Tu Jian, Huang Boyan, Zhang Yu, Zhang Yuxi, Xue Ting, Li Shaocan, Qi Kezong
Pol J Vet Sci. 2016;19(1):31-40. doi: 10.1515/pjvs-2016-0005.
Avian pathogenic Escherichia coli (APEC) infections are a very important problem in the poultry industry. PhoP-PhoQ is a two-component system that regulates virulence genes in APEC. In this study, we constructed strains that lacked the PhoP or PhoQ genes to assess regulation of APEC pathogenicity by the PhoP-PhoQ two-component system. The PhoP mutant strain AE18, PhoQ mutant strain AE19, and PhoP/PhoQ mutant strain AE20 were constructed by the Red homologous recombination method. Swim plates were used to evaluate the motility of the APEC strains, viable bacteria counting was used to assess adhesion and invasion of chick embryo fibroblasts, and Real-Time PCR was used to measure mRNA expression of virulence genes. We first confirmed that AE18, AE19, and AE20 were successfully constructed from the wild-type AE17 strain. AE18, AE19, and AE20 showed significant decreases in motility of 70.97%, 83.87%, and 37.1%, respectively, in comparison with AE17. Moreover, in comparison with AE17, AE18, AE19, and AE20 showed significant decreases of 63.11%, 65.42%, and 30.26%, respectively, in CEF cell adhesion, and significant decreases of 59.83%, 57.82%, and 37.90%, respectively, in CEF cell invasion. In comparison with AE17, transcript levels of sodA, polA, and iss were significantly decreased in AE18, while transcript levels of fimC and iss were significantly decreased in AE19. Our results demonstrate that deletion of PhoP or PhoQ inhibits invasion and adhesion of APEC to CEF cells and significantly reduces APEC virulence by regulating transcription of virulence genes.
禽致病性大肠杆菌(APEC)感染是家禽业中一个非常重要的问题。PhoP-PhoQ是一种双组分系统,可调节APEC中的毒力基因。在本研究中,我们构建了缺失PhoP或PhoQ基因的菌株,以评估PhoP-PhoQ双组分系统对APEC致病性的调控。通过Red同源重组方法构建了PhoP突变株AE18、PhoQ突变株AE19和PhoP/PhoQ突变株AE20。使用游泳平板评估APEC菌株的运动性,使用活菌计数评估鸡胚成纤维细胞的粘附和侵袭,使用实时PCR测量毒力基因的mRNA表达。我们首先证实AE18、AE19和AE20是由野生型AE17菌株成功构建的。与AE17相比,AE18、AE19和AE20的运动性分别显著降低了70.97%、83.87%和37.1%。此外,与AE17相比,AE18、AE19和AE20在CEF细胞粘附中分别显著降低了63.11%、65.42%和30.26%,在CEF细胞侵袭中分别显著降低了59.83%