Pineal Research Lab, Department of Zoology, Banaras Hindu University, Varanasi 221005, India.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2013 Sep;199(9):763-73. doi: 10.1007/s00359-013-0836-4. Epub 2013 Jul 13.
The suprachiasmatic nucleus (SCN) plays a major role in photoperiodic regulation of seasonal functions by modulating the melatonin signal. To date no report exists regarding the role of the ambient photoperiod in the regulation of melatonin receptor MT1 and clock gene (PER1 and CRY1) expression in the SCN of any tropical rodent that experiences the least variation in the photoperiod. We noted the expression of MT1, PER1 and CRY1 in the SCN of a tropical squirrel, Funambulus pennanti, along with the plasma level of melatonin over 24 h during the reproductively active (summer) and inactive (winter) phases. The seasonal day length affected the peripheral melatonin, which was inversely related with the MT1 expression in the SCN. The timing for peak expression of PER1 was the same in both phases, while the decline in PER1 expression was delayed by 4 h during the inactive phase. The CRY1 peak advanced by 4 h during the active phase, while the interval between the peak and decline of CRY1 remained the same in both phases. It can be suggested that seasonally changing melatonin levels modulate MT1 expression dynamics in the SCN, altering its functional state, and gate SCN molecular "clock" gene profiles through changes in PER/CRY expression. Such a regulation is important for photo-physiological adaptation (reproduction/immunity) in seasonal breeders.
视交叉上核(SCN)通过调节褪黑素信号在光周期调节季节性功能中起主要作用。迄今为止,尚无关于环境光周期在调节经历光周期最小变化的任何热带啮齿动物 SCN 中褪黑素受体 MT1 和时钟基因(PER1 和 CRY1)表达的作用的报告。我们注意到热带松鼠 Funambulus pennanti 的 SCN 中 MT1、PER1 和 CRY1 的表达,以及在繁殖活跃(夏季)和不活跃(冬季)阶段的 24 小时内血浆褪黑素水平。季节性日长影响外周褪黑素,其与 SCN 中的 MT1 表达呈负相关。PER1 表达高峰的时间在两个阶段相同,而在不活跃阶段,PER1 表达的下降延迟了 4 小时。CRY1 高峰在活跃阶段提前了 4 小时,而 CRY1 峰值和下降之间的间隔在两个阶段保持不变。可以认为,季节性变化的褪黑素水平调节 SCN 中 MT1 表达的动态变化,改变其功能状态,并通过 PER/CRY 表达改变 SCN 分子“时钟”基因谱。这种调节对于季节性繁殖者的光生理适应(繁殖/免疫)很重要。