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Ecological distribution and potential roles of Woesearchaeota in anaerobic biogeochemical cycling unveiled by genomic analysis

机译:基因组分析揭通厌氧生物地球化学循环中WOESEARMAPAOTA的生态分布及潜在作用

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Woesearchaeota as a newly established member of the superphylum DPANN (Diapherotrites, Parvarchaeota, Aenigmarchaeota, Nanoarchaeota and Nanohaloarchaea) are surprisingly abundant and diverse in a wide variety of environments, including deep oil reservoir, sulfuric springs and anoxic aquifers, indicating a high diversity of their roles in global biogeochemical cycles. However, ecological functions of them remain elusive. To fill up this gap, we analyzed and compared the global distribution patterns of Woesearchaeota using the genomes available publicly. As a result, both ecological distribution patterns and metabolic predictions support a key role of woesearchaeotal lineages in cycling of carbon, nitrogen, and sulfur. Multivariate regression analysis reveals that Woesearchaeota might function in consortium with methanogens in the cycling of carbon in anaerobic environments, particularly in soils or sediments. Moreover, comparative genomic analysis and ecological distribution suggest the potential roles of Woesearchaeota in the processes of denitrification, nitrogen fixation, and dissimilatory nitrite reduction, especially in the wastewater treatment systems; and also uncovered the potential capability of sulfate reduction, sulfide oxidation and thiosulfate oxidation in sulfuric or sulfidic-rich environments. Our findings add more information into the ecological roles of archaea in the anoxic environment.
机译:Woesearchaeota作为新建的超级DPANN(Diaberotrites,Parvarcheaota,AenigmarchaeoTa,Nanoarchaeoota,NanoArchaeoTa和NanohaloAthaea)在各种环境中令人惊讶的丰富和多样化,包括深油储层,硫酸孢状物和缺氧含水层,表明其高度多样化在全球生物地球化学周期中的角色。然而,他们的生态功能仍然难以捉摸。为了填补这种差距,我们分析并与公开可用的基因组进行了使用基因组的全球分布模式。结果,生态分布模式和代谢预测都支持WOESearchaeoTal谱系在碳,氮和硫循环中的关键作用。多元回归分析表明,WoesearchaeoTa可能在厌氧环境中碳循环中的甲烷中的联盟中起作用,特别是在土壤或沉积物中。此外,比较基因组分析和生态分布表明WoeSearchaeoota在脱硝,氮固定和含氮石灰的过程中的潜在作用,特别是在废水处理系统中;并且还发现硫酸盐降低,硫化物氧化和硫代硫酸盐氧化在富含硫酸或硫化物的环境中的潜在能力。我们的调查结果在缺氧环境中添加了更多信息进入了Archaea的生态角色。

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