首页> 外文OA文献 >Metagenome sequence analysis of filamentous microbial communities obtained from geochemically distinct geothermal channels reveals specialization of three aquificales lineages.
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Metagenome sequence analysis of filamentous microbial communities obtained from geochemically distinct geothermal channels reveals specialization of three aquificales lineages.

机译:从地球化学上不同的地热通道获得的丝状微生物群落的宏基因组序列分析揭示了三种水生谱系的特化。

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摘要

The Aquificales are thermophilic microorganisms that inhabit hydrothermal systems worldwide and are considered one of the earliest lineages of the domain Bacteria. We analyzed metagenome sequence obtained from six thermal "filamentous streamer" communities (∼40 Mbp per site), which targeted three different groups of Aquificales found in Yellowstone National Park (YNP). Unassembled metagenome sequence and PCR-amplified 16S rRNA gene libraries revealed that acidic, sulfidic sites were dominated by Hydrogenobaculum (Aquificaceae) populations, whereas the circum-neutral pH (6.5-7.8) sites containing dissolved sulfide were dominated by Sulfurihydrogenibium spp. (Hydrogenothermaceae). Thermocrinis (Aquificaceae) populations were found primarily in the circum-neutral sites with undetectable sulfide, and to a lesser extent in one sulfidic system at pH 8. Phylogenetic analysis of assembled sequence containing 16S rRNA genes as well as conserved protein-encoding genes revealed that the composition and function of these communities varied across geochemical conditions. Each Aquificales lineage contained genes for CO2 fixation by the reverse-TCA cycle, but only the Sulfurihydrogenibium populations perform citrate cleavage using ATP citrate lyase (Acl). The Aquificaceae populations use an alternative pathway catalyzed by two separate enzymes, citryl-CoA synthetase (Ccs), and citryl-CoA lyase (Ccl). All three Aquificales lineages contained evidence of aerobic respiration, albeit due to completely different types of heme Cu oxidases (subunit I) involved in oxygen reduction. The distribution of Aquificales populations and differences among functional genes involved in energy generation and electron transport is consistent with the hypothesis that geochemical parameters (e.g., pH, sulfide, H2, O2) have resulted in niche specialization among members of the Aquificales.
机译:Aquificales是嗜热微生物,遍布全球的热液系统,被认为是细菌领域最早的血统之一。我们分析了从六个热“丝状流光”群落(每个位点约40 Mbp)获得的元基因组序列,这些群落针对在黄石国家公园(YNP)中发现的三组不同的水生动物。未组装的元基因组序列和PCR扩增的16S rRNA基因文库显示,酸性,硫化物位点由水生氢杆菌(Aquificaceae)种群控制,而含有中性硫化物的中性pH(6.5-7.8)位点则由硫氢加氢菌属(sulfurihydrogenibium spp)占主导地位。 (氢温热科)。热crinis(Aquificaceae)种群主要发现在环境中性位点,具有无法检测到的硫化物,并且在pH 8的一个硫化系统中的发现程度较小。对包含16S rRNA基因以及保守的蛋白质编码基因的组装序列进行系统进化分析表明,这些群落的组成和功能因地球化学条件而异。每个Aquificales血统都包含通过反向TCA循环进行CO2固定的基因,但是只有硫氢化氢菌群使用ATP柠檬酸裂解酶(Acl)进行柠檬酸裂解。水族科种群使用由两种单独的酶,柠檬酸-CoA合成酶(Ccs)和柠檬酸-CoA裂解酶(Ccl)催化的替代途径。尽管归因于参与氧还原的完全不同类型的血红素铜氧化酶(亚基I),但所有三个Aquificales血统都包含有氧呼吸的证据。 Aquificales种群的分布以及参与能量产生和电子传输的功能基因之间的差异与以下假设相符:地球化学参数(例如pH,硫化物,H2,O2)已导致Aquificales成员之间的生态位专业化。

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