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Seasonal Dynamics of Physiological, Oxidative and Metabolic Responses in Non-lactating Nili-Ravi Buffaloes Under Hot and Humid Climate

机译:在炎热和潮湿气候下非哺乳酸尼尔 - 雷维尔水牛的生理,氧化和代谢反应的季节性动态

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Hot and humid weather exposes animals to high temperature and relative humidity that ultimately reduce their ability to disperse body heat. To avoid serious consequences of heat stress, it is imperative to understand animal physiological responses and biochemical changes during a state of altered body homeostasis across different seasons of the year. This study evaluated seasonal dynamics of physiological, oxidative and metabolic responses of Nili-Ravi buffaloes to hot and humid climate. Twenty non-lactating multiparous buffaloes were enrolled for this one-year study. Meteorological data were recorded twice daily to calculate temperature humidity index (THI). Physiological parameters including rectal temperature (RT), body surface temperature (BST), and respiratory rate (RR) were measured weekly. Blood samples were collected once in each season (spring, summer, autumn and winter) to analyze biochemical and antioxidant parameters. We also measured activities of liver enzymes including alanine aminotransferase (ALT) and aspartate aminotransferase (AST). The results revealed a significantly higher THI value (82) during summer which resulted in a significant increase in RR and BST as compared to winter. Higher oxidative stress was observed in summer owing to significantly higher malondialdehyde (MDA) content and lower levels of serum antioxidant enzymes (GSH-PxGPx, SOD, and CAT) as compared to other seasons. Moreover, serum cortisol was also significantly higher while adrenocorticotropic hormone (ACTH), Triiodothyronine (T3), insulin, and growth hormone contents were significantly lower in summer. Contrarily, plasma thyroxin (T4) level was higher in summer. THI showed a positive correlation with physiological responses but a negative correlation with antioxidant parameters. Our study provides practical insights on the adaptive physiology of buffaloes and has several implications regarding the alleviation of heat stress in buffaloes to enhance the efficiency of production and reproduction under tropical climate. Our study suggests the use of appropriate cooling strategies to effectively manage the non-lactating buffaloes to avoid performance losses and animal welfare issues in summer season.
机译:热和潮湿的天气使动物暴露于高温和相对湿度,最终降低其散发体热的能力。为了避免热应激的严重后果,必须了解在年度不同季节的体内稳态状态下的动物生理反应和生物化学变化。本研究评估了尼里利 - 雷维水牛的生理,氧化和代谢反应的季节性动态,以热和潮湿的气候。为这项一年的研究报告了20个非哺乳的多种水牛。每天两次记录气象数据以计算温度湿度指数(THI)。每周测量包括直肠温度(RT),体表温度(BST)和呼吸速率(RR)的生理参数。血液样本在每个季节(春季,夏季,秋季和冬季)中收集一次,分析生化和抗氧化参数。我们还测量肝酶的活性,包括丙氨酸氨基转移酶(ALT)和天冬氨酸氨基转移酶(AST)。结果显示夏季显着较高的THI值(82),与冬季相比,RR和BST的显着增加。与其他季节相比,夏季,夏季,夏季观察了更高的氧化胁迫,而血清抗氧化酶(GSH-PXGPX,SOD和猫)。此外,血清皮质醇在夏季肾上腺皮质激素(ACTH),三碘甲酚(T3),胰岛素和生长激素含量也明显高得多。相反,夏季血浆甲状腺素(T4)水平较高。据表明与生理反应的正相关性,但与抗氧化参数的负相关性。我们的研究提供了对水牛的适应性生理学的实用洞察,并对水牛的热应激有几种影响,以提高热带气候下的生产效率和繁殖。我们的研究表明,使用适当的冷却策略,有效地管理非哺乳水库,以避免夏季的性能损失和动物福利问题。

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