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Phylogenomics of 'Discosea': A new molecular phylogenetic perspective on Amoebozoa with flat body forms

机译:'Discosea'的系统生物学:扁平体变形虫的分子系统学研究新视角

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The majority of amoeboid lineages with flattened body forms are placed under a taxonomic hypothetical class 'Discosea' sensu Smirnov et al. (2011), which encompasses some of the most diverse morphs within Amoebozoa. However, its taxonomy and phylogeny is poorly understood. This is partly due to lack of support in studies that are based on limited gene sampling. In this study we use a phylogenomic approach including newly-generated RNA-Seq data and comprehensive taxon sampling to resolve the phylogeny of 'Discosea'. Our analysis included representatives from all orders of 'Discosea' and up to 550 genes, the largest gene sampling in Amoebozoa to date. We conducted extensive analyses to assess the robustness of our resulting phylogenies to effects of missing data and outgroup choice using probabilistic methods. All of our analyses, which explore the impact of varying amounts of missing data, consistently recover well-resolved and supported groups of Amoebozoa. Our results neither support the monophyly nor dichotomy of 'Discosea' as defined by Smirnov et al. (2011). Rather, we recover a robust well-resolved Glade referred to as Eudiscosea encompassing the majority of discosean orders (seven of the nine studied here), while the Dactylopodida, Thecamoebida and Himatismenida, previously included in 'Discosea,' are non-monophyletic. We also recover novel relationships within the Eudiscosea that are largely congruent with morphology. Our analyses enabled us to place some incertae sedis lineages and previously unstable lineages such as Vermistella, Mayorella, Gocevia, and Stereomyxa. We recommend some phylogeny-based taxonomic amendments highlighting the new findings of this study and discuss the evolution of the group based on our current understanding. (C) 2016 Elsevier Inc. All rights reserved.
机译:大多数具有扁平体形的变形虫世系被归类为“ Discosea”分类的假想分类。 (2011年),其中包括变形虫内一些最多样化的形态。但是,对其分类和系统发育了解甚少。部分原因是基于有限基因采样的研究缺乏支持。在这项研究中,我们使用一种植物学方法,包括最新生成的RNA-Seq数据和全面的分类群采样,以解决'Discosea'的系统发育。我们的分析包括来自“迪斯科西”所有订单的代表和多达550个基因,这是迄今为止变形虫中最大的基因抽样。我们进行了广泛的分析,以评估我们得出的系统发育对丢失数据和使用概率方法进行群体选择的影响的稳健性。我们进行的所有分析均探究了各种缺失数据的影响,并不断地检索出已得到很好解析和支持的变形虫。我们的研究结果既不支持Smirnov等人定义的“迪斯科西”的单论性也不二分法。 (2011)。相反,我们获得了一个功能强大且解析度高的Glade,称为Eudiscosea,涵盖了大多数迪斯科舞阶(此处研究的九个中的七个),而以前包含在“ Discosea”中的Dactylopodida,Thecamoebida和Himatismenida是非单系的。我们还恢复了在Eudiscosea中与形态基本一致的新颖关系。我们的分析使我们能够放置一些不全系和先前不稳定的系,例如Vermistella,Mayorella,Gocevia和Stereomyxa。我们推荐一些基于系统发育的分类学修订,突出本研究的新发现,并根据我们目前的理解讨论该小组的发展。 (C)2016 Elsevier Inc.保留所有权利。

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