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提高减毒爱德华氏菌活疫苗对鲶鱼败血病的安全性和评估疗效。

Improving safety of a live attenuated Edwardsiella ictaluri vaccine against enteric septicemia of catfish and evaluation of efficacy.

机构信息

Department of Basic Sciences, College of Veterinary Medicine, Mississippi State University, Mississippi State, MS, USA.

Department of Basic Sciences, College of Veterinary Medicine, Mississippi State University, Mississippi State, MS, USA.

出版信息

Vet Microbiol. 2017 Oct;210:83-90. doi: 10.1016/j.vetmic.2017.09.004. Epub 2017 Sep 14.

Abstract

Edwardsiella ictaluri is a Gram-negative facultative intracellular pathogen causing enteric septicemia of channel catfish (ESC). Our recent work indicated that tricarboxylic acid cycle and one-carbon metabolism are critical pathways for E. ictaluri virulence. Although single and double gene deletions in these pathways resulted in safe and efficacious vaccines for use in catfish fingerlings, vaccine trials in catfish fry showed safety concerns. Therefore, we aimed to improve the safety of these mutants by constructing two triple mutant combinations. ESC-NDKL1 (ΔgcvPΔsdhCΔfrdA) was constructed by introducing an in-frame deletion of frdA in a gcvP-sdh mutant. ESC-NDKL2 (ΔgcvPΔsdhCΔmdh) was constructed in a similar manner. ESC-NDKL1 strain was a better vaccine candidate compared to ESC-NDKL2, providing better safety and efficacy in catfish fry and catfish fingerlings. Field trials in earthen ponds under three vaccination conditions showed that survival was significantly higher in catfish vaccinated with ESC-NDKL1 by immersion at the fry stage, oral vaccination in ponds, and fry immersion-pond oral combination (86.74%, 81.67%, and 95.22%, respectively) compared to sham-vaccinated (42.75%), and Aquavac-ESC fry immersion vaccinated (61.51%) catfish. Our findings indicate that ESC-NDKL1 is a good candidate for further development as a vaccine for ESC.

摘要

爱德华氏菌是一种革兰氏阴性兼性胞内病原体,可引起斑点叉尾鮰肠败血症(ESC)。我们最近的研究表明,三羧酸循环和一碳代谢是爱德华氏菌毒力的关键途径。尽管这些途径中的单基因和双基因缺失导致了用于鲶鱼苗的安全有效的疫苗,但在鲶鱼苗中的疫苗试验显示出安全性问题。因此,我们旨在通过构建两种三突变体组合来提高这些突变体的安全性。ESC-NDKL1(ΔgcvPΔsdhCΔfrdA)是通过在 gcvP-sdh 突变体中引入 frdA 的框内缺失构建的。ESC-NDKL2(ΔgcvPΔsdhCΔmdh)以类似的方式构建。与 ESC-NDKL2 相比,ESC-NDKL1 菌株是一种更好的疫苗候选株,在鲶鱼苗和鲶鱼仔鱼中提供更好的安全性和功效。在三种接种条件下的土池田间试验表明,与假接种(42.75%)和 Aquavac-ESC 鱼苗浸泡接种(61.51%)的鲶鱼相比,用 ESC-NDKL1 浸泡在鱼苗阶段、池塘口服接种和鱼苗浸泡-池塘口服联合接种的鲶鱼的存活率分别显著提高(86.74%、81.67%和 95.22%)。我们的研究结果表明,ESC-NDKL1 是作为 ESC 疫苗进一步开发的良好候选物。

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