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Multiple adaptations to polar and alpine environments within cyanobacteria:a phylogenomic and Bayesian approach

机译:蓝细菌对极地和高山环境的多种适应:一种植物学和贝叶斯方法

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摘要

Cyanobacteria are major primary producers in the polar and alpine regions contributing significantly to nitrogen and carbon cycles in the cryosphere. Recent advancements in environmental sequencing techniques have revealed great molecular diversity of microorganisms in cold environments. However, there are no comprehensive phylogenetic analyses including the entire known diversity of cyanobacteria from these extreme environments. We present here a global phylogenetic analysis of cyanobacteria including an extensive dataset comprised of available small subunit (SSU) rRNA gene sequences of cyanobacteria from polar and high altitude environments. Furthermore, we used a large-scale multi-gene (135 proteins and 2 ribosomal RNAs) genome constraint including 57 cyanobacterial genomes. Our analyses produced the first phylogeny of cold cyanobacteria exhibiting robust deep branching relationships implementing a phylogenomic approach. We recovered several clades common to Arctic, Antarctic and alpine sites suggesting that the traits necessary for survival in the cold have been acquired by a range of different mechanisms in all major cyanobacteria lineages. Bayesian ancestral state reconstruction revealed that 20 clades each have common ancestors with high probabilities of being capable of surviving in cold environments.
机译:蓝细菌是极地和高山地区的主要初级生产者,对冰冻圈中的氮和碳循环有重大贡献。环境测序技术的最新进展揭示了寒冷环境中微生物的巨大分子多样性。但是,没有全面的系统发育分析,包括来自这些极端环境的整个已知的蓝细菌多样性。我们在这里介绍蓝细菌的全球系统发育分析,包括一个广泛的数据集,该数据集包含来自极地和高原环境的蓝细菌的可用小亚基(SSU)rRNA基因序列。此外,我们使用了包括57个蓝细菌基因组的大规模多基因(135个蛋白质和2个核糖体RNA)基因组限制。我们的分析产生了冷蓝藻的第一个系统发育,展现出稳固的深分支关系,并采用了一种植物学方法。我们回收了北极,南极和高山地区常见的几个进化枝,表明在所有主要的蓝细菌谱系中,通过多种不同的机制已获得了在寒冷中生存所必需的特征。贝叶斯祖先状态重建显示,每个进化枝都有20个进化枝,它们具有在寒冷环境中生存的高概率。

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