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Role of bacteriocins in mediating interactions of bacterial isolates taken from cystic fibrosis patients

机译:伯胞苷在患有囊性纤维化患者中培养的细菌分离株的相互作用中的作用

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Pseudomonas aeruginosa (Pa) and Burkholderia cepacia complex (Bcc) lung infections are responsible for much of the mortality in cystic fibrosis (CF). However, little is known about the ecological interactions between these two, often co-infecting, species. This study provides what is believed to be the first report of the intra- and interspecies bacteriocin-like inhibition potential of Pa and Bcc strains recovered from CF patients. A total of 66 strains were screened, and shown to possess bacteriocin-like inhibitory activity (97?% of Pa strains and 68?% of Bcc strains showed inhibitory activity), much of which acted across species boundaries. Further phenotypic and molecular-based assays revealed that the source of this inhibition differs for the two species. In Pa, much of the inhibitory activity is due to the well-known S and RF pyocins. In contrast, Bcc inhibition is due to unknown mechanisms, although RF-like toxins were implicated in some strains. These data suggest that bacteriocin-based inhibition may play a role in governing Pa and Bcc interactions in the CF lung and may, therefore, offer a novel approach to mediating these often fatal infections.
机译:假单胞菌铜绿假单胞菌(PA)和Burkhowderia Cepacia综合体(BCC)肺部感染是囊性纤维化(CF)的大部分死亡率。然而,对于这两种,通常共同感染物种的生态相互作用很少。本研究提供了由CF患者回收的PA和BCC菌株的含有和间隔的抑制潜力的第一报告的据信。筛选总共66个菌株,并显示出具有含有菌状物的抑制活性(97μla株的PA菌株和68μm的BCC菌株显示出抑制活性),其中许多含量跨越物种边界。进一步的表型和基于分子的测定揭示了这种抑制的来源对于两种物种而异。在PA中,大部分抑制活性是由于众所周知的S和RF豆素。相比之下,BCC抑制是由于未知机制,尽管在一些菌株中涉及rf样毒素。这些数据表明,基于细菌素的抑制可能在CF肺的PA和BCC相互作用中发挥作用,因此可以提供一种介导这些经常感染的新方法。

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