热应激会影响流向乳腺的血浆,从而影响乳腺的新陈代谢。

IF 6.3 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE Journal of Animal Science and Biotechnology Pub Date : 2024-07-05 DOI:10.1186/s40104-024-01050-3
Jia Zeng, Diming Wang, Huizeng Sun, Hongyun Liu, Feng-Qi Zhao, Jianxin Liu
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引用次数: 0

摘要

背景:环境热应激(HS)会损害乳腺功能,从而对产奶量产生不利影响。乳腺血浆流(MPF)对乳腺的营养供应和吸收起着至关重要的作用。在本实验中,我们研究了高产奶牛在不同程度的恒温恒湿条件下的生理和代谢变化:无恒温恒湿条件,热湿指数(THI)低于68(No-HS);轻度恒温恒湿条件(Mild-HS,68 ≤ THI ≤ 79);中度恒温恒湿条件(Mod-HS,79):与无HS相比,奶牛的MPF更大(P 结论:HS程度不同,对奶牛的影响也不同:HS程度对奶牛的乳腺代谢有不同的影响,主要是通过改变MPF。这项研究的结果可能有助于我们制定策略,减轻不同程度的HS对奶牛产奶量的影响。
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Heat stress affects mammary metabolism by influencing the plasma flow to the glands.

Background: Environmental heat stress (HS) can have detrimental effects on milk production by compromising the mammary function. Mammary plasma flow (MPF) plays a crucial role in nutrient supply and uptake in the mammary gland. In this experiment, we investigated the physiological and metabolic changes in high-yielding cows exposed to different degrees of HS: no HS with thermal-humidity index (THI) below 68 (No-HS), mild HS (Mild-HS, 68 ≤ THI ≤ 79), and moderate HS (Mod-HS, 79 < THI ≤ 88) in their natural environment. Our study focused on the changes in blood oxygen supply and mammary glucose uptake and utilization.

Results: Compared with No-HS, the MPF of dairy cows was greater (P < 0.01) under Mild-HS, but was lower (P < 0.01) in cows under Mod-HS. Oxygen supply and consumption exhibited similar changes to the MPF under different HS, with no difference in ratio of oxygen consumption to supply (P = 0.46). The mammary arterio-vein differences in glucose concentration were lower (P < 0.05) under Mild- and Mod-HS than under no HS. Glucose supply and flow were significantly increased (P < 0.01) under Mild-HS but significantly decreased (P < 0.01) under Mod-HS compared to No-HS. Glucose uptake (P < 0.01) and clearance rates (P < 0.01) were significantly reduced under Mod-HS compared to those under No-HS and Mild-HS. Under Mild-HS, there was a significant decrease (P < 0.01) in the ratio of lactose yield to mammary glucose supply compared to that under No-HS and Mod-HS, with no difference (P = 0.53) in the ratio of lactose yield to uptaken glucose among different HS situations.

Conclusions: Degrees of HS exert different influences on mammary metabolism, mainly by altering MPF in dairy cows. The output from this study may help us to develop strategies to mitigate the impact of different degrees of HS on milk production.

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CiteScore
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822
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