Type IV Secretion Systems

IV 型分泌系统
  • 文章类型: Journal Article
    质粒介导的水平基因转移(HGT)已被认为是使玫瑰细菌(红杆菌科)适应海洋栖息地生态位的主要机制之一。他们的质粒包含生态上至关重要的功能模块,大小可达40kb,例如,用于需氧缺氧光合作用,鞭毛的形成和抗生素二硫酸的生物合成。此外,广泛存在的玫瑰细胞四型分泌系统(T4SS)已被证明可以介导跨属障碍的共轭,在实验室里。在这里,我们发现萘并菌NS6T,一种在韩国分离的潮滩细菌,携带185kb的质粒,与shibaeDFL12T的接合性126kb质粒表现出长期同质性。两种复制子均由相同相容性基团(-2)的RepABC操纵子稳定维持,并且它们具有同源T4SS。密码子使用的主成分分析显示两个质粒之间有很大的相似性,虽然染色体非常不同,表明这两种细菌都不代表那些RepABC-2型质粒的原始宿主。这两个物种今天没有共同的栖息地,它们在系统发育上只有远亲。我们的发现证明了在红杆菌科中跨生物地理和系统发育障碍的共轭质粒转移的第一个明确证据,并记录了共轭HGT在海洋中的重要性。
    Plasmid mediated horizontal gene transfer (HGT) has been speculated to be one of the prime mechanisms for the adaptation of roseobacters (Rhodobacteraceae) to their ecological niches in the marine habitat. Their plasmids contain ecologically crucial functional modules of up to ∼40-kb in size, e.g., for aerobic anoxygenic photosynthesis, flagellar formation and the biosynthesis of the antibiotic tropodithietic acid. Furthermore, the widely present type four secretion system (T4SS) of roseobacters has been shown to mediate conjugation across genus barriers, albeit in the laboratory. Here we discovered that Confluentimicrobium naphthalenivorans NS6T, a tidal flat bacterium isolated in Korea, carries a 185-kb plasmid, which exhibits a long-range synteny with the conjugative 126-kb plasmid of Dinoroseobacter shibae DFL12T. Both replicons are stably maintained by RepABC operons of the same compatibility group (-2) and they harbor a homologous T4SS. Principal component analysis of the codon usage shows a large similarity between the two plasmids, while the chromosomes are very distinct, showing that neither of the two bacterial species represents the original host of those RepABC-2 type plasmids. The two species do not share a common habitat today and they are phylogenetically only distantly related. Our finding demonstrates the first clear-cut evidence for conjugational plasmid transfer across biogeographical and phylogenetic barriers in Rhodobacteraceae and documents the importance of conjugative HGT in the ocean.
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