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Dynamic changes in blood immune cell composition and function in Holstein and Jersey steers in response to heat stress

机译:血液免疫细胞组成的动态变化及荷斯坦和泽西操纵子的热应激

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Heat stress has detrimental effects on livestock via diverse immune and physiological changes; heat-stressed animals are rendered susceptible to diverse diseases. However, there is relatively little information available regarding the altered immune responses of domestic animals in heat stress environments, particularly in cattle steers. This study aimed to determine the changes in the immune responses of Holstein and Jersey steers under heat stress. We assessed blood immune cells and their functions in the steers of two breeds under normal and heat stress conditions and found that immune cell proportions and functions were altered in response to different environmental conditions. Heat stress notably reduced the proportions of CD21 ~(+)MHCII ~(+) B cell populations in both breeds. We also observed breed-specific differences. Under heat stress, in Holstein steers, the expression of myeloperoxidase was reduced in the polymorphonuclear cells, whereas heat stress reduced the WC1 ~(+) γδ T cell populations in Jersey steers. Breed-specific changes were also detected based on gene expression. In response to heat stress, the expression of IL-10 and IL-17A increased in Holstein steers alone, whereas that of IL-6 increased in Jersey steers. Moreover, the mRNA expression pattern of heat shock protein genes such as Hsp70 and Hsp90 was significantly increased in only Holstein steers. Collectively, these results indicate that altered blood immunological profiles may provide a potential explanation for the enhanced susceptibility of heat-stressed steers to disease. The findings of this study provide important information that will contribute to developing new strategies to alleviate the detrimental effects of heat stress on steers.
机译:热应激通过不同的免疫和生理变化对牲畜产生不利影响;热应激动物易受多种疾病的影响。然而,有关于热应力环境中的家畜的改变的免疫应答的信息相对较少,特别是在牛阉牛中。本研究旨在确定热应激下Holstein和泽西操纵子免疫应答的变化。在正常和热应激条件下,我们评估了血液免疫细胞及其在两种品种的阉牛体中的功能,发现免疫细胞比例和功能是响应于不同的环境条件而改变。热应力显着降低了两种品种中CD21〜(+)MHCII〜(+)B细胞群的比例。我们还观察到特异性特异性差异。在热胁迫下,在荷斯坦操纵子中,在多核细胞中,髓过氧化物酶的表达降低,而热应激在泽西操纵器中降低了WC1〜(+)γδT细胞群。还基于基因表达检测品种特异性变化。响应于热应激,单独的IL-10和IL-17a的表达增加,而IL-6的表达在泽西操纵子中增加。此外,仅HOLSTEIN操纵器在HSP70和HSP90如HSP70和HSP90等热休克蛋白基因的mRNA表达模式显着增加。总的来说,这些结果表明,改变的血液免疫谱可以提供对增强热应激操纵者对疾病的易感性的潜在解释。本研究的调查结果提供了重要的信息,这将有助于制定新的策略,以减轻热力压力对操纵者的不利影响。

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