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在海洋中由 进行的二氨基庚二酸代谢。

Diaminopimelic Acid Metabolism by in the Ocean.

机构信息

State Key Laboratory of Microbial Technology, and Marine Biotechnology Research Center, Shandong Universitygrid.27255.37, Qingdao, China.

College of Marine Life Sciences, and Frontiers Science Center for Deep Ocean Multispheres and Earth System, Ocean University of Chinagrid.4422.0, Qingdao, China.

出版信息

Microbiol Spectr. 2022 Oct 26;10(5):e0069122. doi: 10.1128/spectrum.00691-22. Epub 2022 Aug 30.

Abstract

Diaminopimelic acid (DAP) is a unique component of the cell wall of Gram-negative bacteria. It is also an important component of organic matter and is widely utilized by microbes in the world's oceans. However, neither DAP concentrations nor marine DAP-utilizing microbes have been investigated. Here, DAP concentrations in seawater were measured and the diversity of marine DAP-utilizing bacteria and the mechanisms for their DAP metabolism were investigated. Free DAP concentrations in seawater, from surface to a 5,000 m depth, were found to be between 0.61 μM and 0.96 μM in the western Pacific Ocean. DAP-utilizing bacteria from 20 families in 4 phyla were recovered from the western Pacific seawater and 14 strains were further isolated, in which bacteria were dominant. Based on genomic and transcriptomic analyses combined with gene deletion and activity detection, DAP decarboxylase (LysA), which catalyzes the decarboxylation of DAP to form lysine, was found to be a key and specific enzyme involved in DAP metabolism in the isolated strains. Interrogation of the Oceans database found that most LysA-like sequences (92%) are from , which are widely distributed in multiple habitats. This study provides an insight into DAP metabolism by marine bacteria in the ocean and contributes to our understanding of the mineralization and recycling of DAP by marine bacteria. DAP is a unique component of peptidoglycan in Gram-negative bacterial cell walls. Due to the large number of marine Gram-negative bacteria, DAP is an important component of marine organic matter. However, it remains unclear how DAP is metabolized by marine microbes. This study investigated marine DAP-utilizing bacteria by cultivation and bioinformational analysis and examined the mechanism of DAP metabolism used by marine bacteria. The results demonstrate that bacteria are likely to be an important DAP-utilizing group in the ocean and that DAP decarboxylase is a key enzyme involved in DAP metabolism. This study also sheds light on the mineralization and recycling of DAP driven by bacteria.

摘要

二氨基庚二酸(DAP)是革兰氏阴性细菌细胞壁的独特成分。它也是有机质的重要组成部分,被世界海洋中的微生物广泛利用。然而,目前尚未对 DAP 浓度或海洋 DAP 利用微生物进行研究。本研究测定了海水中的 DAP 浓度,研究了海洋 DAP 利用细菌的多样性及其 DAP 代谢机制。在西太平洋,从海面到 5000 米深处的海水中,游离 DAP 浓度在 0.61 μM 至 0.96 μM 之间。从西太平洋海水中回收了来自 4 个门 20 个科的 DAP 利用细菌,并进一步分离出 14 株细菌,其中 细菌占优势。通过基因组和转录组分析结合基因缺失和 活性检测,发现 DAP 脱羧酶(LysA)是一种关键的、特异性的酶,可催化 DAP 脱羧形成赖氨酸,参与分离 菌株中的 DAP 代谢。对 Oceans 数据库的查询发现,大多数 LysA 样序列(92%)来自 ,它们广泛分布于多种生境中。本研究深入了解了海洋细菌中 DAP 的代谢,有助于我们理解海洋细菌对 DAP 的矿化和再循环。 DAP 是革兰氏阴性细菌细胞壁肽聚糖的独特成分。由于海洋革兰氏阴性细菌数量众多,DAP 是海洋有机质的重要组成部分。然而,海洋微生物如何代谢 DAP 尚不清楚。本研究通过培养和生物信息学分析研究了海洋 DAP 利用细菌,并研究了海洋细菌 DAP 代谢的机制。结果表明, 细菌可能是海洋中重要的 DAP 利用群体,DAP 脱羧酶是 DAP 代谢中的关键酶。本研究还揭示了细菌驱动的 DAP 矿化和再循环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6bf/9602339/3f5ba9dd7e3e/spectrum.00691-22-f001.jpg

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