Verde M A, Barriga-Montoya C, Fuentes-Pardo B
Facultad de Medicina, Departamento de Fisiología, Universidad Nacional Autónoma de México, México D.F. Mexico.
Comp Biochem Physiol A Mol Integr Physiol. 2007 Aug;147(4):983-92. doi: 10.1016/j.cbpa.2007.03.004. Epub 2007 Mar 12.
Photoreceptor cells have been identified as important structures in the organization of the circadian system responsible for the generation and expression of the electroretinogram (ERG) circadian rhythm. They are the structures where the circadian periodicity is expressed (effectors) and which transform information from external light signals to be conducted to the pacemaker in order to induce adjustments of the rhythm (synchronizers). After isolation, eyestalks perfused in a pigment dispersing hormone (PDH) solution, show significant changes in receptor potential (RP) amplitude and duration. Exogenous PDH injected into intact crayfish induces a migration of retinal shielding pigments to a light-adapted state. A single dose of PDH produces advances or delays in the circadian rhythm of response to light of visual photoreceptors. All these effects depend on the circadian phase of PDH application. Consequently, the determination of the action of exogenous PDH on photoreceptor cells proved to be very helpful in understanding some mechanisms underlying the circadian organization of crayfish.
光感受器细胞已被确定为昼夜节律系统组织中的重要结构,负责视网膜电图(ERG)昼夜节律的产生和表达。它们是昼夜节律周期性得以表达的结构(效应器),并且能将来自外部光信号的信息进行转换,传导至生物钟起搏器,以诱导节律调整(同步器)。分离后,在色素分散激素(PDH)溶液中灌注的眼柄,其感受器电位(RP)的幅度和持续时间会出现显著变化。向完整的小龙虾体内注射外源性PDH会诱导视网膜遮光色素迁移至光适应状态。单剂量的PDH会使视觉光感受器对光的昼夜节律提前或延迟。所有这些效应都取决于PDH施用的昼夜节律相位。因此,确定外源性PDH对光感受器细胞的作用,对于理解小龙虾昼夜节律组织的一些潜在机制非常有帮助。