviculoid diatoms, arguing that structure was the more informative character. This paper examines subsequent progress in the understanding and systematics of naviculoid diatoms with particular reference to the treatment of symmetry as a taxonomic criterion.           Methods and key results – The diatom literature since 1979 has been reviewed showing how SEM studies and data on wall morphogenesis have improved our knowledge of diatom wall structure and ontogenetic pathways. Understanding the inherent asymmetry in raphid diatom valves led to the recognition of two types of dorsiventrality within the Cymbellales and underpins the separation of cymbelloid taxa in different families. Hypotheses of character homology in the Naviculaceae have been supported by more recent molecular phylogenetic analyses, also revealing how shape and symmetry can vary within this family. Over-emphasising the significance of a particular character (out of familiarity or a priori preference?) can lead to relevant discriminative characteristics being ignored. The validity of some new genera is questioned and generic descriptions should be revised.           Conclusion – Whereas valve shape and symmetry remain useful features when identifying taxa, systematic relationships are revealed through wall structure and should be the basis for diatom systematics. Nevertheless, it is important to discriminate between homologous and homoplasious characters and to apply terminology accurately.</p>
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		    <category>Review</category>
		    <pubDate>Mon, 1 Sep 2025 09:00:00 +0000</pubDate>
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		    <title>The relationships of Eunotogramma frauenfeldii (Bacillariophyta) I. An account of its structure and description of the new genus Moralesonia</title>
		    <link>https://plecevo.eu/article/121829/</link>
		    <description><![CDATA[
					<p>Plant Ecology and Evolution 157(3): 270-290</p>
					<p>DOI: 10.5091/plecevo.121829</p>
					<p>Authors: David M. Williams, Tsvetoslav Georgiev, Tanja M. Schuster, Carlos E. Wetzel</p>
					<p>Abstract: Background and aims – Euodia frauenfeldii has the characteristic ‘semi-circular’ or ‘crescent-shaped’ valves found in most species of Euodia, but as it also has a pair of conspicuous transapical costae, it was later transferred to Eunotogramma. Examination of the structure of its valves and girdle has led to a reassessment of its taxonomic position.           Material and methods – We discuss various aspects of terminology used for the parts of the valve, their abbreviations used throughout the literature and provide a detailed taxonomic background to both Euodia and Eunotogramma.           Key results – A new genus, Moralesonia is described and its relationships discussed.</p>
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		    <category>Research Article</category>
		    <pubDate>Thu, 25 Jul 2024 10:00:00 +0000</pubDate>
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		    <title>Revision of the Staurosirella leptostauron complex (Staurosiraceae, Bacillariophyta) in Europe with the description of three new species</title>
		    <link>https://plecevo.eu/article/119907/</link>
		    <description><![CDATA[
					<p>Plant Ecology and Evolution 157(2): 174-201</p>
					<p>DOI: 10.5091/plecevo.119907</p>
					<p>Authors: Bart Van de Vijver, Wolf-Henning Kusber, Ingrid Jüttner, Tanja M. Schuster, David M. Williams</p>
					<p>Abstract: Background and aims – Small-celled araphid diatoms form an important part of the diatom flora in our rivers and lakes. Although several of these species are frequently reported, their correct taxonomic identity is often obscured due to a lack of good knowledge of the original (type) material.           Material and methods – Several historical (nineteenth century) original samples were retrieved from different European and North American diatom collections. The samples have been analysed using light (LM) and scanning electron microscopy (SEM).           Key results – Staurosirella crux comb. nov., based on Ehrenberg’s Navicula crux, proved to be the oldest valid name for Staurosirella harrisonii, the latter now being considered a younger synonym. A new European species, S. neorhomboides sp. nov., is described to replace the name S. rhomboides, now considered a younger synonym of S. leptostauron. The North American populations of S. rhomboides and S. martyi differ sufficiently from the type populations and are described as new species: S. moralesii sp. nov. and S. manoyloviana sp. nov. The new combination Staurosirella informis comb. nov. is proposed for a taxon described in 1856 from the French Pyrenees as Odontidium informe. Staurosirella leptostauron turns out to be insufficiently described and is now documented for further use.           Conclusion – The analysis of the original (type) material corrected several taxonomic errors and better characterised the morphology of several commonly observed Staurosirella species.</p>
