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在共存于一个除草剂降解细菌联合体中的两个近等基因亚群之间进行分解代谢任务分工:对种间联合体代谢模型的影响。

Catabolic task division between two near-isogenic subpopulations co-existing in a herbicide-degrading bacterial consortium: consequences for the interspecies consortium metabolic model.

机构信息

Division of Soil and Water Management, Department of Earth and Environmental Sciences, KU Leuven, Heverlee, Belgium.

Department of Microbial and Molecular Systems, Centre of Microbial and Plant Genetics, KU Leuven, Heverlee, Belgium.

出版信息

Environ Microbiol. 2018 Jan;20(1):85-96. doi: 10.1111/1462-2920.13994. Epub 2017 Dec 15.

Abstract

Variovorax sp. WDL1 mediates hydrolysis of the herbicide linuron into 3,4-dichloroaniline (DCA) and N,O-dimethylhydroxylamine in a tripartite bacterial consortium with Comamonas testosteroni WDL7 and Hyphomicrobium sulfonivorans WDL6. Although strain WDL1 contains the dcaQTA1A2B operon for DCA oxidation, this conversion is mainly performed by WDL7. Phenotypic diversification observed in WDL1 cultures and scrutiny of the WDL1 genome suggest that WDL1 cultures consist of two dedicated subpopulations, i.e., a linuron-hydrolysing subpopulation (Lin + DCA-) and a DCA-oxidizing subpopulation (Lin-DCA+). Whole genome analysis of strains representing the respective subpopulations revealed that they are identical, aside from the presence of hylA (in Lin + DCA- cells) and the dcaQTA1A2B gene cluster (in Lin-DCA+ cells), and that these catabolic gene modules replace each other at exactly the same locus on a 1380 kb extra-chromosomal element that shows plasmid gene functions including genes for transferability by conjugation. Both subpopulations proliferate in consortium biofilms fed with linuron, but Lin + DCA- cells compose the main WDL1 subpopulation. Our observations instigated revisiting the interactions within the consortium and suggest that the physical separation of two essential linuron catabolic gene clusters in WDL1 by mutually exclusive integration in the same mobile genetic element is key to the existence of WDL1 in a consortium mode.

摘要

变形杆菌属 WDL1 与睾酮单胞菌 WDL7 和磺化硫杆菌 WDL6 组成三联细菌共生体,可将除草剂敌草隆水解为 3,4-二氯苯胺 (DCA) 和 N,O-二甲基羟胺。尽管菌株 WDL1 含有用于 DCA 氧化的 dcaQTA1A2B 操纵子,但这种转化主要由 WDL7 完成。在 WDL1 培养物中观察到的表型多样化和对 WDL1 基因组的仔细研究表明,WDL1 培养物由两个专用亚群组成,即敌草隆水解亚群 (Lin + DCA-) 和 DCA 氧化亚群 (Lin-DCA+)。代表各自亚群的菌株的全基因组分析表明,除了存在 hylA(在 Lin + DCA-细胞中)和 dcaQTA1A2B 基因簇(在 Lin-DCA+细胞中)之外,它们是相同的,这些代谢基因模块在一个 1380kb 的额外染色体元件上相互替换,该元件显示质粒基因功能,包括通过接合可转移的基因。两个亚群都在含有敌草隆的共生体生物膜中增殖,但 Lin + DCA-细胞构成 WDL1 的主要亚群。我们的观察结果促使重新审视共生体中的相互作用,并表明 WDL1 中两个必需的敌草隆代谢基因簇通过在相同的可移动遗传元件中互斥整合而在物理上分离是 WDL1 以共生体模式存在的关键。

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