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种马繁殖季节每日精子产量增加是由精原细胞数量增加所致。

Increased daily sperm production in the breeding season of stallions is explained by an elevated population of spermatogonia.

作者信息

Johnson L

出版信息

Biol Reprod. 1985 Jun;32(5):1181-90. doi: 10.1095/biolreprod32.5.1181.

Abstract

Seasonal variation in number of spermatogonia and germ cell degeneration was evaluated to determine which mechanism might explain seasonal differences in daily sperm production per testis (DSP/testis) or per g parenchyma (DSP/g) in stallions. Comparing 28 adult stallions (4 to 20 yr old) in each of the nonbreeding (December-January) and breeding (June-July) seasons, the population of type A spermatogonia was more than two times greater (P less than 0.01) in the breeding season. While the number of type B spermatogonia also was elevated (P less than 0.01) in the breeding season, the number of type B spermatogonia/type A spermatogonium was similar (P greater than 0.05) between seasons. Daily sperm production/testis based on each cell type from type B spermatogonia to spermatids with elongated nuclei was lower (P less than 0.01) in the nonbreeding season. Based on DSP/g, there was significant degeneration during the meiotic divisions in the nonbreeding season. However, this reduction in potential spermatozoan production was not significant (P greater than 0.05) when considering DSP/testis. Significant germ cell degeneration also occurred in the breeding season between type B spermatogonia and primary spermatocytes. However, the type A spermatogonial population was sufficiently elevated to override this degeneration and to explain elevated production of sperm in the breeding season of stallions.

摘要

为确定哪种机制可能解释种马每侧睾丸每日精子生成量(DSP/睾丸)或每克实质组织每日精子生成量(DSP/克)的季节性差异,对精原细胞数量和生殖细胞变性的季节性变化进行了评估。比较28匹成年种马(4至20岁)在非繁殖季节(12月至1月)和繁殖季节(6月至7月)的情况,繁殖季节A型精原细胞数量比非繁殖季节多两倍以上(P<0.01)。虽然繁殖季节B型精原细胞数量也有所增加(P<0.01),但两季B型精原细胞与A型精原细胞的数量之比相似(P>0.05)。基于从B型精原细胞到具有伸长细胞核的精子细胞的每种细胞类型,非繁殖季节每侧睾丸的每日精子生成量较低(P<0.01)。基于DSP/克,非繁殖季节减数分裂期间存在明显的细胞变性。然而,考虑DSP/睾丸时,潜在精子生成量的这种减少并不显著(P>0.05)。繁殖季节B型精原细胞与初级精母细胞之间也发生了明显的生殖细胞变性。然而,A型精原细胞数量的充分增加足以克服这种变性,并解释种马繁殖季节精子产量的增加。

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