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群体感应调控海洋氨氧化古菌的代谢活动。

Metabolic activities of marine ammonia-oxidizing archaea orchestrated by quorum sensing.

作者信息

Pereira Olivier, Qin Wei, Galand Pierre E, Debroas Didier, Lami Raphael, Hochart Corentin, Zhou Yangkai, Zhou Jin, Zhang Chuanlun

机构信息

Shenzhen Key Laboratory of Marine Geo-Omics of Archaea, Department of Science and Engineering Southern University of Science and Technology Shenzhen China.

Institut WUT-AMU Wuhan University of Technology and Aix-Marseille Université Wuhan China.

出版信息

mLife. 2024 Sep 30;3(3):417-429. doi: 10.1002/mlf2.12144. eCollection 2024 Sep.

Abstract

Ammonia-oxidizing archaea (AOA) play crucial roles in marine carbon and nitrogen cycles by fixing inorganic carbon and performing the initial step of nitrification. Evaluation of carbon and nitrogen metabolism popularly relies on functional genes such as and . Increasing studies suggest that quorum sensing (QS) mainly studied in biofilms for bacteria may serve as a universal communication and regulatory mechanism among prokaryotes; however, this has yet to be demonstrated in marine planktonic archaea. To bridge this knowledge gap, we employed a combination of metabolic activity markers (, , and ) to elucidate the regulation of AOA-mediated nitrogen, carbon processes, and their interactions with the surrounding heterotrophic population. Through co-transcription investigations linking metabolic markers to potential key QS genes, we discovered that QS molecules could regulate AOA's carbon, nitrogen, and lipid metabolisms under different conditions. Interestingly, specific AOA ecotypes showed a preference for employing distinct QS systems and a distinct QS circuit involving a typical population. Overall, our data demonstrate that QS orchestrates nitrogen and carbon metabolism, including the exchange of organic metabolites between AOA and surrounding heterotrophic bacteria, which has been previously overlooked in marine AOA research.

摘要

氨氧化古菌(AOA)通过固定无机碳和进行硝化作用的第一步,在海洋碳和氮循环中发挥着关键作用。对碳和氮代谢的评估通常依赖于诸如 和 等功能基因。越来越多的研究表明,主要在细菌生物膜中研究的群体感应(QS)可能是原核生物之间一种普遍的通讯和调节机制;然而,这一点尚未在海洋浮游古菌中得到证实。为了填补这一知识空白,我们采用了代谢活性标记物( 、 和 )的组合,以阐明AOA介导的氮、碳过程的调节及其与周围异养种群的相互作用。通过将代谢标记物与潜在的关键QS基因联系起来的共转录研究,我们发现QS分子可以在不同条件下调节AOA的碳、氮和脂质代谢。有趣的是,特定的AOA生态型表现出对采用不同QS系统和涉及典型种群的不同QS回路的偏好。总体而言,我们的数据表明,QS协调氮和碳代谢,包括AOA与周围异养细菌之间有机代谢物的交换,这在海洋AOA研究中以前被忽视了。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1118/11442133/38d94721856c/MLF2-3-417-g004.jpg

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