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甲基环烷烃为 Porticoccaceae 科(Ca. Reddybacter 属新种)中的一个新属提供燃料。

Methylated cycloalkanes fuel a novel genus in the Porticoccaceae family (Ca. Reddybacter gen. nov).

机构信息

Marine Science Institute, University of California-Santa Barbara, Santa Barbara, California, USA.

Interdepartmental Graduate Program in Marine Science, University of California-Santa Barbara, Santa Barbara, California, USA.

出版信息

Environ Microbiol. 2023 Dec;25(12):2958-2971. doi: 10.1111/1462-2920.16474. Epub 2023 Aug 20.

Abstract

Cycloalkanes are abundant and toxic compounds in subsurface petroleum reservoirs and their fate is important to ecosystems impacted by natural oil seeps and spills. This study focuses on the microbial metabolism of methylcyclohexane (MCH) and methylcyclopentane (MCP) in the deep Gulf of Mexico. MCH and MCP are often abundant cycloalkanes observed in petroleum and will dissolve into the water column when introduced at the seafloor via a spill or natural seep. We conducted incubations with deep Gulf of Mexico (GOM) seawater amended with MCH and MCP at four stations. Within incubations with active respiration of MCH and MCP, we found that a novel genus of bacteria belonging to the Porticoccaceae family (Candidatus Reddybacter) dominated the microbial community. Using metagenome-assembled genomes, we reconstructed the central metabolism of Candidatus Reddybacter, identifying a novel clade of the particulate hydrocarbon monooxygenase (pmo) that may play a central role in MCH and MCP metabolism. Through comparative analysis of 174 genomes, we parsed the taxonomy of the Porticoccaceae family and found evidence suggesting the acquisition of pmo and other genes related to the degradation of cyclic and branched hydrophobic compounds were likely key events in the ecology and evolution of this group of organisms.

摘要

环烷烃是地下石油储层中丰富且有毒的化合物,它们的命运对受自然石油渗漏和溢油影响的生态系统至关重要。本研究关注的是微生物对深墨西哥湾中甲基环己烷(MCH)和甲基环戊烷(MCP)的代谢作用。MCH 和 MCP 是石油中常见的大量环烷烃,当通过溢油或自然渗漏从海底引入时,会溶解在水柱中。我们在四个站位用添加了 MCH 和 MCP 的深墨西哥湾(GOM)海水进行了培养实验。在有 MCH 和 MCP 活跃呼吸的培养实验中,我们发现属于 Porticoccaceae 科的一个新细菌属(Candidatus Reddybacter)主导了微生物群落。通过宏基因组组装基因组,我们重建了 Candidatus Reddybacter 的中心代谢途径,鉴定了一个新型的颗粒状烃单加氧酶(pmo)分支,它可能在 MCH 和 MCP 代谢中起核心作用。通过对 174 个基因组的比较分析,我们解析了 Porticoccaceae 科的分类,发现获得 pmo 和其他与环状和支链疏水性化合物降解相关的基因的证据,这可能是该类生物的生态和进化中的关键事件。

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