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		    <category>Research Article</category>
		    <pubDate>Thu, 30 May 2024 09:30:00 +0000</pubDate>
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		    <title>A new Actinella species (Eunotiaceae, Bacillariophyta) from the Yangambi Biosphere Reserve, Democratic Republic of the Congo</title>
		    <link>https://plecevo.eu/article/116102/</link>
		    <description><![CDATA[
					<p>Plant Ecology and Evolution 157(2): 149-157</p>
					<p>DOI: 10.5091/plecevo.116102</p>
					<p>Authors: Christine Cocquyt, Jonathan C. Taylor</p>
					<p>Abstract: Background and aims – Actinella species from Central Africa are only rarely reported. The acid waters from many stream and small rivers in the Congo Basin form a potential environment for species of this genus. We studied several samples from the region of Yangambi to confirm whether species belonging to this genus are present.           Material and methods – Samples for diatom investigation were collected in several streams and small rivers (Moni, Ngima, and Libongo), in the tropical rainforest in the Yangambi Biosphere Reserve, Tshopo Province, Democratic Republic of the Congo. The samples were prepared to obtain permanent microscope slides for light microscopy studies using standard methods and cleaned material for scanning electron microscopy.           Key results – A novel Actinella was observed in the studied samples. The taxon was compared to other species such as A. disjuncta, A. lange-bertalotii, A. modesta, A. pereunotioides, and A. pseudohantzschia, although the new species morphologically resembles most A. eunotioides, a species discovered in the Amazon basin in Brazil, and A. eunotioides var. minor, described in 1966 from the Central African Republic. The taxon observed in our material differs from A. eunotioides mainly in the valve dimensions, being much smaller, and the higher density of the marginal spines. Stria density also tends to be coarser. The valve length of A. eunotioides var. minor, on the other hand, corresponds with the smallest valves of our taxon but the valves are narrower, with a higher stria density. The ventral margin is slightly convex, while in the new taxon it is slightly concave. Moreover, in the original description of A. eunotioides var. minor, the absence of spines is mentioned, while they are present on the valves in the materials we investigated. Based on the observed morphological differences, we consider the taxon recorded in the streams and small rivers in the Yangambi Biosphere Reserve distinct from A. eunotioides and its var. minor and subsequently, we describe Actinella kufferathiana as a species new to science.</p>
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		    <category>Research Article</category>
		    <pubDate>Thu, 2 May 2024 09:30:00 +0000</pubDate>
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		    <title>The genus Orthoseira (Orthoseiraceae, Bacillariophyta) in Papua New Guinea with the description of two new species</title>
		    <link>https://plecevo.eu/article/115801/</link>
		    <description><![CDATA[
					<p>Plant Ecology and Evolution 157(2): 113-124</p>
					<p>DOI: 10.5091/plecevo.115801</p>
					<p>Authors: Natalia Kochman-Kędziora, Bart Van de Vijver</p>
					<p>Abstract: Background and aims – The genus Orthoseira is generally known to be typically aerophilous. Despite the worldwide occurrence of the genus, most of the Orthoseira species seem to have a rather restricted biogeographic distribution, often being part of an endemic diatom flora. During a survey of the aerophilic diatom flora in Papua New Guinea (Karkar Island, Boisa Island), four morphologically distinct Orthoseira taxa have been observed.           Material and methods – The morphology of four Orthoseira species was investigated in detail using light microscopy (LM) and scanning electron microscopy (SEM).           Key results – The morphology of all four species is discussed and compared to known species worldwide. The main differences between the species include: the presence and shape of linking structures, the number of rows of perforations on the copulae, presence/absence of internal caverns and the external structure of the carinoportulae. Two species, with a unique set of features, are described as new to science: Orthoseira iserentantii sp. nov. and Orthoseira papuensis sp. nov.           Conclusions – The observation of four Orthoseira species, including two species new to science, confirms that the diversity of the genus Orthoseira is underestimated.</p>
