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An improved molecular phylogeny of the Nematoda with special emphasis on marine taxa

机译:线虫的分子系统发育的改进,特别着重于海洋生物分类

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摘要

Phylogenetic reconstructions of relations within the phylum Nematoda are inherently difficult but have been advanced with the introduction of large-scale molecular-based techniques. However, the most recent revisions were heavily biased towards terrestrial and parasitic species and greater representation of clades containing marine species (e.g. Araeolaimida, Chromadorida, Desmodorida, Desmoscolecida, Enoplida, and Monhysterida) is needed for accurate coverage of known taxonomic diversity. We now add small subunit ribosomal DNA (SSU rDNA) sequences for 100 previously un-sequenced species of nematodes, including 46 marine taxa. SSU rDNA sequences for > 200 taxa have been analysed based on Bayesian inference and LogDet-transformed distances. The resulting phylogenies provide support for (i) the re-classification of the Secernentea as the order Rhabditida that derived from a common ancestor of chromadorean orders Araeolaimida, Chromadorida, Desmodorida, Desmoscolecida, and Monhysterida and (ii) the position of Bunonema close to the Diplogasteroidea in the Rhabditina. Other, previously controversial relationships can now be resolved more clearly: (a) Alaimus, Campydora, and Trischistoma belong in the Enoplida, (b) Isolaimium is placed basally to a big clade containing the Axonolaimidae, Plectidae, and Rhabditida, (c) Xyzzors belongs in the Desmodoridae, (d) Comesomatidae and Cyartonema belongs in the Monhysterida, (e) Globodera belongs in the Hoplolaimidae and (0 Paratylenchus dianeae belongs in the Criconematoidea. However, the SSU gene did not provide significant support for the class Chromadoria or clear evidence for the relationship between the three classes, Enoplia, Dorylaimia, and Chromadoria. Furthermore, across the whole phylum, the phylogenetically informative characters of the SSU gene are not informative in a parsimony analysis, highlighting the short-comings of the parsimony method for large-scale phylogenetic modelling. (c) 2006 Elsevier Inc. All rights reserved.
机译:线虫门内关系的系统发育重建固有地困难,但是随着大规模基于分子的技术的引入而得到发展。但是,最近的修订版本严重偏向陆生和寄生物种,并且需要更多的包含海洋物种的进化枝(如Araeolaimida,Chromadorida,Desmodorida,Desmoscolecida,Enoplida和Monhysterida)来更好地表示已知分类学多样性。现在,我们为100个以前未测序的线虫物种(包括46个海洋类群)添加了小亚基核糖体DNA(SSU rDNA)序列。基于贝叶斯推断和LogDet转换距离,分析了200多个分类单元的SSU rDNA序列。由此产生的系统发育支持(i)将Secernentea重新分类为Rhabditida目,该起源点是由嗜铬菌目Araeolaimida,Chromadorida,Desmodorida,Desmoscolecida和Monhysterida的共同祖先衍生的;以及(ii)Bunonema的位置靠近双足类植物在Rhabditina。现在可以更清楚地解决以前有争议的其他关系:(a)A虫,Campydora和Trischistoma属于Enoplida,(b)Isolaimium基本放置在包含轴突科,Plectidae和Rhabditida的大进化枝中,(c)Xyzzors (d)Comesomatidae和Cyartonema属于Monhysterida,(e)Globodera属于Hoplolaimidae,(0 Paratylenchus dianeae属于Criconematoidea。但是,SSU基因并未为Chromadoria或clear类提供重要支持。证据表明这三个类别之间存在关联,即Enoplia,Dorylaimia和Chromadoria。此外,在整个门上,SSU基因的系统信息学特征在简约分析中不具有信息意义,这突出表明了大尺寸简约方法的缺点(c)2006 Elsevier Inc.保留所有权利。

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