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比较基因组学分析表明,Gemmobacter属成员之间存在甲基化胺利用特性差异。

Comparative genomics analyses indicate differential methylated amine utilization trait within members of the genus Gemmobacter.

作者信息

Kröber Eileen, Cunningham Mark R, Peixoto Julianna, Spurgin Lewis, Wischer Daniela, Kruger Ricardo, Kumaresan Deepak

机构信息

Department of Symbiosis, Max-Planck Institute for Marine Microbiology, Bremen, Germany.

School of Biological Sciences, Institute for Global Food Security, Queen's University Belfast, Belfast, UK.

出版信息

Environ Microbiol Rep. 2021 Apr;13(2):195-208. doi: 10.1111/1758-2229.12927. Epub 2021 Jan 23.

Abstract

Methylated amines are ubiquitous in the environment and play a role in regulating the earth's climate via a set of complex biological and chemical reactions. Microbial degradation of these compounds is thought to be a major sink. Recently we isolated a facultative methylotroph, Gemmobacter sp. LW-1, an isolate from the unique environment Movile Cave, Romania, which is capable of methylated amine utilization as a carbon source. Here, using a comparative genomics approach, we investigate how widespread methylated amine utilization is within members of the bacterial genus Gemmobacter. Seven genomes of different Gemmobacter species isolated from diverse environments, such as activated sludge, fresh water, sulphuric cave waters (Movile Cave) and the marine environment were available from the public repositories and used for the analysis. Our results indicate that methylamine utilization is a distinctive feature of selected members of the genus Gemmobacter, namely G. aquatilis, G. lutimaris, G. sp. HYN0069, G. caeni and G. sp. LW-1 have the genetic potential while others (G. megaterium and G. nectariphilus) have not.

摘要

甲基化胺在环境中普遍存在,并通过一系列复杂的生物和化学反应在调节地球气候方面发挥作用。这些化合物的微生物降解被认为是一个主要的汇。最近,我们分离出了一种兼性甲基营养菌,即Gemmobactersp. LW-1,它是从罗马尼亚独特的莫维勒洞穴环境中分离出来的,能够利用甲基化胺作为碳源。在这里,我们使用比较基因组学方法,研究甲基化胺利用在Gemmobacter细菌属成员中的广泛程度。从公共数据库中获取了从不同环境(如活性污泥、淡水、硫酸洞穴水(莫维勒洞穴)和海洋环境)中分离出的7个不同Gemmobacter物种的基因组,并用于分析。我们的结果表明,甲胺利用是Gemmobacter属选定成员的一个独特特征,即水生Gemmobactersp.、lutimaris Gemmobactersp.、HYN0069 Gemmobactersp.、caeni Gemmobactersp.和LW-1 Gemmobactersp.具有遗传潜力,而其他物种(巨大Gemmobactersp.和嗜花蜜Gemmobactersp.)则没有。

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