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		    <category>Research Article</category>
		    <pubDate>Wed, 13 Mar 2024 11:00:00 +0000</pubDate>
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		    <title>Tropical African diatoms from the Eunotia asterionelloides (Bacillariophyta) species complex, with descriptions of new species</title>
		    <link>https://plecevo.eu/article/106779/</link>
		    <description><![CDATA[
					<p>Plant Ecology and Evolution 157(1): 88-99</p>
					<p>DOI: 10.5091/plecevo.106779</p>
					<p>Authors: Jonathan C. Taylor, Christine Cocquyt, Gina Walsh</p>
					<p>Abstract: Background and aims – Diatoms from tropical Central Africa are rarely studied and documented. Waters of the Congo Basin are often acidic and thus may be dominated by diatoms from the genus Eunotia, usually found in the benthos and periphyton, but rarely in the plankton. We investigated planktonic Eunotia species from the Eunotia asterionelloides complex to determine their identity and distribution.           Material and methods – Samples were collected in fishponds in the vicinity of Kisangani, D.R. Congo, from herbarium material collected from the Bonkele River, D.R. Congo, and in the Kouilou River, Republic of the Congo. These samples were prepared for diatom analysis, examined using standard methods, and documented using both light and scanning electron microscopy.           Key results – Several taxa belonging to the Eunotia asterionelloides complex were observed. Taxa from this complex are recorded in literature as either E. asterionelloides or E. zasuminensis. The taxon from fishponds in the D.R. Congo was identified as E. tukanorum, previously described from Brazil. The structure of the valve outline and raphe appear similar, particularly the raphe position and length. A second species was found on aquatic macrophyte (Utricularia and Nymphaea) herbarium specimens from the D.R. Congo and a third species from the Kouilou River in the Republic of the Congo. These latter two taxa superficially resemble E. zasuminensis. Although similar in valve outline, the taxa differ morphologically. The shape of the apices in larger cells is indented to a larger degree, and the raphe differs in its structure, particularly the shape of the terminal endings. The structure and position of the rimoportula also differ. Also, one of these taxa is sometimes strongly flexed around the apical axis. Based on morphology, we consider these taxa distinct from E. zasuminensis and from each other, and thus describe Eunotia globicephala sp. nov. and Eunotia magnaparva sp. nov.</p>
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		    <category>Research Article</category>
		    <pubDate>Wed, 21 Feb 2024 09:41:00 +0000</pubDate>
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		    <title>          Johansenicoccus eremophilus gen. et sp. nov., a novel evolutionary lineage in Chlorophyceae with unusual genomic features</title>
		    <link>https://plecevo.eu/article/105762/</link>
		    <description><![CDATA[
					<p>Plant Ecology and Evolution 156(3): 311-325</p>
					<p>DOI: 10.5091/plecevo.105762</p>
					<p>Authors: Karolina Fučíková, Melissa Taylor, Louise A. Lewis, Brian K. Niece, Aleeza S. Isaac, Nicole Pietrasiak</p>
					<p>Abstract: Background – Green algae are a diverse group of photosynthetic eukaryotes, yet are still vastly understudied compared to land plants. For many years, green algae were characterized based on their morphology and life cycles. More recently, phylogenetic and genomic analyses have been added to the phycological toolkit for a better understanding of algal biodiversity and evolutionary history.                  Material and methods – A desert strain of green algae was isolated from Joshua Tree National Park (JTNP) in southern California as part of a larger biodiversity survey. The alga’s nuclear rRNA genes as well as the chloroplast genome were sequenced, annotated, and analysed in addition to a morphological assessment.                  