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首页> 外文期刊>Environmental microbiology >Role of the metalloprotease Vvp and the virulence plasmid pR99 of Vibrio vulnificus serovar E in surface colonization and fish virulence
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Role of the metalloprotease Vvp and the virulence plasmid pR99 of Vibrio vulnificus serovar E in surface colonization and fish virulence

机译:金属蛋白酶Vvp和毒力弧菌血清型E的毒力质粒pR99在表面定殖和鱼类毒力中的作用

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摘要

The virulence for eels of Vibrio vulnificus biotype 2 serovar E (VSE) is conferred by a plasmid that codifies ability to survive in eel serum and cause septicaemia. To find out whether the plasmid and the selected chromosomal gene vvp plays a role in the initial steps of infection, the VSE strain CECT4999, the cured strain CT218 and the Vvp-deficient mutant CT201 (obtained in this work by allelic exchange) were used in colonization and virulence experiments. The eel avirulent biotype 1 (BT1) strain YJ016, whose genome has been sequenced, was used for comparative purposes. The global results demonstrate that the plasmid does not play a significant role in surface colonization because (i) CECT4999 and CT218 were equally chemoattracted towards and adherent to eel mucus and gills, and (ii) CT218 persisted in gills from bath-infected eels 2 weeks post infection. In contrast, mutation in vvp gene reduced significantly chemoattraction and attachment to eel mucus and gills, as well as virulence degree by immersion challenge. Co-infection experiments by bath with CECT4999 and CT201 confirmed that Vvp was involved in eel colonization and persistence in gills, because CECT4999 was recovered at higher numbers compared with CT201 from both internal organs of moribund fish (ratio 4:1) and gills from survivors (ratio 50:1). Interestingly, YJ016 also showed chemoattraction and attachment to mucus, and complementation of CT201 with BT1-vvp gene restored both activities together with virulence degree by immersion challenge. Additional experiments with algae mucus and purified mucin gave similar results. In conclusion, the protease Vvp of V. vulnificus seems to play an essential role in colonization of mucosal surfaces present in aquatic environments. Among the V. vulnificus strains colonizing fish mucus, only those harbouring the plasmid could survive in blood and cause septicaemia.
机译:质粒赋予了鳗弧菌生物型2型血清型E(VSE)鳗鱼的毒力,该质粒编码在鳗鱼血清中存活并引起败血病的能力。为了确定质粒和所选的染色体基因vvp是否在感染的初始步骤中起作用,使用了VSE株CECT4999,治愈株CT218和Vvp缺陷型突变体CT201(通过等位基因交换在这项工作中获得)。定殖和毒力实验。将鳗鱼无毒生物型1(BT1)菌株YJ016(其基因组已测序)用于比较目的。整体结果表明,该质粒在表面定殖中不发挥重要作用,因为(i)CECT4999和CT218被化学趋向并附着于鳗鱼粘液和g,并且(ii)CT218在浸浴感染鳗鱼的s中持续存在2周感染后。相反,vvp基因突变显着降低了化学引诱作用和对鳗鱼粘液和g的附着,并通过浸没攻击降低了毒性。与CECT4999和CT201一起进行的浴液共感染实验证实,Vvp参与了e的定殖和持久性,因为与垂死的鱼类(比例为4:1)和g鱼的两个内脏相比,与CT201相比,CECT4999的回收率更高。 (比例50:1)。有趣的是,YJ016还表现出趋化性和对粘液的附着,并且通过浸没攻击,用BT1-vvp基因补充CT201可以恢复这两种活性以及毒性程度。使用藻类粘液和纯化的粘蛋白进行的其他实验也得出了相似的结果。总之,V。vulnificus的蛋白酶Vvp在水生环境中存在的粘膜表面定殖中似乎起着至关重要的作用。在定植于鱼粘液中的创伤弧菌菌株中,只有那些携带该质粒的菌株才能在血液中存活并引起败血病。

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