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澳大利亚苏拉特盆地缺氧煤层微生物组中降解芳香族化合物的类群。

Aromatic compound-degrading taxa in an anoxic coal seam microbiome from the Surat Basin, Australia.

机构信息

Energy Business Unit, Commonwealth Scientific and Industrial Research Organisation (CSIRO), North Ryde, NSW 2113, Australia.

Department of Earth and Environmental Sciences, Macquarie University, North Ryde, NSW 2109, Australia.

出版信息

FEMS Microbiol Ecol. 2021 Apr 13;97(5). doi: 10.1093/femsec/fiab053.

Abstract

Methane is an important energy resource internationally, and a large proportion of this methane is produced by microbial communities living in coal seams. Despite the value of this resource for human energy security, our understanding of the metabolic roles played by specific taxa during the biodegradation of coal to methane in situ is quite limited. In order to develop a greater understanding of microbial catabolism on coal, a community from a coal seam in the Surat Basin, Australia, was incubated on 10 different aromatic organic compounds: coronene, benzo[a]pyrene, pyrene, phenanthrene, naphthalene, ethylbenzene, phenol, benzoate, vanillate and syringate. Each of these aromatic compounds either occurs in coal or is a possible product of the coal biodegradation process. 16S rRNA sequencing revealed substantial changes to each community in response to each aromatic carbon substrate provided. Abundant taxa from these substrate-specific communities were identified and their probable catabolic roles proposed based on literature searches of related taxa. This study is the first to link specific coal seam taxa to aromatic substrates available in coal seam environments. Two conceptual models of the putative degradation pathways and key taxa responsible are proposed.

摘要

甲烷是国际上一种重要的能源资源,其中很大一部分甲烷是由生活在煤层中的微生物群落产生的。尽管这种资源对人类能源安全具有重要价值,但我们对特定分类群在原位煤生物降解转化为甲烷过程中所起的代谢作用的了解还相当有限。为了更深入地了解煤的微生物代谢作用,本研究对来自澳大利亚苏拉特盆地煤层的微生物群落进行了培养,实验中使用了 10 种不同的芳香族有机化合物:并五苯、苯并[a]芘、芘、菲、萘、乙苯、苯酚、苯甲酸、香草酸和丁香酸。这些芳香族化合物要么存在于煤中,要么是煤生物降解过程的可能产物。16S rRNA 测序结果表明,每个芳香碳底物的添加都引起了每个群落的显著变化。从这些底物特异性群落中鉴定出丰富的分类群,并根据相关分类群的文献搜索,提出了它们可能的代谢作用。本研究首次将特定的煤层分类群与煤层环境中可用的芳香族底物联系起来。提出了两个假定的降解途径和关键分类群的概念模型。

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