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High ambient temperature directly decreases milk synthesis in the mammary gland in Saanen goats

机译:高环境温度直接降低乳腺牛山羊中的乳汁合成

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The mammary gland is a privileged organ for mammals. Because of their high capacity for milk synthesis, dairy ruminants have been distributed throughout the world. In tropical areas, dairy animals face high ambient temperatures (HTa). The indirect effect of HTa on milk synthesis is mediated in part by a reduction in feed intake. The current experiment focused on the direct natural effect of HTa on mammary function. Multiparous Saanen goats were used in this study. The physiological responses for HTa were evaluated from the control period during the winter and from the natural HTa during the summer. Milk samples were collected for isolation of the goat milk cells to study the expression of the beta-1,4 galactosyltransferase (beta-GALT1), Akt, and heat shock protein 70 (HSP70) genes. Although goats in the summer maintained rectal temperature and plasma cortisol levels similar to those observed in the winter, the higher respiratory rate and lower feed intake and milk yield (MY) from the goats in the summer indicated that the goats in the summer were exposed to a higher degree of HTa. This was supported by the significantly higher level of plasma glutathione peroxidase (GPX) activity. Moreover, the relative expression levels of beta-GALT1 and Akt were not different. The relative expression of HSP70 during the summer was significantly higher than what was observed in cells isolated in the winter. In conclusion, the HTa effect on MY during the summer was related to its indirect effect on feed intake. The direct HTa effect might be related to HSP70 gene expression in goat milk cells and to plasma GPX activity. However, the natural HTa did not affect the expression of Akt or beta-GALT1.
机译:乳腺是哺乳动物的特权器官。由于乳反刍动物具有很高的牛奶合成能力,因此它们分布在世界各地。在热带地区,乳制品动物面临高温(HTa)。HTa对牛奶合成的间接影响在一定程度上是通过减少采食量来调节的。目前的实验主要关注HTa对乳腺功能的直接自然效应。本研究使用了多产萨能山羊。从冬季的对照期和夏季的天然HTa评估对HTa的生理反应。收集牛奶样本以分离山羊奶细胞,以研究β-1,4半乳糖基转移酶(β-GALT1)、Akt和热休克蛋白70(HSP70)基因的表达。尽管夏季山羊的直肠温度和血浆皮质醇水平与冬季相似,但夏季山羊较高的呼吸频率、较低的采食量和产奶量(MY)表明,夏季山羊暴露于较高程度的HTa。血浆谷胱甘肽过氧化物酶(GPX)活性显著升高支持了这一点。此外,β-GALT1和Akt的相对表达水平没有差异。夏季HSP70的相对表达明显高于冬季分离的细胞。总之,夏季HTa对我的影响与其对采食量的间接影响有关。HTa的直接作用可能与羊乳细胞中HSP70基因的表达和血浆GPX活性有关。然而,天然HTa不影响Akt或β-GALT1的表达。

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