首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Tracing back EFL gene evolution in the cryptomonads-haptophytes assemblage: separate origins of EFL genes in haptophytes, photosynthetic cryptomonads, and goniomonads.
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Tracing back EFL gene evolution in the cryptomonads-haptophytes assemblage: separate origins of EFL genes in haptophytes, photosynthetic cryptomonads, and goniomonads.

机译:追溯隐孢子虫-七种植物组合中的EFL基因进化:遍历植物,光合隐孢子虫和goniomonads中EFL基因的单独起源。

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摘要

A recently identified GTPase, elongation factor-like (EFL) protein is proposed to bear the principal functions of translation elongation factor 1alpha (EF-1alpha). Pioneering studies of EF-1alpha/EFL evolution have revealed the phylogenetically scattered distribution of EFL amongst eukaryotes, suggesting frequent eukaryote-to-eukaryote EFL gene transfer events and subsequent replacements of EF-1alpha functions by EFL. We here determined/identified seven new EFL sequences of the photosynthetic cryptomonad Cryptomonas ovata, the non-photosynthetic cryptomonad (goniomonad) Goniomonas amphinema, the foraminifer Planoglabratella opecularis, the haptophyte Chrysochromulina sp., the centroheliozoan Raphidiophrys contractilis, and two red algae Chondrus crispus and Gracilaria changii. The analyses of these EFL sequences successfully brought new insights into lateral EFL gene transfer amongst eukaryotes. Of most interest is a complex EFL evolution in a monophyletic assemblage comprised of cryptomonads and haptophytes. Since our analyses rejected any phylogenetic affinity amongst the EFL sequences from Goniomonas, photosynthetic cryptomonads, and haptophytes, the EFL genes of the three lineages most likely originated from different phylogenetic sources.
机译:有人提出一种最近鉴定出的GTPase延伸因子样(EFL)蛋白具有翻译延伸因子1alpha(EF-1alpha)的主要功能。 EF-1alpha / EFL进化的开创性研究揭示了EFL在真核生物中的系统发育散布分布,表明频繁的真核生物到真核生物EFL基因转移事件以及随后的EFL替代EF-1alpha功能。我们在此确定/鉴定了光合隐孢子虫卵单胞菌,非光合隐孢子虫(goniomonad)淋球菌,有孔虫Planoglabratella opecularis,触藻植物Chrysochromulina sp。,中心螺旋藻和红衣藻和两个破甲虫的七个新的EFL序列。 cil江。这些EFL序列的分析成功地为真核生物之间的侧向EFL基因转移带来了新见解。最令人感兴趣的是在由隐孢子虫和触藻植物组成的单系组合中复杂的EFL进化。由于我们的分析拒绝了来自淋菌,光合隐孢子虫和触藻植物的EFL序列之间的任何亲缘关系,因此这三个谱系的EFL基因很可能起源于不同的亲缘关系。

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