School of Life Sciences, Qufu Normal University, 273165 Qufu, Shandong, China.
School of Life Sciences, Qufu Normal University, 273165 Qufu, Shandong, China.
Comp Biochem Physiol A Mol Integr Physiol. 2024 Nov;297:111705. doi: 10.1016/j.cbpa.2024.111705. Epub 2024 Jul 20.
Daurian ground squirrels (Spermophilus dauricus) experience various stress states during winter hibernation, but the impact on testicular function remains unclear. This study focused on the effects of changes in testicular autophagy, apoptosis, and mitochondrial homeostasis signaling pathways at various stages on the testes of Daurian ground squirrels. Results indicated that: (1) During winter hibernation, there was a significant increase in seminiferous tubule diameter and seminiferous epithelium thickness compared to summer. Spermatogonia number and testosterone, follicle-stimulating hormone (FSH), and luteinizing hormone (LH) levels were higher during inter-bout arousal, suggesting that the testes remained stable during hibernation. (2) An increased number of mitochondria with intact morphology were observed during hibernation, indicating that mitochondrial homeostasis may contribute to testicular stability. (3) DNA fragmentation was evident in the testes during the hibernation and inter-bout arousal stages, with the highest level of caspase3 enzyme activity detected during inter-bout arousal, together with elevated levels of Bax/Bcl-2 and Lc3 II/Lc3 I, indicating an up-regulation of apoptosis and autophagy signaling pathways during hibernation. (4) The abundance of DRP1, MFF, OPA1, and MFN2 proteins was increased, suggesting an up-regulation of mitochondrial dynamics-related pathways. Overall, testicular autophagy, apoptosis, and mitochondrial homeostasis-related signaling pathways were notably active in the extreme winter environment. The well-maintained mitochondrial morphology may favor the production of reproductive hormones and support stable testicular morphology.
东北松鼠(Spermophilus dauricus)在冬季冬眠期间会经历各种应激状态,但睾丸功能的影响仍不清楚。本研究聚焦于东北松鼠睾丸在不同阶段自噬、凋亡和线粒体动态平衡信号通路变化对睾丸的影响。结果表明:(1)与夏季相比,冬季冬眠时曲细精管直径和生精上皮厚度显著增加。在觉醒间歇期,精原细胞数量和睾酮、促卵泡激素(FSH)和促黄体生成素(LH)水平升高,提示冬眠期间睾丸保持稳定。(2)冬眠期间观察到大量形态完整的线粒体增多,提示线粒体动态平衡可能有助于睾丸稳定。(3)冬眠和觉醒间歇期睾丸出现 DNA 片段化,在觉醒间歇期检测到 caspase3 酶活性最高,同时 Bax/Bcl-2 和 Lc3 II/Lc3 I 水平升高,提示冬眠期间凋亡和自噬信号通路被上调。(4)DRP1、MFF、OPA1 和 MFN2 蛋白丰度增加,提示与线粒体动力学相关的途径被上调。总之,在极端冬季环境下,睾丸自噬、凋亡和线粒体动态平衡相关信号通路显著活跃。维持良好的线粒体形态可能有利于生殖激素的产生,并支持稳定的睾丸形态。