Shao Yuexin, Huang Jiangtao, Wei Manhong, Fan Liaoyu, Shi Huaiping, Shi Hengbo
College of Animal Science and Technology, Northwest A&F University, Yangling, Shaanxi 712100, China.
College of Animal Science and Technology, Hebei Normal University of Science and Technology, Qinhuangdao 066600, China.
J Anim Sci. 2024 Jan 3;102. doi: 10.1093/jas/skae352.
Soybean isoflavone (SIF) in soybeans are natural phytoestrogens, which is functioned as an estrogen agonistic or antagonistic. SIF regulates the capacity of animals to synthesize triacylglycerols by directly utilizing long-chain fatty acids. However, few studies have focused on its regulatory lipid metabolism in lactating dairy goats. The objective of this study was to investigate the influence of SIF on milk yield and composition using Saanen dairy goats as a model, employing both in vivo and in vitro approaches. In the in vivo phase, a total of 20 goats were randomly divided into 2 groups: the control group fed a basal diet, and the experimental group fed a basal diet supplemented with SIF at a dosage of 100 mg/d. The results underscored a significant elevation in serum estrogen and prolactin levels in the SIF-supplemented group (P < 0.05). Notably, SIF supplementation also displayed a higher milk fat percentage (P = 0.03). Transitioning to in vitro experimentation, the addition of SIF (75 µM) to goat mammary epithelial cells exhibited a pronounced effect on cell proliferation. It spurred cell proliferation and led to an increase in triacylglycerol levels (P < 0.05). Consistently, SIF showcased an enhancement in the expression of key genes associated with milk fat de novo synthesis. SIF demonstrated a rescuing effect on the suppressive impact of MK2206 on Akt protein phosphorylation. Importantly, the study observed that the knockdown of estrogen receptor alpha (ERα) expression completely counteracted the effect of SIF on lipid droplet accumulation. Collectively, the current study establishes the critical role of SIF in process of fatty acid de novo in the goat mammary gland. This regulation is notably mediated through the ERα-Akt axis, thus enriching our understanding of this intricate biological process. This research sheds light on the potential benefits of SIF supplementation in dairy goat farming, ultimately contributing to improved milk production and quality.
大豆中的大豆异黄酮(SIF)是天然植物雌激素,具有雌激素激动或拮抗作用。SIF通过直接利用长链脂肪酸来调节动物合成三酰甘油的能力。然而,很少有研究关注其对泌乳奶山羊脂质代谢的调节作用。本研究的目的是以萨能奶山羊为模型,采用体内和体外方法,研究SIF对产奶量和奶成分的影响。在体内实验阶段,将20只山羊随机分为2组:对照组饲喂基础日粮,实验组饲喂添加了100 mg/d SIF的基础日粮。结果表明,添加SIF组的血清雌激素和催乳素水平显著升高(P < 0.05)。值得注意的是,添加SIF还使乳脂率更高(P = 0.03)。在体外实验中,向山羊乳腺上皮细胞中添加SIF(75 μM)对细胞增殖有显著影响。它促进细胞增殖并导致三酰甘油水平升高(P < 0.05)。同样,SIF使与乳脂肪从头合成相关的关键基因表达增强。SIF对MK2206抑制Akt蛋白磷酸化的作用具有挽救作用。重要的是,研究发现敲低雌激素受体α(ERα)的表达完全抵消了SIF对脂滴积累的影响。总体而言,本研究确定了SIF在山羊乳腺脂肪酸从头合成过程中的关键作用。这种调节明显是通过ERα-Akt轴介导的,从而丰富了我们对这一复杂生物学过程的理解。这项研究揭示了在奶山羊养殖中添加SIF的潜在益处,最终有助于提高产奶量和奶品质。