College of Life Sciences, Qufu Normal University, Qufu, Shandong, China.
Yiheyuan School, Yiyuan, Shandong, China.
PLoS One. 2020 Nov 30;15(11):e0241561. doi: 10.1371/journal.pone.0241561. eCollection 2020.
Photoperiod is an important factor of mammalian seasonal rhythm. Here, we studied morphological differences in the Harderian gland (HG), a vital photosensitive organ, in male striped dwarf hamsters (Cricetulus barabensis) under different photoperiods (short photoperiod, SP; moderate photoperiod, MP; long photoperiod, LP), and investigated the underlying molecular mechanisms related to these morphological differences. Results showed that carcass weight and HG weight were lower under SP and LP conditions. There was an inverse correlation between blood melatonin levels and photoperiod in the order SP > MP > LP. Protein expression of hydroxyindole-O-methyltransferase (HIOMT), a MT synthesis-related enzyme, was highest in the SP group. Protein expression of bax/bcl2 showed no significant differences, indicating that the level of apoptosis remained stable. Protein expression of LC3II/LC3I was higher in the SP group than that in the MP group. Furthermore, comparison of changes in the HG ultrastructure demonstrated autolysosome formation in the LP, suggesting the lowest autophagy level in under MP. Furthermore, the protein expression levels of ATP synthase and mitochondrial fission factor were highest in the MP group, whereas citrate synthase, dynamin-related protein1, and fission1 remained unchanged in the three groups. The change trends of ATP synthase and citrate synthase activity were similar to that of protein expression among the three groups. In summary, the up-regulation of autophagy under SP and LP may be a primary factor leading to loss of HG weight and reduced mitochondrial energy supply capacity.
光周期是哺乳动物季节性节律的一个重要因素。在这里,我们研究了不同光周期(短光周期、中光周期、长光周期)下雄性条纹侏儒仓鼠(Cricetulus barabensis)哈德腺(HG)这种重要感光器官的形态差异,并探讨了与这些形态差异相关的潜在分子机制。结果表明,SP 和 LP 条件下的胴体重和 HG 体重较低。血液褪黑素水平与光周期呈逆相关,顺序为 SP>MP>LP。MT 合成相关酶羟吲哚-O-甲基转移酶(HIOMT)的蛋白表达在 SP 组最高。bax/bcl2 的蛋白表达无显著差异,表明细胞凋亡水平保持稳定。SP 组的 LC3II/LC3I 蛋白表达高于 MP 组。此外,HG 超微结构变化的比较表明 LP 组自噬溶酶体形成,提示 MP 下的自噬水平最低。此外,MP 组的 ATP 合酶和线粒体分裂因子蛋白表达水平最高,而三组中柠檬酸合酶、动力相关蛋白 1 和分裂 1 保持不变。三组中 ATP 合酶和柠檬酸合酶活性的变化趋势与蛋白表达相似。总之,SP 和 LP 下自噬的上调可能是导致 HG 体重减轻和线粒体能量供应能力降低的主要因素。