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遗传和生理洞察非蓝藻海洋固氮生物的固氮活性。

Genetic and physiological insights into the diazotrophic activity of a non-cyanobacterial marine diazotroph.

机构信息

Nantes Université, CNRS, US2B, UMR6286, Nantes, France.

Laboratoire Chimie et Biochimie de Molécules Bioactives, Université de Strasbourg/CNRS, UMR7177, Strasbourg, France.

出版信息

Environ Microbiol. 2022 Dec;24(12):6510-6523. doi: 10.1111/1462-2920.16261. Epub 2022 Nov 8.

Abstract

Nitrogen (N ) fixation, or diazotrophy, supports a large part of primary production in oceans. Culture-independent approaches highlighted the presence in abundance of marine non-cyanobacterial diazotrophs (NCD), but their ecophysiology remains elusive, mostly because of the low number of isolated NCD and because of the lack of available genetic tools for these isolates. Here, a dual genetic and functional approach allowed unveiling the ecophysiology of a marine NCD affiliated to the species Vibrio diazotrophicus. Physiological characterization of the first marine NCD mutant obtained so far was performed using a soft-gellan assay, demonstrating that a ΔnifH mutant is not able to grow in nitrogen-free media. Furthermore, we demonstrated that V. diazotrophicus produces a thick biofilm under diazotrophic conditions, suggesting biofilm production as an adaptive response of this NCD to cope with the inhibition of nitrogen fixation by molecular oxygen. Finally, the genomic signature of V. diazotrophicus is essentially absent from metagenomic data of Tara Ocean expeditions, despite having been isolated from various marine environments. We think that the genetically tractable V. diazotrophicus strain used in this study may serve as an ideal model to study the ecophysiology of these overlooked procaryotic group.

摘要

氮(N)固定,或固氮作用,支持海洋中大部分初级生产力。非依赖培养的方法强调了海洋中非蓝细菌固氮生物(NCD)的大量存在,但它们的生态生理学仍然难以捉摸,主要是因为分离出的 NCD 数量较少,并且缺乏这些分离物可用的遗传工具。在这里,一种双重遗传和功能方法揭示了与物种 Vibrio diazotrophicus 相关的海洋 NCD 的生态生理学。使用软琼脂测定法对迄今为止获得的第一种海洋 NCD 突变体进行了生理特性表征,证明ΔnifH 突变体无法在无氮培养基中生长。此外,我们证明了在固氮条件下,V. diazotrophicus 会产生厚厚的生物膜,这表明生物膜的产生是这种 NCD 应对分子氧抑制固氮作用的一种适应反应。最后,尽管从各种海洋环境中分离出了 V. diazotrophicus,但它的基因组特征在 Tara 海洋考察的宏基因组数据中基本不存在。我们认为,在这项研究中使用的遗传上可操作的 V. diazotrophicus 菌株可以作为研究这些被忽视的原核生物组的生态生理学的理想模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/194d/10099842/32aade601b4a/EMI-24-6510-g001.jpg

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