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Stage-specific nutritional management and developmental programming to optimize meat production
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作者 Liang Zhao Xiangdong Liu +5 位作者 Noe A Gomez Yao Gao Jun Seok Son Song Ah Chae Mei‑Jun Zhu Min Du 《Journal of Animal Science and Biotechnology》 SCIE CAS CSCD 2023年第2期451-464,共14页
Over the past few decades,genetic selection and refined nutritional management have extensively been used to increase the growth rate and lean meat production of livestock.However,the rapid growth rates of modern bree... Over the past few decades,genetic selection and refined nutritional management have extensively been used to increase the growth rate and lean meat production of livestock.However,the rapid growth rates of modern breeds are often accompanied by a reduction in intramuscular fat deposition and increased occurrences of muscle abnor‑malities,impairing meat quality and processing functionality.Early stages of animal development set the long‑term growth trajectory of offspring.However,due to the seasonal reproductive cycles of ruminant livestock,gestational nutrient deficiencies caused by seasonal variations,frequent droughts,and unfavorable geological locations nega‑tively affect fetal development and their subsequent production efficiency and meat quality.Therefore,enrolling live‑stock in nutritional intervention strategies during gestation is effective for improving the body composition and meat quality of the offspring at harvest.These crucial early developmental stages include embryonic,fetal,and postnatal stages,which have stage‑specific effects on subsequent offspring development,body composition,and meat quality.This review summarizes contemporary research in the embryonic,fetal,and neonatal development,and the impacts of maternal nutrition on the early development and programming effects on the long‑term growth performance of livestock.Understanding the developmental and metabolic characteristics of skeletal muscle,adipose,and fibrotic tissues will facilitate the development of stage‑specific nutritional management strategies to optimize production efficiency and meat quality. 展开更多
关键词 Adipose tissue Embryonic development Fetal programming Fibro/adipogenic progenitors MARBLING Nutritional regulations Skeletal muscle
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REDD1介导子宫内过量糖皮质激素对棕色脂肪发育和产热功能的抑制 被引量:2
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作者 陈彦廷 胡云 +5 位作者 杨启元 刘向东 Jun Seok Son Jeanene M.de Avila 朱美君 杜敏 《Science Bulletin》 SCIE EI CSCD 2021年第5期478-489,M0004,共13页
母体应激导致子宫内糖皮质激素升高,增加后代能量代谢紊乱和肥胖风险.尽管棕色脂肪对于维护机体正常代谢和产热极其重要,但是子宫内过量糖皮质激素是否会影响后代棕色脂肪发育、线粒体解偶联产热及其调控机制,目前缺乏研究.本文通过对... 母体应激导致子宫内糖皮质激素升高,增加后代能量代谢紊乱和肥胖风险.尽管棕色脂肪对于维护机体正常代谢和产热极其重要,但是子宫内过量糖皮质激素是否会影响后代棕色脂肪发育、线粒体解偶联产热及其调控机制,目前缺乏研究.本文通过对怀孕老鼠注射与母体应激相同剂量的糖皮质激素,发现伴随着激活棕色脂肪中糖皮质激素受体响应蛋白REDD1,胎儿和新生儿不仅表现出棕色脂肪发育障碍、体温和存活率下降,而且棕色脂肪中Ppargc1a替代性启动子转录水平以及线粒体合成显著降低.在诱导胚胎成纤维细胞分化成棕色脂肪细胞过程中,通过敲降和过表达Redd1和Ppargc1a,进一步发现REDD1会抑制PKA-CREB蛋白磷酸化,降低了CREB蛋白与Ppargc1a替代性启动子cAMP调控元件的结合,导致棕色脂肪细胞分化、线粒体合成和解偶联产热功能受损.本研究揭示了在孕期过量糖皮质激素条件下, Redd1抑制Ppargc1a替代性启动子表达和棕色脂肪细胞分化,引起后代线粒体产热障碍和能量代谢紊乱,为药物研发以促进胎儿正常发育提供了新思路. 展开更多
关键词 棕色脂肪细胞 糖皮质激素 子宫内 发育障碍 蛋白磷酸化 胚胎成纤维细胞 药物研发 解偶联
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