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胆碱介导的卵泡生长调节:类固醇合成、表观遗传学与卵母细胞发育之间的相互作用

Choline-Mediated Regulation of Follicular Growth: Interplay Between Steroid Synthesis, Epigenetics, and Oocyte Development.

作者信息

Liu Wenfeng, Zheng Xucheng, Yang Haiming, Wang Zhiyue

机构信息

College of Animal Science and Technology, Yangzhou University, Yangzhou 225009, China.

出版信息

Biology (Basel). 2025 Sep 8;14(9):1220. doi: 10.3390/biology14091220.

Abstract

This review article focuses on the role of choline in ovarian follicular development, regulated by nutrient-epigenetic interactions. Choline, a key feed additive, participates in DNA methylation and steroid hormone synthesis via its methyl donor function. However, its role in follicular hierarchy and maturation is unclear. Research lacks an understanding of species-specific choline metabolism, follicular fluid methylation dynamics, and toxicity thresholds. This study combines animal nutrition, epigenetics, and reproductive endocrinology. Using in vitro follicle culture models, metabolomics analysis, and cytochrome P450 family 19 subfamily A member 1 () methylation site screening, it reveals that choline regulates follicle hierarchy through the betaine-S-adenosylmethionine (SAM) pathway. Proper dietary choline reduces homocysteine (HCY) and boosts demethylation, enhancing theca cell estradiol (E) production and accelerating follicle maturation. In contrast, inadequate or excessive choline causes mesoderm-specific transcript () gene methylation abnormalities or trimethylamine N-oxide (TMAO)-mediated β-oxidation inhibition, increasing follicle atresia. A phenomenon of steroidogenic factor 1 () methylation has been observed in poultry, showing that choline affects offspring egg-laying persistence by altering the adrenal-ovarian axis DNA methylation imprint. Future research should establish a precise choline supply system based on the HCY/TMAO ratio in follicular fluid and the methylation map to improve animal reproduction.

摘要

这篇综述文章聚焦于胆碱在卵巢卵泡发育中的作用,其受营养-表观遗传相互作用调控。胆碱作为一种关键的饲料添加剂,通过其甲基供体功能参与DNA甲基化和类固醇激素合成。然而,其在卵泡分级和成熟中的作用尚不清楚。研究缺乏对物种特异性胆碱代谢、卵泡液甲基化动态以及毒性阈值的了解。本研究结合了动物营养、表观遗传学和生殖内分泌学。通过体外卵泡培养模型、代谢组学分析以及细胞色素P450家族19亚家族A成员1()甲基化位点筛选,揭示了胆碱通过甜菜碱-S-腺苷甲硫氨酸(SAM)途径调节卵泡分级。适当的日粮胆碱可降低同型半胱氨酸(HCY)并促进去甲基化,增强卵泡膜细胞雌二醇(E)的产生并加速卵泡成熟。相反,胆碱不足或过量会导致中胚层特异性转录本()基因甲基化异常或三甲胺N-氧化物(TMAO)介导的β-氧化抑制,增加卵泡闭锁。在家禽中观察到了类固醇生成因子1()甲基化现象,表明胆碱通过改变肾上腺-卵巢轴DNA甲基化印记影响后代产蛋持续性。未来的研究应基于卵泡液中HCY/TMAO比值和甲基化图谱建立精确的胆碱供应系统,以改善动物繁殖性能。

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