Center of Excellence for Poultry Science, University of Arkansas, Fayetteville, Arkansas 72701.
Department of Animal Science, Faculty of Agricultural Sciences, Malayer University, Malayer 65719-9586, Iran.
Poult Sci. 2019 Sep 1;98(9):3400-3404. doi: 10.3382/ps/pez120.
Poultry well-being and economic burden due to heat stress (HS) are of great importance to the poultry industry. Efficient design and effective evaluation of any strategies to alleviate the adverse effects of HS on poultry production require an accurate measurement of stress. However, current methods for monitoring stress in poultry are less than ideal, as they are invasive or subjective, and therefore variable. Here, we demonstrated that HSP70, the well-established intracellular stress chaperone, is expressed in chicken feather and is responsive to HS, and could therefore be used as a stress marker. Growing feathers were collected from the same bird (Cobb500, n = 9) in the morning (barn temperature 24°C) and afternoon (barn temperature 29.5°C) in the summer (2016 June 21) in Arkansas, USA. In the afternoon, the birds were panting and their core body temperatures were significantly higher compared to the morning time, as illustrated by iButton data thermo-loggers. Concomitantly, blood HSP70 mRNA and feather HSP70 expression (mRNA and protein) were significantly increased in the afternoon compared to the morning time. Similarly, HSP70 protein expression in the duodenum was also significantly higher in the afternoon compared to the morning period. Together, these finding identify feather HSP70 as a novel non-invasive molecular signature that mirrors the intracellular and systemic stress, which can be useful to monitor well-being of chickens and other avian species under different challenges.
家禽因热应激(HS)而产生的福利和经济负担对家禽业非常重要。要有效设计和评估减轻 HS 对家禽生产的不利影响的任何策略,都需要准确测量应激。然而,目前监测家禽应激的方法并不理想,因为它们具有侵入性或主观性,因此具有变异性。在这里,我们证明 HSP70,即成熟的细胞内应激伴侣,在鸡羽毛中有表达,对 HS 有反应,因此可以用作应激标志物。在夏季(2016 年 6 月 21 日),在美国阿肯色州,从同一只鸡(Cobb500,n = 9)身上采集正在生长的羽毛,分别在上午(谷仓温度 24°C)和下午(谷仓温度 29.5°C)。下午,与上午相比,鸡在喘气,其核心体温明显升高,iButton 数据温度记录仪记录了这一点。同时,与上午相比,下午血液 HSP70 mRNA 和羽毛 HSP70 的表达(mRNA 和蛋白质)明显增加。同样,下午十二指肠中的 HSP70 蛋白表达也明显高于上午。这些发现共同表明,羽毛 HSP70 是一种新的非侵入性分子特征,可以反映细胞内和全身应激,可用于监测不同挑战下鸡和其他禽类的健康状况。