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Innate and adaptive immune response of Rainbow trout (Oncorhynchus mykiss) naturally infected with Yersinia ruckeri. | LitMetric

AI Article Synopsis

  • Rainbow trout is a key species in Peruvian aquaculture, making up over 60% of total production, but they face significant threats from bacterial infections like Yersinia ruckeri, which leads to high mortality rates.
  • This study examined the immune response of healthy versus naturally infected rainbow trout in Peru, focusing on gene expression and protein levels in various tissues using techniques like RT-qPCR and ELISA.
  • Results indicated a marked increase in pro-inflammatory cytokines and proteins related to the immune response in infected fish, suggesting that the endogenous antigen presentation pathway is crucial in combating Y. ruckeri, while the exogenous pathway appears to play no role in this defense.

Article Abstract

Rainbow trout is an important fish species for Peruvian artisanal aquaculture, comprising over 60 % of the total aquaculture production. However, their industry has been highly affected by several bacterial agents such as Yersinia ruckeri. This pathogen is the causative agent of Enteric Redmouth Disease, and causes high mortality in fingerlings and chronic infection in adult rainbow trout. To date, the immune response of rainbow trout against Y. ruckeri has been well studied in laboratory-controlled infection studies (i.e. intraperitoneal infection, bath immersion), however, the immune response during natural infection has not been explored. To address this, in this study, 35 clinically healthy O. mykiss without evidence of lesions or changes in behavior and 32 rainbow trout naturally infected by Y. ruckeri, were collected from semi-intensive fish farms located in the Central Highlands of Peru. To evaluate the effect on the immune response, RT-qPCR, western blotting, and ELISA were conducted using head kidney, spleen, and skin tissues to evaluate the relative gene expression and protein levels. Our results show a significant increase in the expression of the pro-inflammatory cytokines il1b, tnfa, and il6, as well as ifng in all three tissues, as well as increases in IL-1β and IFN-γ protein levels. The endogenous pathway of antigen presentation showed to play a key role in defense against Y. ruckeri, due to the upregulation of mhc-I, tapasin, and b2m transcripts, and the significant increase of Tapasin protein levels in infected rainbow trout. None of the genes associated with the exogenous pathway of antigen presentation showed a significant increase in infected fish, suggesting that this pathway is not involved in the response against this intracellular pathogen. Finally, the transcripts of immunoglobulins IgM and IgT did not show a modulation, nor were the protein levels evaluated in this study.

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Source
http://dx.doi.org/10.1016/j.fsi.2024.109742DOI Listing

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