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增强青春期前的营养可上调荷斯坦公牛青春期后的睾丸和精子中线粒体功能。

Enhanced pre-pubertal nutrition upregulates mitochondrial function in testes and sperm of post-pubertal Holstein bulls.

机构信息

Department of Production Animal Health, Faculty of Veterinary Medicine, University of Calgary, Calgary, AB, T2N 4N1, Canada.

Department of Biological Sciences, University of Lethbridge, Lethbridge, AB, TIK 3M4, Canada.

出版信息

Sci Rep. 2020 Feb 10;10(1):2235. doi: 10.1038/s41598-020-59067-3.

Abstract

Supplemental energy and protein during calf-hood (2-30 wk) in dairy bulls hastened puberty (1 mo), upregulated steroid biosynthesis, concentrations of reproductive hormones and Sertoli cell maturation, with larger testes and greater sperm production (25%) in mature bulls. The objective was to evaluate effects of feeding high (20.0% crude protein [CP], 67.9% total digestible nutrients [TDN]), control/medium (17.0% CP, 66.0% TDN) and low (12.2% CP, 62.9% TDN) diets from 2 to 30 wk on post-pubertal testes of Holstein bulls. Based on RNA sequencing, 497 and 2961 genes were differentially expressed (P < 0.1) in high- vs low- and high- vs medium-diet groups, respectively. According to KEGG analysis, oxidative phosphorylation and ribosome pathways were upregulated in high- vs medium- and low-diet groups, with majority of upregulated genes encoding for essential subunits of complex I, III, IV and V of OXYPHOS pathway. In addition, mitochondrial translation, mitotic nuclear division and cell division were enriched in high- vs medium-diet groups. Consistent with these results, a greater percentage of sperm from high-diet bulls were progressively motile and had normal mitochondrial function compared to medium-diet sperm (P < 0.1). Thus, enhanced early life nutrition upregulated mitochondrial function in testes and sperm of post-pubertal Holstein bulls.

摘要

在奶牛育成期(2-30 周龄),给犊牛补充能量和蛋白质可促进其性成熟(1 个月),上调类固醇生物合成、生殖激素浓度和支持细胞成熟,使成熟公牛的睾丸更大、精子生成量增加(25%)。本研究旨在评估从 2 至 30 周龄给荷斯坦公牛饲喂高(20.0%粗蛋白[CP]、67.9%总可消化养分[TDN])、中(17.0%CP、66.0%TDN)和低(12.2%CP、62.9%TDN)饲粮对公牛青春期后睾丸的影响。基于 RNA 测序,高、低饲粮组分别有 497 个和 2961 个基因差异表达(P < 0.1)。KEGG 分析表明,高饲粮组与中、低饲粮组相比,氧化磷酸化和核糖体途径被上调,其中大多数上调基因编码 OXYPHOS 途径的必需亚基 I、III、IV 和 V。此外,高饲粮组还富集了线粒体翻译、有丝分裂核分裂和细胞分裂。与这些结果一致的是,与中饲粮精子相比,高饲粮公牛的精子具有更高比例的渐进运动和正常的线粒体功能(P < 0.1)。因此,早期生活营养的增强可上调青春期后荷斯坦公牛睾丸和精子的线粒体功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/300a/7010748/acdf4d2a45b1/41598_2020_59067_Fig1_HTML.jpg

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