Trans-Cinnamaldehyde Primes More Robust Channel Catfish Immune Responses to Edwardsiella ictaluri Infection

Author:

Ramachandran Reshma1,Ford Emerald1,Gomaa Basant1,Abdelhamed Hossam1

Affiliation:

1. Department of Comparative Biomedical Sciences, College of Veterinary Medicine, Mississippi State University, Starkville, MS 39762, USA

Abstract

Infection with Edwardsiella ictaluri, a causative agent of enteric septicemia of catfish, threatens profitable catfish production through inventory losses. We previously demonstrated that trans-cinnamaldehyde (TC) enhances the survival of catfish following E. ictaluri infection. The present study was conducted to investigate catfish immune responses to TC feeding and E. ictaluri infection. The expression of 13 proinflammatory, innate, and adaptive immune-related genes was evaluated over time in two sets of experiments using real-time polymerase chain reaction (PCR). In the first experiment, catfish were fed a basal diet with or without TC supplementation, while in the second they were fed a TC-supplemented or normal diet followed by infection with E. ictaluri. The catfish group infected with E. ictaluri and fed a TC-diet showed significant changes in the expression of innate and adaptive immune-related genes compared to control group. At 21 and 28 days post-infection, recovered fish showed significant increases in the expression of IgM in the anterior kidney and spleen. These results suggest that the supplemental dietary intake of TC can improve the immune status of catfish via engaging innate and adaptive immune responses and the production of memory cells in immunocompetent tissues. Together, this study provides an important foundation for the potential application of TC as an antimicrobial alternative in aquaculture.

Funder

United States Department of Agriculture (USDA) National Institute of Food and Agriculture

Publisher

MDPI AG

Reference55 articles.

1. USDA (2024, April 02). Catfish Production, by the National Agricultural Statistics Service (NASS), Agricultural Statistics Board, United States Department of Agriculture (USDA). Available online: https://downloads.usda.library.cornell.edu/usda-esmis/files/bg257f046/gh93jb451/rf560m06c/cfpd0223.pdf.

2. Wise, A.L., and LaFrentz, B.R. (2021). A Review of Bacterial Co-Infections in Farmed Catfish: Components, Diagnostics, and Treatment Directions. Animals, 11.

3. An Asian origin of virulent Aeromonas hydrophila responsible for disease epidemics in United States-farmed catfish;Hossain;mBio,2014

4. An update on Aeromonas hydrophila from a fish health specialist for summer 2010;Hemstreet;Catfish J.,2010

5. The Epidemiology of Bacterial Diseases in Food-Size Channel Catfish;Wagner;J. Aquat. Anim. Health,2006

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