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Phylogenomic Dating-The Relative Antiquity of Archaeal Metabolic and Physiological Traits

机译:植物学约会-古细菌代谢和生理特性的相对上古

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Ancestral trait reconstruction was used to identify the relative ancestry of metabolic and physiological traits in the archaeal domain of life. First, well-resolved phylogenetic trees were inferred with multiple gene sequences obtained from whole genome sequences. Next, metabolic and physiological traits were coded into characters, and ancestral state reconstruction was used to identify ancient and derived traits. Traits inferred to be ancient included sulfur reduction, methanogenesis, and hydrogen oxidation. By using the articulation of the "oxygen age constraint," several other traits were inferred to have arisen at or after 2.32 Ga: aerobic respiration, nitrate reduction, sulfate reduction, thiosulfate reduction, sulfur oxidation, and sulfide oxidation. Complex organic metabolism appeared to be nearly as ancient as autotrophy. Hyperthermophily was ancestral, while hyperaci-dophily and extreme halophily likely arose after 2.32 Ga. The ancestral euryarchaeote was inferred to have been a hyperthermophilic marine methanogen that lived in a deep-sea hydrothermal vent. In contrast, the ancestral crenarchaeote was most likely a hyperthermophilic sulfur reducer that lived in a slightly acidic terrestrial environment, perhaps a fumarole. Cross-colonization of these habitats may not have occurred until after 2.32 Ga, which suggests that both archaeal lineages exhibited niche specialization on early Earth for a protracted period of time.
机译:祖先性状的重建被用来识别生命古细菌领域中代谢和生理性状的相对祖先。首先,利用从全基因组序列获得的多个基因序列,推断出分辨良好的系统发育树。接下来,将代谢和生理性状编码为字符,并利用祖先状态重建来识别古代和衍生的性状。推断为古老的特征包括硫还原,甲烷生成和氢氧化。通过使用“氧龄约束”的表达,推断出在2.32 Ga或之后出现了其他几个特征:有氧呼吸,硝酸盐还原,硫酸盐还原,硫代硫酸盐还原,硫氧化和硫化物氧化。复杂的有机代谢似乎几乎与自养一样古老。祖先是嗜热嗜热菌,而在2.32 Ga之后可能出现嗜酸嗜热和极度嗜盐。祖先的euryarchaeote被认为是生活在深海热液喷口中的嗜热海洋产甲烷菌。相比之下,祖先的角膜古菌很可能是一种超嗜高温的硫磺还原剂,生活在一个微酸性的陆地环境中,也许是一个喷气孔。这些生境的跨殖民化可能要等到2.32 Ga之后才发生,这表明这两个古细菌世系在很长一段时间内都在地球早期表现出了生态位专长。

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