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Analysis of Rare Amino Acid Replacements Supports the Coelomata Clade

机译:稀有氨基酸替代物的分析支持腔肠蠕虫进化枝

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摘要

The recent analysis of a novel class of rare genomic changes, RGC_CAMs (after conserved amino acids—multiple substitutions), supported the Coelomata clade of animals as opposed to the Ecdysozoa clade (Rogozin et al. 2007). A subsequent reanalysis, with the sequences from the sea anemone Nematostella vectensis included in the set of outgroup species, suggested that this result was an artifact caused by reverse amino replacements and claimed support for Ecdysozoa (Irimia et al. 2007). We show that the internal branch connecting the sea anemone to the bilaterian animals is extremely short, resulting in a weak statistical support for the Coelomata clade. Direct estimation of the level of homoplasy, combined with taxon sampling with different sets of outgroup species, reinforces the support for Coelomata, whereas the effect of reversals is shown to be relatively minor.
机译:最近对一类新颖的罕见基因组变化的分析,RGC_CAMs(在保守的氨基酸-多个取代之后)支持了动物的鞘翅目进化枝而不是蜕皮虫进化枝(Rogozin等人,2007)。随后的重新分析,包括来自一组外来物种的海葵线虫Nematostella vectensis的序列,表明该结果是由反向氨基置换引起的假象,并声称支持E胞藻(Irimia et al。2007)。我们表明,将海葵和双语动物连接起来的内部分支非常短,导致对腔肠动物进化支的弱统计支持。对同质生水平的直接估计,结合不同组外群物种的分类群采样,可以加强对腔肠蠕动的支持,而逆转的作用却相对较小。

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