不同海拔藏绵羊附睾各区段组织形态及精子成熟相关基因的表达
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作者单位:

甘肃农业大学动物科学技术学院 兰州 730070

作者简介:

张雅茹,女,硕士研究生;研究方向:动物遗传育种与繁殖;E-mail:3369941973@qq.com。

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中图分类号:

Q955

基金项目:

国家自然科学基金项目(No. 32160792);


Tissue Morphology and Expression of Genes Related to Sperm Maturation in Epididymis of Tibetan Sheep at Different Altitudes
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College of Animal Science and Technology, Gansu Agricultural University, Lanzhou 730070, China

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    摘要:

    本文旨在探讨藏绵羊(Ovis arise)附睾对高原环境的适应性机理。采集海拔约3 500 m的青海省海晏县和海拔约2 300 m的青海省循化县两个海拔的藏绵羊附睾组织,通过附睾精子提取、石蜡组织切片、荧光定量PCR、蛋白免疫印迹和免疫组化方法,对藏绵羊附睾尾的精液品质、附睾组织学特征及影响精子成熟的基因PRDX2、STARGALNTL5的表达与分布进行比较研究。结果显示,高海拔藏绵羊附睾中精液品质略有降低,但均符合受精标准;高海拔藏绵羊的附睾管腔内径较小,附睾尾的柱状上皮较厚;PRDX2蛋白在高海拔藏绵羊中的表达量下调,且主要定位于附睾管的上皮细胞;STAR蛋白在高海拔藏绵羊中的表达量上调,且主要定位于附睾管上皮细胞的主细胞中;GALNTL5蛋白在高海拔藏绵羊中的表达量上调,且其主要定位于附睾主细胞和基细胞中。本研究认为,不同海拔藏绵羊附睾组织学特征和精液品质的差异可能是对不同高寒低氧环境的适应性改变。推测PRDX2蛋白的表达特征可能是低氧环境下附睾内环境中氧含量降低所致,STAR蛋白可调控合成更多雄激素来维持高海拔低氧环境下附睾管腔内环境的稳定,而GALNTL5蛋白能够在高寒低氧环境下通过调节合成更多糖蛋白来维持附睾中精子的成熟。

    Abstract:

    [Objectives] This article aims to explore the adaptive mechanism of Tibetan Sheep Ovis arise epididymis in high-altitude environments. [Methods] The epididymal tissue and semen samples were collected from Tibetan Sheep in Haiyan County (at an altitude of approximately 3 500 m) and Xunhua County (at an altitude of approximately 2 300 m) in Qinghai Province. Sperm extraction, paraffin embedding and tissue sectioning, fluorescence quantitative PCR, Western blotting, and immunohistochemistry were employed to compare semen quality, epididymal histology, and expression and distribution of sperm maturation- associated genes PRDX2, STAR, and GALNTL5. The 2ΔΔCt method was adopted to calculate the relative mRNA level, and Western blot results were analyzed by Image J. The data were analyzed in SPSS 25.0. Independent sample t-test was performed to compare gene and protein expression levels between two altitudes, and one-way analysis of variance and multiple comparisons were performed among three different tissues. The results are expressed as mean ± SD. P < 0.05 indicates a significant difference. [Results] The semen quality of high-altitude Tibetan Sheep slightly decreased, while meeting the fertilization criteria (Table 3). High-altitude Tibetan Sheep had a smaller inner diameter of the lumen and thicker columnar epithelium at the tail of the epididymis (Table 4). PRDX2 was mainly expressed in epididymal epithelial cells, and its expression level was down-regulated in the epididymis of high-altitude Tibetan Sheep. STAR mainly existed in the principal cells of the epididymal epithelium, with up-regulated expression in the epididymis of high-altitude Tibetan Sheep. GALNTL5 was mainly located in the main and basal cells of the epididymis, and its expression level in the epididymis was up-regulated in high-altitude Tibetan Sheep (Figs. 2﹣4). [Conclusion] The differences in histology of epididymal tissue and semen quality between Tibetan Sheep at different altitudes are adaptive changes to high-altitude and low-oxygen environments. The down-regulated expression of PRDX2 as an antioxidant for sperm in the epididymis of high-altitude Tibetan Sheep is hypothesized to be due to the decrease in oxygen content in the epididymal environment under low-oxygen conditions. The upregulated expression of STAR in the epididymis of high-altitude Tibetan Sheep indicates that this protein promotes the synthesis of androgens to maintain the stability of the epididymal lumen environment under high-altitude and low-oxygen conditions. GALNTL5 as a starting enzyme for catalyzing the synthesis of glycoproteins is upregulated in the epididymis of high-altitude Tibetan Sheep, indicating that this protein promotes the synthesis of glycoproteins in the high-altitude and low-oxygen environment to maintain sperm maturation in the epididymis.

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张雅茹,尉斌艳,姚博元,李伊建,王欣荣. 2025.不同海拔藏绵羊附睾各区段组织形态及精子成熟相关基因的表达. 动物学杂志, 60(4): 584-596.

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  • 收稿日期:2024-10-09
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  • 在线发布日期: 2025-08-13
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