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十足目蟹类的系统基因组学分析支持原淡水蟹的早期分化。

Phylogenomic analyses of brachyuran crabs support early divergence of primary freshwater crabs.

机构信息

Simon F. S. Li Marine Science Laboratory, School of Life Sciences, The Chinese University of Hong Kong, Hong Kong.

Simon F. S. Li Marine Science Laboratory, School of Life Sciences, The Chinese University of Hong Kong, Hong Kong; School of Pharmaceutical Sciences (Shenzhen), Sun Yat-sen University, Guangzhou, China.

出版信息

Mol Phylogenet Evol. 2019 Jun;135:62-66. doi: 10.1016/j.ympev.2019.02.001. Epub 2019 Feb 11.

Abstract

Recent fossil calibrated molecular phylogenies have revealed that the Brachyura underwent rapid radiation during the Cretaceous and Early Tertiary, resulting in many early diverging lineages separated by short internodes that remain difficult to resolve. Here we present the first phylogenomic analyses of Brachyura using transcriptome data from 30 brachyuran species and 22 families. Analyses were carried out on a dataset containing 372 putative homologous loci (246,590 bps) and included data from 21 newly generated transcriptomes. With minor exceptions, all phylogenetic analyses recovered a congruent, highly resolved and well supported brachyuran phylogeny. Consistent with previous work, this phylogeny suggests that primary freshwater crabs diverged early in brachyuran evolution, falling sister to Thoracotremata, thus supporting recent proposal for establishment of subsection Potamoida for primary freshwater crabs. The interfamilial relationships among heterotremes were well resolved in our analyses but those within Thoracotremata remained problematic. Phylogenomic analyses clearly provide a powerful means for resolving brachyuran relationships, but future studies would benefit greatly from increased taxon sampling of transcriptome data.

摘要

最近的化石校准分子系统发育研究表明,短尾亚目在白垩纪和早第三纪经历了快速辐射,产生了许多早期分化的谱系,它们之间的短节段仍然难以解决。在这里,我们使用 30 种短尾亚目物种和 22 个科的转录组数据首次进行了短尾亚目基因组学分析。分析是在一个包含 372 个假定同源基因座(246590 个碱基对)的数据集上进行的,其中包括 21 个新生成的转录组数据。除了一些小的例外,所有的系统发育分析都恢复了一个一致的、高度解析的和强有力支持的短尾亚目系统发育。与之前的工作一致,这个系统发育表明,初级淡水蟹在短尾亚目进化的早期就已经分化出来,与 Thoracotremata 并列,因此支持最近提出的为初级淡水蟹建立亚科 Potamoida 的建议。在我们的分析中,异尾类之间的种间关系得到了很好的解决,但 Thoracotremata 内部的关系仍然存在问题。基因组学分析显然为解决短尾亚目关系提供了一种强大的手段,但未来的研究将从增加转录组数据的分类群采样中受益匪浅。

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