Results – Morphologically this strain is especially similar to Pseudomuriella and Rotundella, and its lipid profile resembles that of other soil algae, but phylogenomic analyses demonstrate that it is a distinct evolutionary lineage in Chlorophyceae. The alga exhibits several unusual genomic features, the most remarkable being its highly derived yet apparently functional nuclear rRNA genes, 18S and 28S. Both genes are GC-rich and bear many compensatory base changes to maintain a similar secondary structure to that of other green algae. The chloroplast genome has a distinct gene order and repeat arrangement from other published green algal plastomes, but contains the expected genes and also provides phylogenetically informative data.                  Conclusion – We conclude that the strain be placed into a new species and genus in the class Chlorophyceae, and propose the name Johansenicoccus eremophilus for this new taxon. Johansenicoccus eremophilus exemplifies science’s insufficient understanding of the range of genomic variations among inconspicuous soil algae.</p>
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		    <category>Research Article</category>
		    <pubDate>Wed, 6 Sep 2023 15:01:00 +0000</pubDate>
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		    <title>Taxonomic and biogeographical analysis of diatom assemblages from historic bryophyte samples from Campbell Island (sub-Antarctic)</title>
		    <link>https://plecevo.eu/article/84543/</link>
		    <description><![CDATA[
					<p>Plant Ecology and Evolution 155(1): 107-122</p>
					<p>DOI: 10.5091/plecevo.84543</p>
					<p>Authors: Charlotte Goeyers, Dale H. Vitt, Bart Van de Vijver</p>
					<p>Abstract: Background and aims – The past two decades, the non-marine diatom flora in the sub-Aantarctic region has been intensively revised. Historic collections provide excellent tools for answering taxonomic, community-related, and biogeographical questions. This study analysed the moss-inhabiting diatom flora from sub-Antarctic Campbell Island in samples collected in 1969–1970 and retrieved from the British Antarctic Survey herbarium (Cambridge, UK). With this study we attempt to expand our, till now sparse, knowledge on the moss-inhabiting diatom flora in the southern Pacific Ocean.Material and methods – In total, the diatom composition in 32 moss samples has been analysed using Light Microscopy (LM) and Scanning Electron Microscopy (SEM). A biogeographical analysis and community analysis of the Campbell Island diatom flora were conducted.Key results – Analysis of the Campbell Island diatom flora revealed the presence of 141 taxa belonging to 45 genera. The species composition in the dominant genera Planothidium, Humidophila, and Psammothidium, the presence of Epithemia, Rhopalodia, Cocconeis, uncommon in the sub-Antarctic region, and many unidentified taxa point to the uniqueness of the Campbell Island diatom flora. The biogeographical analysis showed an overall low similarity with the other sub-Antarctic and the Maritime Antarctic islands. Four different diatom assemblages were distinguished following the community analysis. Moisture level and habitat type seem to be the main factors shaping the Campbell Island diatom assemblages.Conclusion – The results of the Campbell Island diatom analysis highlight the importance of historic herbarium material. Since the examined flora is largely composed of unknown (presumably new) species, it is vital to analyse additional (historic) samples to complete the assessment of the moss diatom assemblages from Campbell Island.</p>
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		    <category>Research Article</category>
		    <pubDate>Wed, 30 Mar 2022 16:30:00 +0000</pubDate>
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		    <title>Diversity and habitat preferences of benthic diatoms from South Bay (Livingston Island, Antarctica)</title>
		    <link>https://plecevo.eu/article/84534/</link>
		    <description><![CDATA[
					<p>Plant Ecology and Evolution 155(1): 70-106</p>
					<p>DOI: 10.5091/plecevo.84534</p>
					<p>Authors: Ralitsa Zidarova, Plamen Ivanov, Elitsa Hineva, Nina Dzhembekova</p>
