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首页> 外文期刊>Environmental microbiology >Genetic and functional properties of uncultivated thermophilic crenarchaeotes from a subsurface gold mine as revealed by analysis of genome fragments
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Genetic and functional properties of uncultivated thermophilic crenarchaeotes from a subsurface gold mine as revealed by analysis of genome fragments

机译:通过基因组片段分析揭示了地下金矿中未培养的嗜热角膜古菌的遗传和功能特性

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Within a phylum Crenarchaeota, only some members of the hyperthermophilic class Thermoprotei, have been cultivated and characterized. In this study, we have constructed a metagenomic library from a microbial mat formation in a subsurface hot water stream of the Hishikari gold mine, Japan, and sequenced genome fragments of two different phylo-groups of uncultivated thermophilic Crenarchaeota : (i) hot water crenarchaeotic group (HWCG) I (41.2 kb), and (ii) HWCG III (49.3 kb). The genome fragment of HWCG I contained a 16S rRNA gene, two tRNA genes and 35 genes encoding proteins but no 23S rRNA gene. Among the genes encoding proteins, several genes for putative aerobic-type carbon monoxide dehydrogenase represented a potential clue with regard to the yet unknown metabolism of HWCG I Archaea. The genome fragment of HWCG III contained a 16S/23S rRNA operon and 44 genes encoding proteins. In the 23S rRNA gene, we detected a homing-endonuclease encoding a group I intron similar to those detected in hyperthermophilic Crenarchaeota and Bacteria, as well as eukaryotic organelles. The reconstructed phylogenetic tree based on the 23S rRNA gene sequence reinforced the intermediate phylogenetic affiliation of HWCG III bridging the hyperthermophilic and non-thermophilic uncultivated Crenarchaeota
机译:在Crenarchaeota门内,仅培养和鉴定了超嗜热类Thermoprotei的某些成员。在这项研究中,我们从日本Hishikari金矿的地下热水流中的微生物垫形成中构建了宏基因组文库,并对未经培养的嗜热Crenarchaeota的两个不同系统群的基因组片段进行了测序:(i)热水Crenarchaeotic组(HWCG)I(41.2 kb)和(ii)HWCG III(49.3 kb)。 HWCG I的基因组片段包含一个16S rRNA基因,两个tRNA基因和35个编码蛋白质的基因,但没有23S rRNA基因。在编码蛋白质的基因中,关于HWCG I古生菌的未知代谢,一些可能的好氧型一氧化碳脱氢酶基因代表了一个潜在线索。 HWCG III的基因组片段包含一个16S / 23S rRNA操纵子和44个编码蛋白质的基因。在23S rRNA基因中,我们检测到一种编码I型内含子的归巢内切核酸酶,该内含子与在超嗜热性Crenarchaeota和细菌以及真核细胞器中检测到的相似。基于23S rRNA基因序列的重建系统树,增强了HWCG III的中间系统学联系,桥接了超嗜热和非嗜温的Crenarchaeota

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