特邀评论:生命早期营养对公牛青春期开始的分子和生理调控的影响

D. Kenny, K. Keogh, C. Byrne
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引用次数: 3

摘要

基因组选择的出现增加了人们对尽可能早地从遗传优良的年轻公牛身上获得可销售精液的兴趣。然而,用于商业用途的精液的可用时间将取决于这些年轻动物达到青春期和随后性成熟的年龄。在生命早期加强营养刺激下丘脑-垂体-睾丸轴的功能,通过代谢和神经内分泌信号之间复杂的生化相互作用介导,最终促进睾丸生长、类固醇生成、精子发生,并最终促进性成熟的早期发生。事实上,最近的证据表明,性早熟的时间是由公牛早期的促性腺激素上升(8-20周龄)决定的,这是由犊牛期的主要代谢状态决定的,即使在先前的营养不良之后通过饮食增加也是不可补偿的。然而,尽管如此,调节这些发育过程的精确神经元机制仍有待阐明。尽管早期营养明显影响性成熟过程,但很少有证据表明对青春期后精液特征有潜在影响。同样,以体外受精和早期胚胎发生来衡量的青春期后生育能力也不受生命早期营养状况的影响。目前,利用高通量核酸和蛋白质组学测序以及靶向免疫荧光结合系统生物学的基因网络分析,可以进一步了解营养如何介导神经内分泌和睾丸细胞过程之间的生化相互作用。这些信息可以用来识别潜在的基因组目标,作为基因组辅助育种计划的一部分,并促进战略营养方案的发展,以优化遗传精英年轻公牛的性成熟和随后的精液可用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Invited Review: Effect of early-life nutrition on the molecular and physiological regulation of puberty onset in the bull
ABSTRACT The advent of genomic selection has accentuated interest in procuring saleable semen from young genetically elite bulls as early in life as possible. However, the timing of availability of semen for commercial use will be determined by the age at which these young animals reach puberty and subsequent sexual maturity. Enhancing early-life nutrition stimulates the functionality of the hypothalamic–pituitary–testicular axis, mediated through complex biochemical interplay between metabolic and neuroendocrine signals and culminating in enhanced testicular growth, steroidogenesis, spermatogenesis, and ultimately, earlier onset of sexual maturation. Indeed, recent evidence indicates that the timing of sexual precocity, which is dictated by an early gonadotropin rise (8–20 wk of age) in the bull, is determined by prevailing metabolic status during calfhood and is not compensable even where prior undernutrition is followed by dietary augmentation. However, despite this, the precise neuronal mechanisms regulating these developmental processes remain to be elucidated for the bull. Although early-life nutrition clearly affects the sexual maturation process, there is little evidence for latent effects on postpubertal semen characteristics. Equally, postpubertal fertility, measured as in vitro fertilization and early embryogenesis, is not influenced by nutritional status during early life. Current efforts employing high throughput nucleic acid and proteomic sequencing and targeted immunofluorescence coupled with systems biology–based gene network analyses can provide further insight on how nutrition may mediate the biochemical interaction between neuroendocrine and testicular cellular processes. Such information can be harnessed to identify potential genomic targets as part of genomically assisted breeding programs as well as facilitate development of strategic nutritional regimens to optimize sexual maturation and subsequent semen availability from genetically elite young bulls.
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