					<p>Abstract: Background and aims – Despite a long research history, knowledge of Antarctic marine benthic diatoms is fragmentary. This study reports on marine benthic diatoms from South Bay, Livingston Island, focusing on diatoms living on hard substrata, and species distribution across different coastal habitats.Material and methods – Samples were collected from tidal pools (19), intertidal cobbles (9), artificial substrata installed at various depths (10), coastal rocks (2), and bottom sediments at depths > 20 m (2). Species identifications and community analyses were done using LM with additional information obtained using SEM. nMDS based on diatom abundance data was applied to display differences between the samples by habitat/substratum type and sampling month. The significance of the habitat/substratum type and sampling month on diatom communities was checked with PERMANOVA. Similarity/dissimilarity within and between sample groups and their contributing species were explored with SIMPER.Key results – In total, 133 diatom taxa were recorded, of which 110 are benthic. A large number of taxa could not be certainly identified. Taxonomic remarks and ecology and distribution data for some rarely reported species with convoluted taxonomic and nomenclatural histories are given. One new combination is proposed. Diatom communities were influenced by the habitat/substratum type, but not by seasonality. Significant differences existed between communities in tidal pools and those on cobbles, artificial substrata, and sediments, and between those on sediments and artificial substrata. Navicula aff. perminuta dominated on cobbles and often on artificial substrata. Species forming mucilage tubes, tree-like colonies, and chains of cells embedded in mucilage were restricted to tidal pools.Conclusion – Benthic diatom communities from South Bay are highly diverse and species show distinct distributions in the coastal habitats, but the scarce studies and often confusing nomenclature history of the taxa make their identification challenging, and potentially common species for the region remain unknown.</p>
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		    <category>Research Article</category>
		    <pubDate>Wed, 30 Mar 2022 16:30:00 +0000</pubDate>
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		    <title>Typification of the puzzling diatom species Neidium iridis (Neidiaceae)</title>
		    <link>https://plecevo.eu/article/24596/</link>
		    <description><![CDATA[
					<p>Plant Ecology and Evolution 152(2): 392-401</p>
					<p>DOI: 10.5091/plecevo.2019.1601</p>
					<p>Authors: Paul B Hamilton, Katarzyna Stachura-Suchoples, Wolf-Henning Kusber, Andreanne Bouchard, Regine Jahn</p>
					<p>Abstract: Background and aims – Confusion over the taxonomic identity of Neidium iridis (Ehrenb.) Cleve (= Navicula iridis Ehrenb.) has persisted for more than 130 years with identifications of valve shapes varying from elliptical to linear and sizes from 100 to 300 µm. This confusion can be linked to the rarity of the species and poor attention to the original line drawings of Ehrenberg. This study examines the type material of Navicula iridis and further uses additional material from North America to define the species Neidium iridis.Methods – Mica and material from Christian Gottfried Ehrenberg’s Collection were studied to examine Navicula iridis. Light and electron microscope techniques were used to document the variability of valve morphology of original material in comparison with other fossil and recent materials.Key results – Ehrenberg designated no nomenclatural type for Navicula iridis at the place of its first description, and until recently the original material was not studied. One freshwater extant locality was identified (New York, West Point) in the original 1843 publication, and in his notes and drawings. Examination of the micas and material from the type locality, showed that Navicula iridis was very rare. Two specimens were found that matched the line drawing presented by Ehrenberg. In addition, we examined Ehrenberg’s original material with SEM, as well as two other localities in North America and present LM and SEM documentation of additional valve forms. A further evaluation of the status of Neidium columnaris, Neidium maximum and an unknown taxon in relation to Neidium iridis is presented.Conclusions – The findings of this study elucidate the taxon Navicula iridis (= Neidium iridis) as described by Ehrenberg in 1843. This will assist in the identification of other large Neidium taxa which to date have been associated with Neidium iridis.</p>
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		    <category>Short Communication</category>
		    <pubDate>Tue, 9 Jul 2019 00:00:00 +0000</pubDate>
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