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Microbial-transcriptome integrative analysis of heat stress effects on amino acid metabolism and lipid peroxidation in poultry jejunumopen access

Authors
Seo, Young-JunLim, ChiwoongLim, ByeonghwiKim, Jun-Mo
Issue Date
Oct-2024
Publisher
Taylor and Francis Ltd.
Keywords
broiler; Heat stress; microbiome; multi-omics integration; RNA-seq
Citation
Animal Biotechnology, v.35, no.1
Journal Title
Animal Biotechnology
Volume
35
Number
1
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/73156
DOI
10.1080/10495398.2024.2331179
ISSN
1049-5398
1532-2378
Abstract
Despite the significant threat of heat stress to livestock animals, only a few studies have considered the potential relationship between broiler chickens and their microbiota. Therefore, this study examined microbial modifications, transcriptional changes and host–microbiome interactions using a predicted metabolome data-based approach to understand the impact of heat stress on poultry. After the analysis, the host functional enrichment analysis revealed that pathways related to lipid and protein metabolism were elevated under heat stress conditions. In contrast, pathways related to the cell cycle were suppressed under normal environmental temperatures. In line with the transcriptome analysis, the microbial analysis results indicate that taxonomic changes affect lipid degradation. Heat stress engendered statistically significant difference in the abundance of 11 microorganisms, including Bacteroides and Peptostreptococcacea. Together, integrative approach analysis suggests that microbiota-induced metabolites affect host fatty acid peroxidation metabolism, which is correlated with the gene families of Acyl-CoA dehydrogenase long chain (ACADL), Acyl-CoA Oxidase (ACOX) and Acetyl-CoA Acyltransferase (ACAA). This integrated approach provides novel insights into heat stress problems and identifies potential biomarkers associated with heat stress. © 2024 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.
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대학원 (동물생명공학과.)
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