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Short- and long-term dynamics of the physiological and behavioral response to heat stress and thymol supplementation in Japanese quail

机译:日本鹌鹑的热应激和胸腺酚的生理和行为应对的短期和长期动态

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Organisms have evolved endogenous timing systems that enable them to predict temporal changes and to coordinate complex internal processes. However, temporal dynamics of biological responses are most often ignored in fields such as dietary supplementation of farm animals exposed to artificial environmental challenges. Herein, we hypothesized that the potential for thymol (2-isopropyl-5-methylphenol) to alleviate physiological and behavioral consequences of heat stress is time-dependent on both long-term (i.e. weeks) and short-term (i.e. within day) time scales. First, during 3-weeks adult female Japanese quail (Coturnix japonica) were exposed daily to 9h of increased environmental temperature (34.2 +/- 0.1 degrees C). Controls remained at standard temperatures (23.6 +/- 0.1 degrees C). Simultaneously, half received thymol dietary supplementation and the other half a control basal diet. On day 4, both thymol and heat stress decreased body weight and feed intake respect to controls (basal, standard temperature). After three weeks, feed intake recovered for thymol groups. Therefore, we performed a second experiment focused on the critical first week of treatment, sampling variables three times a day. The beneficial effects of thymol supplementation were mainly observed during the morning, including prevention of high respiratory rates and reduction in the weight of droppings induced by heat stress, and increased walking under both temperatures. In summary, thymol's potential for alleviating heat stress consequences is timedependent, and can be conceived as an emergent property resulting from the complex interplay between the dynamics of the biological response to thymol and heat stress. Findings highlight the importance of considering time-related factors when developing supplementation protocols to mitigate environmental challenges.
机译:生物体已经进化出内源性计时系统,使它们能够预测时间变化并协调复杂的内部过程。然而,生物反应的时间动力学在一些领域中最常被忽视,例如对暴露于人工环境挑战的农场动物进行膳食补充。在此,我们假设百里香酚(2-异丙基-5-甲基苯酚)缓解热应激的生理和行为后果的潜力取决于长期(即几周)和短期(即一天内)时间尺度。首先,在3周内,成年雌性日本鹌鹑(Coturnix japonica)每天暴露在环境温度升高(34.2+/-0.1摄氏度)下9小时。对照组保持在标准温度(23.6+/-0.1摄氏度)。同时,一半接受百里酚饮食补充,另一半接受对照基础饮食。第4天,百里酚和热应激均降低了对照组的体重和采食量(基础温度、标准温度)。三周后,百里酚组的采食量恢复。因此,我们进行了第二个实验,重点是治疗的关键第一周,每天三次采样变量。补充百里酚的有益效果主要是在早上观察到的,包括预防高呼吸频率和减少热应激引起的粪便重量,以及在两种温度下增加行走。总之,百里酚缓解热应激后果的潜力是时间依赖性的,并且可以被认为是由于百里酚的生物反应动力学和热应激之间的复杂相互作用而产生的一种紧急性质。研究结果强调了在制定补充方案以缓解环境挑战时考虑时间相关因素的重要性。

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