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草药补充剂对遭受热应激的肯古里绵羊生长性能的影响。

Effects of Herbal Supplementation on Growth Performance of Kenguri Sheep Exposed to Heat Stress.

作者信息

Rebez Ebenezer Binuni, Devaraj Chinnasamy, Ninan Jacob, Silpa Mullakkalparambil Velayudhan, Perumal Shanmugam Venkatesa, Sahoo Artabandhu, Dunshea Frank Rowland, Sejian Veerasamy

机构信息

Centre for Climate Resilient Animal Adaptation Studies, ICAR-National Institute of Animal Nutrition and Physiology, Adugodi, Bangalore 560030, India.

Rajiv Gandhi Institute of Veterinary Education and Research, Kurumbapet, Puducherry 605009, India.

出版信息

Animals (Basel). 2025 Apr 30;15(9):1285. doi: 10.3390/ani15091285.

Abstract

A study was designed to explore the possibility of using herbal supplementation to sustain growth performance during heat stress exposure in Kenguri sheep. This 60-day study was conducted on 24 Kenguri ewes (1-2 years old), randomly assigned to four treatment groups ( = 6 per group) as follows: KC ( = 6; Kenguri Control), KHS ( = 6; Kenguri Heat Stress), KCS ( = 6; Kenguri Control and herbal supplement), and KHSS ( = 6; Kenguri Heat Stress and herbal supplement). The herbal mixture of Ocimum sanctum (Tulsi), Emblica officinalis (Amla), Morinda citrifolia (Noni), Withania somnifera (Ashwagandha), and Phyllostachys edulis (Bamboo) was used in this study. The herbal supplement used in the present study was given to the KCS and KHSS groups' animals in dry powder form at a dose of 0.8 g/Kg BW/Day. All variables were recorded fortnightly, and gene expression analysis was performed at the end of the experiment. The results indicated that the recorded temperature-humidity index (THI) provided thermal comfort for KC and KCS while inducing extremely severe heat stress to the KHS and KHSS groups. Heat stress did not alter the feed intake, while the herbal supplement during heat stress increased the feed intake from day 30 onwards. Furthermore, heat stress significantly ( < 0.001) increased the water intake, while the herbal supplement did not alter the heat stress-induced water intake. In addition, neither heat stress nor herbal supplements influenced the body weight and allometric measurements studied. Furthermore, heat stress significantly ( < 0.01) decreased the level of plasma tri-iodo-thyronine (T) and thyroxin (T) and had a non-significant effect on plasma growth hormone (GH), insulin-like growth factor-1 (IGF-1), while the herbal supplements significantly ( < 0.01) increased the levels of all these hormones studied. Likewise, in peripheral blood mononuclear cells (PBMCs) the expression patterns of and ( were significantly ( < 0.001) downregulated during heat stress (0.25, 0.3, and 0.48-fold change, respectively). However, the herbal supplement significantly ( < 0.01) increased the heat stress-induced reduction in the expression pattern of these three genes (0.65, 0.61, and 0.61-fold change, respectively). Therefore, from this study, it could be concluded that although the herbal supplements did not bring positive changes in body weight and allometric measurements, it still had a beneficial impact on the endocrinology and genes governing growth performance in Kenguri ewes. Thus, the herbal feed additive used in the study shows promise for relieving heat stress in Kenguri ewes.

摘要

一项研究旨在探索在肯古里羊热应激期间使用草药补充剂来维持生长性能的可能性。这项为期60天的研究对24只肯古里母羊(1 - 2岁)进行,随机分为四个处理组(每组 = 6只),如下所示:KC( = 6;肯古里对照组)、KHS( = 6;肯古里热应激组)、KCS( = 6;肯古里对照组 + 草药补充剂)和KHSS( = 6;肯古里热应激 + 草药补充剂)。本研究使用了神圣罗勒(图尔西)、余甘子(印度醋栗)、海巴戟(诺丽果)、南非醉茄(印度人参)和毛竹的草药混合物。本研究中使用的草药补充剂以干粉形式给予KCS组和KHSS组的动物,剂量为0.8 g/千克体重/天。每两周记录所有变量,并在实验结束时进行基因表达分析。结果表明,记录的温湿度指数(THI)为KC组和KCS组提供了热舒适,而给KHS组和KHSS组带来了极其严重的热应激。热应激未改变采食量,而热应激期间的草药补充剂从第30天起增加了采食量。此外,热应激显著( < 0.001)增加了饮水量,而草药补充剂未改变热应激诱导的饮水量。此外,热应激和草药补充剂均未影响所研究的体重和异速生长测量值。此外,热应激显著( < 0.01)降低了血浆三碘甲状腺原氨酸(T)和甲状腺素(T)水平,对血浆生长激素(GH)、胰岛素样生长因子 - 1(IGF - 1)无显著影响,而草药补充剂显著( < 0.01)增加了所有这些所研究激素的水平。同样,在外周血单核细胞(PBMCs)中,热应激期间 和 的表达模式显著( < 0.001)下调(分别为0.25、0.3和0.48倍变化)。然而,草药补充剂显著( < 0.01)增加了热应激诱导的这三个基因表达模式的降低(分别为0.65、0.61和0.61倍变化)。因此,从这项研究可以得出结论,虽然草药补充剂在体重和异速生长测量方面没有带来积极变化,但它对肯古里母羊的内分泌学和控制生长性能的基因仍有有益影响。因此,本研究中使用的草药饲料添加剂有望缓解肯古里母羊的热应激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b833/12071093/ad4d709c495f/animals-15-01285-g001.jpg

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