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Aerobic Carbon Monoxide Oxidation in the Course of Growth of a Hyperthermophilic Archaeon, Sulfolobus sp ETSY

机译:有氧碳一氧化碳氧化在高疗嗜热古氏症的生长过程中,Sulfolobus sp etsy

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摘要

An aerobic hyperthermophilic CO-oxidizing archaeon, Sulfolobus sp. strain ETSY, was isolated and characterized. Presently, it is the only known representative of both hyperthermophiles and Archaea that is capable of aerobic oxidation of CO, a gas of global importance for atmospheric chemistry and of local importance as one of the substrates for the microbial communities of hydrothermal vents. In the genome of Sulfolobus sp. ETSY we found genetic determinants of aerobic CO oxidation: a coxFMSLDE gene cluster and two separately located coxG genes. We also found such gene clusters in the genomes of certain strains of Sulfolobus islandicus and Sulfolobus solfataricus. On the phylogenetic tree of large subunits of aerobic CO-dehydrogenases (CoxLs), these proteins of Sulfolobus representatives formed a compact cluster within one of the branches formed by bacterial form I CoxLs. Thus we argue that the ability to oxidize CO aerobically was acquired by Sulfolobus ancestor from Bacteria relatively late in the evolution, presumably after the formation of the atmosphere with a high oxygen content.
机译:一种有氧高热共氧化archaeon,Sulfolobus sp。菌株ETSS,被隔离并表征。目前,它是能够有氧化氧化的唯一已知的代表性,其具有有氧氧化,其全球性大气化学和局部重要性作为水热通风口微生物群落之一。在Sulfolobus sp的基因组中。 ETSY我们发现了有氧CO氧化的遗传决定因素:COXFMSLDE基因簇和两个单独定位的COXG基因。我们还发现了某些菌株苏洛枯草和苏磺菌枯草菌菌株的基因组中的这种基因簇。在有氧共脱氢酶(COXL)的大亚基的系统发育树上,磺脲代表的这些蛋白质在通过细菌形式I COXL形成的分枝中形成了紧凑的簇。因此,我们争辩说,通过苏尔菲罗菌祖先从细菌中获得氧化Co的能力,从而在进化中相对晚期,可能是在具有高氧含量的大气层之后。

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