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Multi-omics analysis of miRNA-mediated intestinal microflora changes in crucian carp infected with . | LitMetric

Multi-omics analysis of miRNA-mediated intestinal microflora changes in crucian carp infected with .

Front Immunol

Tianjin Key Lab of Aqua-Ecology and Aquaculture, College of Fisheries, Tianjin Agricultural University, Tianjin, China.

Published: March 2024

Infection by an emerging bacterial pathogen caused enteritis and septicemia in fish. However, the molecular pathogenesis of enteritis induced by infection and its interacting mechanism of the intestinal microflora associated with microRNA (miRNA) immune regulation in crucian carp are still unclear. In this study, intraperitoneally injected with KCL-5 was used as an experimental animal model, and the intestinal pathological changes, microflora, and differentially expressed miRNAs (DEMs) were investigated by multi-omics analysis. The significant changes in histopathological features, apoptotic cells, and enzyme activities (e.g., lysozyme (LYS), alkaline phosphatase (AKP), alanine aminotransferase (ALT), aspartate transaminase (AST), and glutathione peroxidase (GSH-Px)) in the intestine were examined after infection. Diversity and composition analysis of the intestinal microflora clearly demonstrated four dominant bacteria: Proteobacteria, Fusobacteria, Bacteroidetes, and Firmicutes. A total of 87 DEMs were significantly screened, and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses revealed that the potential target genes were mainly involved in the regulation of lipid, glutathione, cytosine, and purine metabolism, which participated in the local immune response through the intestinal immune network for IgA production, lysosome, and Toll-like receptor (TLR) pathways. Moreover, the expression levels of 11 target genes (e.g., , , , , , , , , , , and ) related to inflammation and immunity were verified by qRT-PCR detection. The correlation analysis indicated that the abundance of intestinal Firmicutes and Proteobacteria was significantly associated with the high local expression of miR-203/, miR-129/, and miR-205/. These findings will help to elucidate the molecular regulation mechanism of the intestinal microflora, inflammation, and immune response-mediated miRNA-target gene axis in cyprinid fish.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10902443PMC
http://dx.doi.org/10.3389/fimmu.2024.1335602DOI Listing

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