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1过瘤胃蛋氨酸对围产期奶牛代谢及健康的调控作用及机理显示文摘受多种因素影响,奶牛围产期处于能量和其他营养物质的负平衡状态,多发营养代谢病。研究表明,蛋氨酸可调控奶牛围产期能量和脂质代谢,改善肝脏功能,并可增强机体抗氧化和免疫功能。本文综述了蛋氨酸调控奶牛围产期代谢和机体健康的相关进展,探讨奶牛围产期过瘤胃蛋氨酸的适宜添加量,旨在为蛋氨酸在奶牛围产期的基础研究和应用提供参考。孙博非 余超 曹阳春 蔡传江 李生祥 姚军虎 2018动物营养学报2018,30,3:6
2Multifaceted role of one-carbon metabolism on immunometabolic control and growth during pregnancy, lactation and the neonatal period in dairy cattle显示文摘Dairy cattle undergo dramatic metabolic, endocrine, physiologic and immune changes during the peripartal period largely due to combined increases in energy requirements for fetal growth and development, milk production, and decreased dry matter intake. The negative nutrient balance that develops results in body fat mobilization,subsequently leading to triacylglycerol(TAG) accumulation in the liver along with reductions in liver function,immune dysfunction and a state of inflammation and oxidative stress. Mobilization of muscle and gluconeogenesis are also enhanced, while intake of vitamins and minerals is decreased, contributing to metabolic and immune dysfunction and oxidative stress. Enhancing post-ruminal supply of methyl donors is one approach that may improve immunometabolism and production synergistically in peripartal cows. At the cellular level, methyl donors(e.g. methionine, choline, betaine and folic acid) interact through one-carbon metabolism to modulate metabolism,immune responses and epigenetic events. By modulating those pathways, methyl donors may help increase the export of very low-density lipoproteins to reduce liver TAG and contribute to antioxidant synthesis to alleviate oxidative stress. Thus, altering one-carbon metabolism through methyl donor supplementation is a viable option to modulate immunometabolism during the peripartal period. This review explores available data on the regulation of one-carbon metabolism pathways in dairy cows in the context of enzyme regulation, cellular sensors and signaling mechanisms that might respond to increased dietary supply of specific methyl donors. Effects of methyl donors beyond the one-carbon metabolism pathways, including production performance, immune cell function,mechanistic target or rapamycin signaling, and fatty acid oxidation will also be highlighted. Furthermore, the effects of body condition and feeding system(total mixed ration vs. pasture) on one-carbon metabolism pathways are explored. Potential effects of methyl donor supply during the pepartum period on dairy calf growth and development also are discussed. Lastly, practical nutritional recommendations related to methyl donor metabolism during the peripartal period are presented. Nutritional management during the peripartal period is a fertile area of research, hence, underscoring the importance for developing a systems understanding of the potential immunometabolic role that dietary methyl donors play during this period to promote health and performance.Danielle N.Coleman Abdulrahman S.Alharthi Yusheng Liang Matheus Gomes Lopes Vincenzo Lopreiato Mario Vailati-Riboni Juan J.Loor 2021Journal of Animal Science and Biotechnology2021,12,1:5
3日粮能量水平对反刍动物的影响研究进展显示文摘能量是反刍动物饲粮的重要营养指标之一,动物在不同阶段对能量的需求不同。能量水平影响动物机体的营养代谢、生长发育和繁殖性能。文章综述不同能量水平对反刍动物的影响,旨在为当前反刍动物的精准饲养提供参考。李晓睿 敖日格乐 王纯洁 斯木吉德 2021饲料研究2021,44,21:0
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