首页> 外文期刊>International Journal of Andrology >Spermatogonial morphology, kinetics and niches in hamsters exposed to short- and long-photoperiod.
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Spermatogonial morphology, kinetics and niches in hamsters exposed to short- and long-photoperiod.

机译:暴露于短和长光周期的仓鼠的精原形态,动力学和生态位。

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Previous studies have shown that under short photoperiod exposure spermatogenesis in golden hamster regresses leading to sexual inactivity. It is known that this regression is related to changes in somatic and germ cells (spermatocytes and spermatids). However, the photoperiod effects on spermatogonial biology have not been studied in detail yet. In this regard, this study was carried out to investigate the morphology, kinetics and niches of different spermatogonial types in golden hamsters under long- and short-photoperiod. Six spermatogonial generations such as type A undifferentiated (A(und)), type A differentiating (A(1), A(2), A(3)), intermediate (In) and type B spermatogonia were characterized, and were morphologically similar irrespective of the photoperiod exposure. The short photoperiod was inhibitory to A(und) spermatogonia and preleptotene but had no effect on the number of differentiating (A(1) to B) spermatogonia. In golden hamsters exposed to stimulatory-photoperiod, the interstitial components were positioned mainly in triangular areas around the seminiferous tubules and, in this situation, the A(und) spermatogonia were clearly positioned in niches (p < 0.05) in all stages studied. On the other hand, during the inhibitory-photoperiod where the seminiferous tubules have smaller diameter, the interstitial components were more homogenously distributed and the triangular areas were not clearly observed. In this case, the niches were identified only at stage VII (p < 0.05), although there was a trend of being positioned in niches area in all the stages studied. Thus, these findings suggest that the A(und) spermatogonia location in the seminiferous epithelium and the niche position are directly related to the position of the interstitial components.
机译:先前的研究表明,在短暂的光周期暴露下,金黄仓鼠中的生精能力退化,导致性交失活。众所周知,这种消退与体细胞和生殖细胞(精母细胞和精子细胞)的变化有关。然而,尚未详细研究光周期对精原生物学的影响。因此,本研究旨在研究长期和短期光照条件下金仓鼠不同精原类型的形态,动力学和生态位。表征了六个精原细胞世代,例如A型未分化(A(und)),A型分化(A(1),A(2),A(3)),中间(In)和B型精原细胞,它们在形态上相似不论光周期如何曝光。短暂的光周期抑制A(und)精原细胞和前瘦素,但对分化(A(1)至B)精原细胞的数量没有影响。在暴露于刺激性光周期的金仓鼠中,间质成分主要位于生精小管周围的三角形区域中,在这种情况下,在所有研究阶段中,精原细胞A(und)都明显位于适当位置(p <0.05)。另一方面,在抑制光周期中,生精小管的直径较小,间隙成分更均匀地分布并且没有清楚地观察到三角形区域。在这种情况下,尽管在所研究的所有阶段中都有位于小生境区域的趋势,但仅在第七阶段才发现了小生境。因此,这些发现表明生精上皮中的A(und)精原细胞位置和小生境位置直接与间质成分的位置相关。

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