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An invasive and low virulent Edwardsiella tarda esrB mutant promising as live attenuated vaccine in aquaculture

机译:一种侵入性和低毒性的爱德华氏菌爱德华氏菌突变体,有望在水产养殖中作为减毒活疫苗

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Edwardsiella tarda is a leading fish pathogen haunting worldwide aquaculture industry. In E. tarda, two-component system EsrA-EsrB positively regulates type III and VI secretion systems (T3SS and T6SS) and negatively regulates hemolysin EthA, which has been demonstrated to be essential for the invasion processes in fish. In order to develop a live attenuated vaccine (LAV) with high invasiveness to be practically and economically used as immersion-administered vaccine in aquaculture, here, we generated a random mutation library of esrB sequences by error-prone PCR and introduced them into the E. tarda esrB deletion mutant. The mutant YWZ47 with significantly increased hemolytic activity and low T3SS and T6SS secretion was screened. Phenotypes including extracellular protein profiles, invasion in macrophages, lethality toward fish, and infection kinetics were investigated in the wild-type strain EIB202 and the mutants Delta esrB, Delta T3SS, Delta T6SS, Delta T3SS/Delta T6SS, and YWZ47. Compared to the documented LAV strain Delta esrB, YWZ47 showed higher invasive capability and low in vivo virulence toward fish. Significantly higher relative percent survival (RPS) could be generated in turbot (Scophthalmus maximus) against the challenge of the wild-type EIB202 when inoculated through immersion route, and the RPS was comparable with that of Delta esrB through intraperitoneal (i.p.) injection inoculation. Two mutated points, K167M and H197L, were found by sequence analysis of EsrB(YWZ47) variant. These structural modifications underpin the variations in the regulatory functions of the mutant and wild-type EsrB. This study promoted understanding of virulence regulation by EsrB in E. tarda and presented a promising candidate of invasive attenuated vaccine used in aquaculture industries.
机译:泰氏爱德华氏菌是困扰世界水产养殖业的主要鱼类病原体。在tar。E. tarda中,两组分系统EsrA-EsrB正调节III型和VI型分泌系统(T3SS和T6SS),而负调节溶血素EthA,这已证明对鱼类的侵袭过程至关重要。为了开发具有高侵袭性的减毒活疫苗(LAV),以实用和经济地用作水产养殖中的浸没疫苗,在这里,我们通过易错PCR生成了esrB序列的随机突变文库,并将其引入到E tarda esrB缺失突变体。筛选出具有明显增加的溶血活性和低T3SS和T6SS分泌的突变体YWZ47。在野生型EIB202和突变体Delta esrB,Delta T3SS,Delta T6SS,Delta T3SS / Delta T6SS和YWZ47中研究了表型,包括细胞外蛋白质谱,巨噬细胞入侵,对鱼类的致死率和感染动力学。与记录的LAV株Delta esrB相比,YWZ47表现出更高的侵袭能力和对鱼类的体内低毒力。通过浸没途径接种时,面对野生型EIB202的攻击,大菱t(Scophthalmus maximus)可以产生更高的相对存活百分比(RPS),并且RPS与通过腹膜内(i.p.)注射接种的Delta esrB相当。通过对EsrB(YWZ47)变体进行序列分析,发现了两个突变点K167M和H197L。这些结构修饰支持突变体和野生型EsrB的调节功能的变化。这项研究促进了对EsrB在大肠杆菌中的毒力调节的了解,并提出了在水产养殖行业中使用的有毒减毒疫苗的有希望的候选者。

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