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犊牛期和青春期前后营养对公牛血清代谢激素、促性腺激素和睾酮浓度以及性发育的影响。

Effect of nutrition during calfhood and peripubertal period on serum metabolic hormones, gonadotropins and testosterone concentrations, and on sexual development in bulls.

作者信息

Brito Leonardo F C, Barth Albert D, Rawlings Norm C, Wilde Randal E, Crews Denny H, Mir Priya S, Kastelic John P

机构信息

Western College of Veterinary Medicine, University of Saskatchewan, 52 Campus Dr., Saskatoon, Sask., Canada S7H 4B5.

出版信息

Domest Anim Endocrinol. 2007 Jul;33(1):1-18. doi: 10.1016/j.domaniend.2006.04.001. Epub 2006 Apr 21.

Abstract

The objective of the present study was to characterize the effects of nutrition on circulating concentrations of metabolic hormones, gonadotropins, and testosterone during sexual development in bulls. Nutrition regulated the hypothalamus-pituitary-testes axis through effects on the GnRH pulse generator in the hypothalamus and through direct effects on the testes. Pituitary function (gonadotropin secretion after GnRH challenge) was not affected by nutrition. However, nutrition affected LH pulse frequency and basal LH concentration during the early gonadotropin rise (10-26 weeks of age). There were close temporal associations between changes in insulin-like growth factor-I (IGF-I) concentrations and changes in LH pulse frequency, suggesting a role for IGF-I in regulating the early gonadotropin rise in bulls. The peripubertal increase in testosterone concentration was delayed in bulls with lesser serum IGF-I concentrations (low nutrition), suggesting a role for IGF-I in regulating Leydig cell function. Serum IGF-I concentrations accounted for 72 and 67% of the variation in scrotal circumference and paired-testes volume, respectively (at any given age), indicating that IGF-I may regulate testicular growth. Bulls with a more sustained elevated LH pulse frequency during the early gonadotropin rise (high nutrition) had greater testicular mass at 70 weeks of age relative to the control group (medium nutrition), despite no differences in metabolic hormone concentrations after 26 weeks of age. Therefore, gonadotropin-independent mechanism regulating testicular growth might be dependent on previous gonadotropin milieu.

摘要

本研究的目的是描述营养对公牛性发育过程中循环代谢激素、促性腺激素和睾酮浓度的影响。营养通过对下丘脑GnRH脉冲发生器的作用以及对睾丸的直接作用来调节下丘脑-垂体-睾丸轴。垂体功能(GnRH刺激后的促性腺激素分泌)不受营养影响。然而,在促性腺激素早期升高阶段(10-26周龄),营养影响LH脉冲频率和基础LH浓度。胰岛素样生长因子-I(IGF-I)浓度变化与LH脉冲频率变化之间存在密切的时间关联,表明IGF-I在调节公牛促性腺激素早期升高过程中发挥作用。血清IGF-I浓度较低(营养不足)的公牛,青春期睾酮浓度的升高延迟,这表明IGF-I在调节睾丸间质细胞功能中发挥作用。血清IGF-I浓度分别占阴囊周长和双侧睾丸体积变化的72%和67%(在任何给定年龄),表明IGF-I可能调节睾丸生长。在促性腺激素早期升高阶段LH脉冲频率持续升高(营养充足)的公牛,在70周龄时相对于对照组(营养中等)睾丸质量更大,尽管26周龄后代谢激素浓度没有差异。因此,调节睾丸生长的不依赖促性腺激素的机制可能依赖于先前的促性腺激素环境。

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