生物
昼夜节律
光对昼夜节律的影响
光周期性
夹带(生物音乐学)
生物钟
视交叉上核
时钟
褪黑素
内分泌学
细胞生物学
内科学
句号(音乐)
神经科学
节奏
医学
植物
声学
物理
作者
Olivia Cox,Manuel A. Giannoni‐Guzmán,Jean‐Philippe Cartailler,Matthew A. Cottam,Douglas G. McMahon
标识
DOI:10.1177/07487304241265439
摘要
Seasonal daylength, or circadian photoperiod, is a pervasive environmental signal that profoundly influences physiology and behavior. In mammals, the central circadian clock resides in the suprachiasmatic nuclei (SCN) of the hypothalamus where it receives retinal input and synchronizes, or entrains, organismal physiology and behavior to the prevailing light cycle. The process of entrainment induces sustained plasticity in the SCN, but the molecular mechanisms underlying SCN plasticity are incompletely understood. Entrainment to different photoperiods persistently alters the timing, waveform, period, and light resetting properties of the SCN clock and its driven rhythms. To elucidate novel candidate genes for molecular mechanisms of photoperiod plasticity, we performed RNA sequencing on whole SCN dissected from mice raised in long (light:dark [LD] 16:8) and short (LD 8:16) photoperiods. Fewer rhythmic genes were detected in mice subjected to long photoperiod, and in general, the timing of gene expression rhythms was advanced 4-6 h. However, a few genes showed significant delays, including
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