4.7 Article

Molecular characterization and expression analyses of five genes involved in the MyD88-dependent pathway of yellow catfish (Pelteobagrus fulvidraco) responding to challenge of Aeromonas hydrophila

Journal

FISH & SHELLFISH IMMUNOLOGY
Volume 137, Issue -, Pages -

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.fsi.2023.108712

Keywords

Pelteobagrus fulvidraco; MyD88; IRAK4; IRAK1; TRAF6; NF kappa B1; Gene expression; Aeromonas hydrophila

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The MyD88-dependent pathway mediated by Toll-like receptor is crucial in activating immune responses in yellow catfish. The cloned and characterized genes Pf_MyD88, Pf_IRAK4, Pf_IRAK1, Pf_TRAF6 and Pf_NF kappa B1 showed high conservation across species and exhibited the highest similarity to genes in other fish species. These genes were highly expressed in the liver and showed similar expression patterns during different embryonic development stages. After stimulation with inactivated Aeromonas hydrophila, the mRNA expressions of these genes were significantly increased in various tissues, indicating their involvement in the innate immune response of yellow catfish. These findings highlight the importance of the MyD88-dependent signaling pathway in disease defense and provide insights for the application of inactivated vaccines against bacterial diseases in teleost.
MyD88-dependent pathway mediated by Toll-like receptor is one of the vital ways activating immune responses. In order to identify the role of MyD88-dependent signaling pathway in yellow catfish, the Pf_MyD88, Pf_IRAK4, Pf_IRAK1, Pf_TRAF6 and Pf_NF kappa B1 (p105) (Pf: abbreviation of Pelteobagrus fulvidraco) were cloned and characterized respectively. The Pf_MyD88, Pf_IRAK4, Pf_IRAK1 and Pf_TRAF6 were all highly conserved among species and showed the highest homology to that of Pangasianodon hypophthalmus. Pf_NF kappa B1 showed the highest homology to that of Ictalurus punetaus. All of the five genes showed similar expression patterns in various tissues, with the highest expression level in the liver. These genes also showed similar expression levels in different embryonic development stages, except Pf_IRAK4. The higher expression level was detected from fertilized eggs to 1 day post hatching (dph), lower expression from 3 dph to 30 dph. After stimulation of inactivated Aeromonas hydrophila, the mRNA expressions of Pf_MyD88, Pf_IRAK4, Pf_IRAK1, Pf_TRAF6 and Pf_NF kappa B1 were significantly increased at 24 h in the liver, spleen, head kidney and trunk kidney, suggesting that all the five genes were involved in the innate immune response of yellow catfish. These results showed that MyD88-dependent signaling pathway plays important roles for disease defensing in the innate immune response. Meanwhile, inactivated A. hydrophila can cause strong innate immune response, which provides theoretical bases for the application of inactivated vaccines in defense against bacterial diseases of teleost.

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