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墨西哥湾聚胺转化浮游细菌的宏转录组学鉴定。

Metatranscriptomic identification of polyamine-transforming bacterioplankton in the Gulf of Mexico.

机构信息

Department of Biological Sciences, Kent State University, Kent, OH, USA.

Center for Advanced Laboratory Medicine, University of California, San Diego, CA, USA.

出版信息

Environ Microbiol Rep. 2020 Jun;12(3):258-266. doi: 10.1111/1758-2229.12841. Epub 2020 Apr 12.

Abstract

The importance of short-chained aliphatic polyamines (PAs) to bacterioplankton-mediated carbon and nitrogen cycles has been repeatedly proposed. However, bacterial taxa and genes involved in the transformations of different PA compounds and their potential spatial variations remain unclear. This study collected surface bacterioplankton from nearshore, offshore, and open ocean stations in the Gulf of Mexico and examined how metatranscriptomes responded to additions of three single PA model compounds (i.e. putrescine, spermidine, or spermine). Our data showed an overrepresentation of genes affiliated with γ-glutamylation and spermidine cleavage pathways in metatranscriptomes received PA amendments and the expression level of each pathway varied among different PA compounds and sampling locations. PA-transforming taxa were affiliated with Actinobacteria, Bacteroidetes, Cyanobacteria, Planctomycetes, and Proteobacteria and their relative importance was also compound and location specific. These findings suggest that PAs are transformed via multiple pathways and by a diversity of marine bacterioplankton in the Gulf of Mexico. The relative importance of different PA transforming pathways and composition of functional microbial communities may be regulated by nutrient status of local environments.

摘要

短链脂肪族多胺 (PAs) 对细菌浮游生物介导的碳氮循环的重要性已被多次提出。然而,涉及不同 PA 化合物转化的细菌分类群和基因及其潜在的空间变化仍不清楚。本研究从墨西哥湾近岸、近海和公海站收集了表面细菌浮游生物,并研究了宏转录组如何响应三种单 PA 模型化合物(即腐胺、亚精胺或精胺)的添加。我们的数据表明,在接受 PA 修正的宏转录组中,与 γ-谷氨酰化和亚精胺裂解途径相关的基因过表达,并且每个途径的表达水平在不同的 PA 化合物和采样地点之间有所不同。PA 转化类群与放线菌、拟杆菌门、蓝细菌、浮霉菌门和变形菌门有关,它们的相对重要性也与化合物和位置有关。这些发现表明,PA 通过多种途径和多种海洋细菌浮游生物在墨西哥湾转化。不同 PA 转化途径的相对重要性和功能微生物群落的组成可能受到局部环境营养状况的调节。

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