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Physiological responses to heat stress in two genetically distinct chicken inbred lines

机译:两种遗传不同鸡自交系中热应激的生理反应

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High ambient temperature is one of the most important environmental factors negatively impacting poultry production and health. Genetics is an important contributor in mitigating the stress response to heat. Two genetically distinct highly inbred lines of similar body size (Leghorn and Fayoumi) were characterized for phenotypic differences in response to heat. At 14 days of age, birds were exposed to 38 degrees C with 50% humidity for 4 hours, then 35 degrees C until the conclusion of the experiment. Non-treated individuals were kept at 29.4 degrees C for the first week and then 25 degrees C throughout the experiment. Birds in the heat-stress group were inoculated at day (d) 21 with Newcastle disease virus (NDV) La Sota strain to investigate the effects of heat stress and NDV infection. Thirteen blood parameters were measured using the iSTAT blood analyzer at three stages: 4 h, 6 d, and 9 d post heat-stress treatment, representing acute heat (AH) exposure, chronic heat (CH1) exposure, and chronic heat exposure after virus infection (CH2), respectively. Most blood parameters were significantly changed with heat stress in Leghorns at AH and in Fayoumis at CH1 and CH2. The Leghorn line had significant acute responses with disrupted acid-base balance and metabolic disorders. The heat-resilient Fayoumis maintained a relatively well-balanced acid-base balance. The current study provides the comprehensive profile of biomarker signatures in blood associated with heat tolerance and suggests that PO2, TCO2, HCO3, and base excess can be served as potential biomarkers that can be used to genetically improve heat tolerance in poultry.
机译:高环境温度是对家禽生产和健康产生负面影响的最重要的环境因素之一。遗传学是减轻对热量应力反应的重要贡献者。两个类似体型的遗传明显高度自交系(LEGHORN和FAYOUMI)的特征是对热量的表型差异。在14天的时候,鸟类暴露在38℃下,50%湿度4小时,然后35℃直到实验结束。在整个实验过程中,第一周,在第一周,将未治疗的个体保持在29.4摄氏度。热应激组中的鸟类在白天(d)21中接种,新星症病毒(NDV)La Sota菌株,以研究热应激和NDV感染的影响。使用ISTAT血液分析仪在三个阶段测量13个血液参数:4小时,6d和9d后热应激处理,代表急性热(AH)曝光,慢性热(CH1)曝光,和病毒后慢性热暴露分别感染(CH2)。大多数血液参数在leghorns的热量应激在CH1和CH2的Zh2和Faymis中显着改变。 leghorn系具有显着的急性反应,破坏了酸碱平衡和代谢障碍。热弹性Fayoumis保持相对良好的酸碱平衡。目前的研究提供了与耐热性相关的血液中的生物标志物签名的综合型材,并表明PO2,TCO2,HCO3和碱过量可以作为潜在的生物标志物,可用于遗传改善家禽中的耐热性。

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