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The Minor Flagellin of Campylobacter jejuni (FlaB) Confers Defensive Properties against Bacteriophage Infection

机译:空肠弯曲菌(FlaB)的较小鞭毛蛋白具有抗噬菌体感染的防御特性。

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摘要

A screen of bacteriophages infecting a panel of Campylobacter jejuni PT14 gene knock-out mutants identified a role for the minor flagellin encoded by the flaB gene, in the defense of the host against CP8unalikevirus bacteriophage CP_F1 infection. Inactivation of the flaB gene resulted in an increase in the susceptibility of PT14 cultures to infection by CP_F1 and an increase in bacteriophage yields. Infection of wild type PT14 with CP_F1 produces turbid plaques in bacterial lawns, from which 78% of the resistant isolates recovered exhibit either attenuation or complete loss of motility. CP_F1 produces clear plaques on the flaB mutant with no regrowth in the lysis zones. Complementation of the mutant restored overgrowth and the development of resistance at the expense of motility. Further analyses revealed an increase in bacteriophage adsorption constant of nearly 2-fold and burst-size 3-fold, relative to the wild type. Motility analysis showed no major reduction in swarming motility in the flaB mutant. Thus, we propose a new role for FlaB in the defense of campylobacters against bacteriophage infection.
机译:感染空肠弯曲杆菌PT14基因敲除突变体的噬菌体筛选确定了flaB基因编码的次鞭毛蛋白在宿主对抗CP8似核病毒噬菌体CP_F1感染的防御中的作用。 flaB基因的失活导致PT14培养物对CP_F1感染的敏感性增加,噬菌体产量增加。用CP_F1感染野生型PT14会在细菌草坪上产生浑浊的菌斑,从中回收的78%的抗性分离株会减弱或完全丧失活力。 CP_F1在flaB突变体上产生清晰的噬菌斑,且在裂解区无再生长。突变体的互补恢复了过度生长和抗性的发展,但以运动为代价。进一步的分析表明,相对于野生型,噬菌体的吸附常数增加了近2倍,破裂大小增加了3倍。动力分析表明,flaB突变体的群体运动没有显着降低。因此,我们提出FlaB在弯曲杆菌抵抗噬菌体感染中的新作用。

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