Guo Rongxian, Li Zhuoyang, Jiao Yang, Geng Shizhong, Pan Zhiming, Chen Xiang, Li Qiuchun, Jiao Xinan
a Jiangsu Key Laboratory of Zoonosis, Joint International Research Laboratory of Agriculture & Agri-Product Safety, Jiangsu Co-Innovation Center for Prevention and Control of Important Animal Infectious Diseases and Zoonoses , Yangzhou University , Yangzhou , People's Republic of China.
Avian Pathol. 2017 Oct;46(5):535-540. doi: 10.1080/03079457.2017.1324197. Epub 2017 May 26.
The pathogen Salmonella Pullorum is the causative agent of persistent systemic infection of poultry, leading to economic losses in developing countries due to morbidity, mortality and reduction in egg production. These infections may result in vertical transmission to eggs or progeny. Limited information is available regarding the mechanisms involved in the survival of Salmonella Pullorum in egg albumen and developing chicken embryos. Hence, we investigated the role of O-polysaccharide in the contamination of eggs and the colonization of chicken embryos. Compared with the wild-type strain, the isogenic waaL mutant exhibited an O-antigen-deficient rough phenotype, and increased sensitivity to egg albumen and chicken serum, as well as reduced adherence to DF-1 cells. Infection with Salmonella Pullorum lacking O-polysaccharide resulted in significantly reduced embryo lethality and bacterial colonization. These results suggest that O-polysaccharide is essential for Salmonella Pullorum colonization in eggs, both post-lay and developing embryos. The chicken embryo infection model could be used to characterize the interaction between Salmonella Pullorum and developing embryos, and it will also contribute to the development of more rational vaccines to protect laying hens and embryos.
鸡白痢沙门氏菌是家禽持续性全身感染的病原体,在发展中国家,由于发病率、死亡率以及产蛋量下降而导致经济损失。这些感染可能导致垂直传播至蛋或后代。关于鸡白痢沙门氏菌在蛋清和发育中的鸡胚中存活所涉及的机制,现有信息有限。因此,我们研究了O-多糖在蛋污染和鸡胚定殖中的作用。与野生型菌株相比,同基因waaL突变体表现出O抗原缺陷粗糙表型,对蛋清和鸡血清的敏感性增加,以及对DF-1细胞的粘附减少。缺乏O-多糖的鸡白痢沙门氏菌感染导致胚胎致死率和细菌定殖显著降低。这些结果表明,O-多糖对于鸡白痢沙门氏菌在产后蛋和发育中的胚胎中的定殖至关重要。鸡胚感染模型可用于表征鸡白痢沙门氏菌与发育中胚胎之间的相互作用,也将有助于开发更合理的疫苗以保护产蛋母鸡和胚胎。