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Cercozoa comprises both EF-1α-containing and EFL-containing members

机译:Cercozoa同时包含EF-1α和EFL成员

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Elongation factor 1α (EF-1α) and elongation factor-like protein (EFL) are considered to be functionally equivalent proteins involved in peptide synthesis. Eukaryotes can be fundamentally divided into 'EF-1α-containing' and 'EFL-containing' types. Recently, EF-1α and EFL genes have been surveyed across the diversity of eukaryotes to explore the origin and evolution of EFL genes. Although the phylum Cercozoa is a diverse group, gene data for either EFL or EF-1α are absent from all cercozoans except chlorarachniophytes which were previously defined as EFL-containing members. Our survey revealed that two members of the cercozoan subphylum Filosa (Thaumatomastix sp. and strain YPF610) are EFL-containing members. Importantly, we identified EF-1α genes from two members of Filosa (Paracercomonas marina and Paulinella chromatophora) and a member of the other subphylum Endomyxa (Filoreta japonica). All cercozoan EFL homologues could not be recovered as a monophyletic group in maximum-likelihood and Bayesian analyses, suggesting that lateral gene transfer was involved in the EFL evolution in this protist assemblage. In contrast, EF-1α analysis successfully recovered a monophyly of three homologues sampled from the two cercozoan subphyla. Based on the results, we postulate that cercozoan EF-1α genes have been vertically inherited, and the current EFL-containing species may have secondarily lost their EF-1α genes.
机译:延伸因子1α(EF-1α)和延伸因子样蛋白(EFL)被认为是参与肽合成的功能等效蛋白。真核生物从根本上可以分为“含EF-1α”和“含EFL”类型。最近,已经在真核生物的多样性中对EF-1α和EFL基因进行了调查,以探索EFL基因的起源和进化。尽管门尾虫门是一个多样化的群体,但除先前定义为含EFL成员的氯蛛网菌以外,所有门尾动物都缺少EFL或EF-1α的基因数据。我们的调查显示,蓝尾猴门属的两个成员(Thaumatomastix sp。和菌株YPF610)均为含EFL的成员。重要的是,我们从Filosa的两个成员(Paracercomonas marina和Paulinella chromatophora)和另一个亚纲Endomyxa(Filoreta japonica)的成员中鉴定了EF-1α基因。在最大似然和贝叶斯分析中,所有的头尾类动物EFL同源物都不能作为单系统群体被回收,这表明在这种原生生物组合中,侧向基因转移参与了EFL的进化。相比之下,EF-1α分析成功地回收了从两个尾生动物亚门采样的三个同系物的单系。根据这些结果,我们推测头尾虫的EF-1α基因已被垂直遗传,并且当前含EFL的物种可能继而丢失了其EF-1α基因。

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