Hosseinzadeh Sevda, Hasanpur Karim
Department of Animal Science, Faculty of Agriculture, University of Tabriz, Tabriz, Iran.
Front Genet. 2023 May 2;14:1102136. doi: 10.3389/fgene.2023.1102136. eCollection 2023.
Heat stress in poultry houses, especially in warm areas, is one of the main environmental factors that restrict the growth of broilers or laying performance of layers, suppresses the immune system, and deteriorates egg quality and feed conversion ratio. The molecular mechanisms underlying the response of chicken to acute heat stress (AHS) have not been comprehensively elucidated. Therefore, the main object of the current work was to investigate the liver gene expression profile of chickens under AHS in comparison with their corresponding control groups, using four RNA-seq datasets. The meta-analysis, GO and KEGG pathway enrichment, WGCNA, machine-learning, and eGWAS analyses were performed. The results revealed 77 meta-genes that were mainly related to protein biosynthesis, protein folding, and protein transport between cellular organelles. In other words, under AHS, the expression of genes involving in the structure of rough reticulum membrane and in the process of protein folding was adversely influenced. In addition, genes related to biological processes such as "response to unfolded proteins," "response to reticulum stress" and "ERAD pathway" were differentially regulated. We introduce here a couple of genes such as HSPA5, SSR1, SDF2L1, and SEC23B, as the most significantly differentiated under AHS, which could be used as bio-signatures of AHS. Besides the mentioned genes, the main findings of the current work may shed light to the identification of the effects of AHS on gene expression profiling of domestic chicken as well as the adaptive response of chicken to environmental stresses.
禽舍中的热应激,尤其是在温暖地区,是限制肉鸡生长或蛋鸡产蛋性能、抑制免疫系统并使蛋品质和饲料转化率恶化的主要环境因素之一。鸡对急性热应激(AHS)反应的分子机制尚未得到全面阐明。因此,当前工作的主要目的是使用四个RNA-seq数据集,研究AHS条件下鸡的肝脏基因表达谱,并与相应的对照组进行比较。进行了荟萃分析、GO和KEGG通路富集分析、WGCNA分析、机器学习分析和eGWAS分析。结果揭示了77个元基因,它们主要与蛋白质生物合成、蛋白质折叠以及细胞器之间的蛋白质转运有关。换句话说,在AHS条件下,涉及粗面内质网膜结构和蛋白质折叠过程的基因表达受到不利影响。此外,与“对未折叠蛋白的反应”、“对内质网应激的反应”和“ERAD途径”等生物过程相关的基因受到差异调节。我们在此介绍几个基因,如HSPA5、SSR1、SDF2L1和SEC23B,它们在AHS条件下差异最为显著,可作为AHS的生物标志物。除了上述基因外,当前工作的主要发现可能有助于识别AHS对家鸡基因表达谱的影响以及鸡对环境应激的适应性反应。