首页> 美国卫生研究院文献>other >Type 3 Fimbriae Encoded on Plasmids Are Expressed from a Unique Promoter without Affecting Host Motility Facilitating an Exceptional Phenotype That Enhances Conjugal Plasmid Transfer
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Type 3 Fimbriae Encoded on Plasmids Are Expressed from a Unique Promoter without Affecting Host Motility Facilitating an Exceptional Phenotype That Enhances Conjugal Plasmid Transfer

机译:从唯一的启动子表达编码在质粒上的3型菌毛而不影响宿主运动促进增强结合质粒转移的异常表型。

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摘要

Horizontal gene transfer (HGT), the transmission of genetic material to a recipient that is not the progeny of the donor, is fundamental in bacterial evolution. HGT is often mediated by mobile genetic elements such as conjugative plasmids, which may be in conflict with the chromosomal elements of the genome because they are independent replicons that may petition their own evolutionary strategy. Here we study differences between type 3 fimbriae encoded on wild type plasmids and in chromosomes. Using known and newly characterized plasmids we show that the expression of type 3 fimbriae encoded on plasmids is systematically different, as MrkH, a c-di-GMP dependent transcriptional activator is not needed for strong expression of the fimbriae. MrkH is required for expression of type 3 fimbriae of the Klebsiella pneumoniae chromosome, wherefrom the fimbriae operon (mrkABCDF) of plasmids is believed to have originated. We find that mrkABCDFs of plasmids are highly expressed via a unique promoter that differs from the original Klebsiella promoter resulting in fundamental behavioral consequences. Plasmid associated mrkABCDFs did not influence the swimming behavior of the host, that hereby acquired an exceptional phenotype being able to both actively swim (planktonic behavior) and express biofilm associated fimbriae (sessile behavior). We show that this exceptional phenotype enhances the conjugal transfer of the plasmid.
机译:水平基因转移(HGT)是遗传物质向受体的传递,而不是供体的后代,是细菌进化的基础。 HGT通常由诸如连接质粒的移动遗传元件介导,它们可能与基因组的染色体元件冲突,因为它们是独立的复制子,可以顺应其自身的进化策略。在这里,我们研究了野生型质粒和染色体上编码的3型菌毛之间的差异。使用已知的和新近表征的质粒,我们显示了质粒上编码的3型菌毛的表达在系统上是不同的,因为MrkH(依赖c-di-GMP的转录激活因子)对于菌毛的强表达是不需要的。表达klebsiella pneumoniae染色体的3型菌毛需要MrkH,据信质粒的菌毛操纵子(mrkABCDF)源于此。我们发现质粒的mrkABCDFs通过独特的启动子高度表达,该启动子不同于原始的克雷伯菌启动子,从而导致基本的行为后果。质粒相关的mrkABCDFs不影响宿主的游泳行为,从而获得了一种既能主动游泳(浮游行为)又能表达生物膜相关菌毛(无柄行为)的特殊表型。我们表明,这种特殊的表型增强了质粒的结合转移。

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