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Extreme halophilic archaea derive from two distinct methanogen Class II lineages

机译:极端嗜嗜盐古痤疮来自两个不同的甲烷酮类II谱系

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Phylogenetic analyses of conserved core genes have disentangled most of the ancient relationships in Archaea. However, some groups remain debated, like the DPANN, a deep-branching super-phylum composed of nanosized archaea with reduced genomes. Among these, the Nanohaloarchaea require high-salt concentrations for growth. Their discovery in 2012 was significant because they represent, together with Halobacteria (a Class belonging to Euryarchaeota), the only two described lineages of extreme halophilic archaea. The phylogenetic position of Nanohaloarchaea is highly debated, being alternatively proposed as the sister-lineage of Halobacteria or a member of the DPANN super-phylum. Pinpointing the phylogenetic position of extreme halophilic archaea is important to improve our knowledge of the deep evolutionary history of Archaea and the molecular adaptive processes and evolutionary paths that allowed their emergence. Using comparative genomic approaches, we identified 258 markers carrying a reliable phylogenetic signal. By combining strategies limiting the impact of biases on phylogenetic inference, we showed that Nanohaloarchaea and Halobacteria represent two independent lines that derived from two distinct but related methanogen Class II lineages. This implies that adaptation to high salinity emerged twice independently in Archaea and indicates that emergence of Nanohaloarchaea within DPANN in previous studies is likely the consequence of a tree reconstruction artifact, challenging the existence of this super-phylum.
机译:保守核心基因的系统发育分析解开了古代古老的古老关系。然而,一些群体仍然争论,如DPANN,由纳米化古痤疮组成的深度分支超字幕,其具有减少的基因组。其中,纳米统突具需要高盐浓度的生长。他们在2012年的发现是显着的,因为它们与晕杆菌(属于euryarchaeota的课程)表示,这是极端嗜盐古代的唯一描述的血丝。纳米硫砂的系统发育位置是高度讨论的,也被拟议为晕杆菌或DPANN超字节的成员的姐妹族。精确定位极端嗜辣椒古痤疮的系统发育位置对于改善我们对古代进化历史的知识以及允许其出现的分子适应性过程和进化路径的知识是重要的。使用比较基因组方法,我们确定了携带可靠性系统发育信号的258个标记。通过组合限制偏差对系统发育推理的影响的策略,我们表明纳米硫砂菌和晕杆菌代表了两条衍生自两个明显但相关的甲烷类II谱系的三种独立的线。这意味着对高盐度的适应性在古亚亚中独立地出现了两次,并且表明在先前的研究中,DPANN内的纳米突突出的出现可能是树形重建伪影的结果,挑战这种超门的存在。

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