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新发现的古菌 Asgard 可能通过烷基/苯甲酰琥珀酸合酶和苯甲酰辅酶 A 途径降解烷烃和芳烃。

Newly discovered Asgard archaea Hermodarchaeota potentially degrade alkanes and aromatics via alkyl/benzyl-succinate synthase and benzoyl-CoA pathway.

机构信息

State Key Laboratory of Estuarine and Coastal Research, East China Normal University, Shanghai, 200241, China.

School of Ocean and Meteorology, Guangdong Ocean University, Zhanjiang, 524088, China.

出版信息

ISME J. 2021 Jun;15(6):1826-1843. doi: 10.1038/s41396-020-00890-x. Epub 2021 Jan 15.

Abstract

Asgard archaea are widely distributed in anaerobic environments. Previous studies revealed the potential capability of Asgard archaea to utilize various organic substrates including proteins, carbohydrates, fatty acids, amino acids and hydrocarbons, suggesting that Asgard archaea play an important role in sediment carbon cycling. Here, we describe a previously unrecognized archaeal phylum, Hermodarchaeota, affiliated with the Asgard superphylum. The genomes of these archaea were recovered from metagenomes generated from mangrove sediments, and were found to encode alkyl/benzyl-succinate synthases and their activating enzymes that are similar to those identified in alkane-degrading sulfate-reducing bacteria. Hermodarchaeota also encode enzymes potentially involved in alkyl-coenzyme A and benzoyl-coenzyme A oxidation, the Wood-Ljungdahl pathway and nitrate reduction. These results indicate that members of this phylum have the potential to strictly anaerobically degrade alkanes and aromatic compounds, coupling the reduction of nitrate. By screening Sequence Read Archive, additional genes encoding 16S rRNA and alkyl/benzyl-succinate synthases analogous to those in Hermodarchaeota were identified in metagenomic datasets from a wide range of marine and freshwater sediments. These findings suggest that Asgard archaea capable of degrading alkanes and aromatics via formation of alkyl/benzyl-substituted succinates are ubiquitous in sediments.

摘要

古菌 Asgard 在厌氧环境中广泛分布。先前的研究揭示了 Asgard 古菌利用各种有机底物的潜在能力,包括蛋白质、碳水化合物、脂肪酸、氨基酸和烃类,这表明 Asgard 古菌在沉积物碳循环中发挥着重要作用。在这里,我们描述了一个以前未被识别的古菌门,Hermodarchaeota,它与 Asgard 超门有关。这些古菌的基因组是从红树林沉积物的宏基因组中回收的,并且被发现编码烷基/苄基琥珀酸合酶及其激活酶,这些酶与在烷烃降解硫酸盐还原菌中鉴定的酶相似。Hermodarchaeota 还编码可能参与烷基辅酶 A 和苯甲酰辅酶 A 氧化、Wood-Ljungdahl 途径和硝酸盐还原的酶。这些结果表明,该门的成员有可能严格厌氧地降解烷烃和芳香族化合物,并与硝酸盐的还原偶联。通过筛选序列读取档案,在来自广泛的海洋和淡水沉积物的宏基因组数据集,鉴定到了额外的编码 16S rRNA 和类似于 Hermodarchaeota 的烷基/苄基琥珀酸合酶的基因。这些发现表明,能够通过形成烷基/苄基取代琥珀酸来降解烷烃和芳烃的 Asgard 古菌在沉积物中普遍存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d8e/8163825/0f6532b8953b/41396_2020_890_Fig1_HTML.jpg

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