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A phylogenomic and ecological analysis of the globally abundant Marine Group II archaea (Ca. Poseidoniales ord. nov.)

机译:全球丰富的海洋族古亚亚亚核糖和生态学分析(CA. Poseidoniales ORD。11月)

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Marine Group II (MGII) archaea represent the most abundant planktonic archaeal group in ocean surface waters, but our understanding of the group has been limited by a lack of cultured representatives and few sequenced genomes. Here, we conducted a comparative phylogenomic analysis of 270 recently available MGII metagenome-assembled genomes (MAGs) to investigate their evolution and ecology. Based on a rank-normalised genome phylogeny, we propose that MGII is an order-level lineage for which we propose the name Candidatus Poseidoniales (after Gr. n. Poseidon, God of the sea), comprising the families Candidatus Poseidonaceae fam. nov. (formerly subgroup MGIIa) and Candidatus Thalassarch-aeaceae fam. nov. (formerly subgroup MGIIb). Within these families, 21 genera could be resolved, many of which had distinct biogeographic ranges and inferred nutrient preferences. Phylogenetic analyses of key metabolic functions suggest that the ancestor of Ca. Poseidoniales was a surface water-dwelling photoheterotroph that evolved to occupy multiple related ecological niches based primarily on spectral tuning of proteorhodopsin genes. Interestingly, this adaptation appears to involve an overwrite mechanism whereby an existing single copy of the proteorhodopsin gene is replaced by a horizontally transferred copy, which in many instances should allow an abrupt change in light absorption capacity. Phototrophy was lost entirely from five Ca. Poseidoniales genera coinciding with their adaptation to deeper aphotic waters. We also report the first instances of nitrate reductase in two genera acquired via horizontal gene transfer (HGT), which was a potential adaptation to oxygen limitation. Additional metabolic traits differentiating families and genera include flagellar-based adhesion, transporters, and sugar, amino acid, and peptide degradation. Our results suggest that HGT has shaped the evolution of Ca. Poseidoniales to occupy a variety of ecological niches and to become the most successf
机译:海洋族二世(MGII)Archaea代表了海景水域中最丰富的浮游古群,但我们对本集团的理解受到缺乏培养的代表和少数序列的基因组。在这里,我们对最近可用的MgII梅毒群组合的基因组(MAGS)进行了对比较的文学介国核发学分析,以研究其演化和生态学。基于秩序归一化的基因组系统,我们提出了MGII是我们提出名称Candidatus Poseidones(GR.POSEIDON,海神)的命名的订单级谱系,包括Candidatus Poseidonaceae Fam的家庭。 11月。 (以前的亚组MGIIA)和Candidatus Thalassarch-AEACEAE FAM。 11月。 (以前的亚组MGIIB)。在这些家庭中,可以解决21个属,其中许多有不同的生物地理范围和推断营养偏好。关键代谢函数的系统发育分析表明CA的祖先。 Poseidoniales是一种表面水居住的光检查,它主要是基于蛋白质红豆瓣基因的光谱调谐占据多种相关生态学群。有趣的是,这种适应似乎涉及覆盖机制,由此,蛋白质酚肽基因的现有单拷贝被水平转移的副本所取代,在许多情况下应该允许光吸收能力突然变化。光萎缩完全从五个加利福丢失。 Poseidoniales属于它们适应更深层次的表情水域。我们还报告了通过水平基因转移(HGT)获得的两种属硝酸还原酶的第一个实例,这是对氧气限制的潜在适应性。额外的代谢性状区分家族和属包括基于鞭毛的粘附,转运蛋白和糖,氨基酸和肽降解。我们的结果表明,HGT成形了CA的演变。 Poseidoniales占据各种生态利基,成为最成功的

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