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决定生活方式的染色体外复制子pAMV1及其对甲基营养型细菌氨基副球菌JCM 7685碳代谢的贡献。

Lifestyle-determining extrachromosomal replicon pAMV1 and its contribution to the carbon metabolism of the methylotrophic bacterium Paracoccus aminovorans JCM 7685.

作者信息

Czarnecki Jakub, Dziewit Lukasz, Puzyna Maria, Prochwicz Emilia, Tudek Agnieszka, Wibberg Daniel, Schlüter Andreas, Pühler Alfred, Bartosik Dariusz

机构信息

Department of Bacterial Genetics, Institute of Microbiology, Faculty of Biology, University of Warsaw, Miecznikowa 1, Warsaw 02-096, Poland.

Center for Biotechnology (CeBiTec), Senior Research Group: Genome Research of Industrial Microorganisms, Universitätsstrasse 27, Bielefeld University, 33615 Bielefeld, Germany.

出版信息

Environ Microbiol. 2017 Nov;19(11):4536-4550. doi: 10.1111/1462-2920.13901. Epub 2017 Oct 13.

Abstract

Plasmids play an important role in the adaptation of bacteria to changeable environmental conditions. As the main vectors of horizontal gene transfer, they can spread genetic information among bacteria, sometimes even across taxonomic boundaries. Some plasmids carry genes involved in the utilization of particular carbon compounds, which can provide a competitive advantage to their hosts in particular ecological niches. Analysis of the multireplicon genome of the soil bacterium P. aminovorans JCM 7685 revealed the presence of an extrachromosomal replicon pAMV1 (185 kb) with a unique structure and properties. This lifestyle-determining plasmid carries genes facilitating the metabolism of many different carbon compounds including sugars, short-chain organic acids and C1 compounds. Plasmid pAMV1 contains a large methylotrophy island (MEI) that is essential not only for the utilization of particular C1 compounds but also for the central methylotrophic metabolism required for the assimilation of C1 units (serine cycle). We demonstrate that the expression of the main serine cycle genes is induced in the presence of C1 compounds by the transcriptional regulator ScyR. The extrachromosomal localization of the MEI and the distribution of related genes in Paracoccus spp. indicate that it could have been acquired by HGT by an ancestor of P. aminovorans.

摘要

质粒在细菌适应多变的环境条件中发挥着重要作用。作为水平基因转移的主要载体,它们能够在细菌间传播遗传信息,有时甚至跨越分类学界限。一些质粒携带参与特定碳化合物利用的基因,这可为其宿主在特定生态位中提供竞争优势。对土壤细菌氨基营养型副球菌JCM 7685的多复制子基因组分析揭示了一种具有独特结构和性质的染色体外复制子pAMV1(185 kb)的存在。这种决定生活方式的质粒携带有助于多种不同碳化合物代谢的基因,包括糖类、短链有机酸和C1化合物。质粒pAMV1包含一个大型甲基营养岛(MEI),它不仅对于特定C1化合物的利用至关重要,而且对于C1单位同化所需的中心甲基营养代谢(丝氨酸循环)也必不可少。我们证明,在C1化合物存在的情况下,转录调节因子ScyR可诱导主要丝氨酸循环基因的表达。MEI的染色体外定位以及相关基因在副球菌属中的分布表明,它可能是氨基营养型副球菌的祖先通过水平基因转移获得的。

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