Phenotypic characteristics and immune response of Procypris merus following challenge with aquatic isolate of Klebsiella pneumoniae

Author:

Liao Wenyu12,Wei Dongdong2,Liu Mingzhu2,Huang Lin2,Li Bingzheng23,Wei Yunyi3,Han Shuyu4,Huang Shuaishuai12,Yu Qing2,Li Pengfei123ORCID

Affiliation:

1. College of Marine Sciences Beibu Gulf University Qinzhou P.R. China

2. Guangxi Key Laboratory of Aquatic Biotechnology and Modern Ecological Aquaculture, Guangxi Engineering Research Center for Fishery Major Diseases Control and Efficient Healthy Breeding Industrial Technology (GERCFT), Guangxi Academy of Marine Sciences, Guangxi Academy of Sciences Nanning P.R. China

3. College of Food Science and Quality Engineering Nanning University Nanning P.R. China

4. Guangxi Fisheries Technology Extension Station Nanning P.R. China

Abstract

AbstractCurrently, aquaculture is a relatively mature industry; however, disease problems are continuously threatening the industry and hindering its development to a certain extent. Klebsiella pneumoniae is one of the zoonotic bacteria widely present in different hosts and has caused some degree of harm to the aquaculture industry, posing a potential threat to the water environment and indirectly also affecting human food safety issues. In this study, K. pneumoniae was isolated from the aquaculture environment, named as ELD, and subjected to pathogenic and immunological related studies. The results of the study showed that the strain carries at least four virulence‐related genes, magA, wabG, ureA and uge, and has developed resistance to at least seven antibacterial drugs, such as amoxicillin, doxycycline, rifampicin, and so on. Moreover, the strain is highly pathogenic and is capable of causing systemic clinical foci in Procypris merus. In addition, after infection with K. pneumoniae, the expression of IL‐1β, IL‐8, HSP70 and C2 was upregulated in P. merus as a whole, whereas the expression of TNF‐α did not change significantly in any of the tissues, which might be a kind of immune response of P. merus against K. pneumoniae infection. This study provides an important theoretical basis for the in‐depth exploration of the pathogenic mechanism of K. pneumoniae in fish and the immune response that occurs after the disease is contracted in fish, as well as theoretical support for the development of effective preventive and therapeutic strategies against K. pneumoniae‐infected aquatic animals in the future.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Veterinary (miscellaneous),Aquatic Science

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