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整合性接合元件介导的海洋假交替单胞菌中生物膜相关基因组岛的传播与丢失

Dissemination and loss of a biofilm-related genomic island in marine Pseudoalteromonas mediated by integrative and conjugative elements.

作者信息

Wang Pengxia, Zeng Zhenshun, Wang Weiquan, Wen Zhongling, Li Jie, Wang Xiaoxue

机构信息

Key Laboratory of Tropical Marine Bio-resources and Ecology, Guangdong Key Laboratory of Marine Materia Medica, the South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou 510301, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Environ Microbiol. 2017 Nov;19(11):4620-4637. doi: 10.1111/1462-2920.13925. Epub 2017 Nov 8.

Abstract

Acquisition of genomic islands (GIs) plays a central role in the diversification and adaptation of bacteria. Some GIs can be mobilized in trans by integrative and conjugative elements (ICEs) or conjugative plasmids if the GIs carry specific transfer-related sequences. However, the transfer mechanism of GIs lacking such elements remains largely unexplored. Here, we investigated the transmissibility of a GI found in a coral-associated marine bacterium. This GI does not carry genes with transfer functions, but it carries four genes required for robust biofilm formation. Notably, this GI is inserted in the integration site for SXT/R391 ICEs. We demonstrated that acquisition of an SXT/R391 ICE results in either a tandem GI/ICE arrangement or the complete displacement of the GI. The GI displacement by the ICE greatly reduces biofilm formation. In contrast, the tandem integration of the ICE with the GI in cis allows the GI to hijack the transfer machinery of the ICE to excise, transfer and re-integrate into a new host. Collectively, our findings reveal that the integration of an ICE into a GI integration site enables rapid genome dynamics and a new mechanism by which SXT/R391 ICEs can augment genome plasticity.

摘要

基因组岛(GIs)的获得在细菌的多样化和适应性过程中起着核心作用。如果基因组岛携带特定的转移相关序列,一些基因组岛可以通过整合性接合元件(ICEs)或接合质粒进行跨转移。然而,缺乏此类元件的基因组岛的转移机制在很大程度上仍未得到探索。在此,我们研究了在一种与珊瑚相关的海洋细菌中发现的一个基因组岛的可传播性。这个基因组岛不携带具有转移功能的基因,但它携带四个对强大生物膜形成所需的基因。值得注意的是,这个基因组岛插入在SXT/R391 ICEs的整合位点。我们证明,获得一个SXT/R391 ICE会导致基因组岛/ICE的串联排列或基因组岛的完全取代。ICE对基因组岛的取代极大地减少了生物膜的形成。相反,ICE与基因组岛在顺式方向上的串联整合使基因组岛能够劫持ICE的转移机制,从而切除、转移并重新整合到一个新宿主中。总的来说,我们的研究结果表明,ICE整合到基因组岛整合位点能够实现快速的基因组动态变化,并且揭示了SXT/R391 ICEs增强基因组可塑性的一种新机制。

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