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首页> 外文期刊>Invertebrate neuroscience >Circadian rhythm in melatonin release as a mechanism to reinforce the temporal organization of the circadian system in crayfish
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Circadian rhythm in melatonin release as a mechanism to reinforce the temporal organization of the circadian system in crayfish

机译:褪黑激素的昼夜节律作为一种机制,以加强小龙虾昼夜节约系统的临时组织

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摘要

Melatonin (MEL) is a conserved molecule with respect to its synthesis pathway and functions. In crayfish, MEL content in eyestalks (Ey) increases at night under the photoperiod, and this indoleamine synchronizes the circadian rhythm of electroretinogram amplitude, which is expressed by retinas and controlled by the cerebroid ganglion (CG). The aim of this study was to determine whether MEL content in eyestalks and CG or circulating MEL in hemolymph (He) follows a circadian rhythm under a freerunning condition; in addition, it was tested whether MEL might directly influence the spontaneous electrical activity of the CG. Crayfish were maintained under constant darkness and temperature, a condition suitable for studying the intrinsic properties of circadian systems. MEL was quantified in samples obtained from He, Ey, and CG by means of an enzyme-linked immunosorbent assay, and the effect of exogenous MEL on CG spontaneous activity was evaluated by electrophysiological recording. Variation of MEL content in He, Ey, and CG followed a circadian rhythm that peaked at the same circadian time (CT). In addition, a single dose of MEL injected into the crayfish at different CTs reduced the level of spontaneous electrical activity in the CG. Results suggest that the circadian increase in MEL content directly affects the CG, reducing its spontaneous electrical activity, and that MEL might act as a periodical signal to reinforce the organization of the circadian system in crayfish.
机译:褪黑激素(MEL)是一方于其合成途径和功能的保守分子。在小龙虾中,在光周期下,眼睛(EY)中的MEL含量在夜间增加,并且该indolemine同步电气图仪振幅的昼夜节律,这由视网膜和脑神经节(CG)控制。本研究的目的是确定眼睛和Cg中的蜂窝含量是否或在血淋巴中循环MEL(HE)沿着昼夜节律在赛事中遵循昼夜节律;此外,测试MEL是否可能直接影响CG的自发电活动。小龙虾在恒定的暗度和温度下保持,一种适用于研究昼夜节律系统的内在特性的条件。通过酶联免疫吸附测定法在从HE,EY和CG获得的样品中量化MEL,通过电生理记录评估外源MEL对CG自发活性的影响。 HE,EY和CG中的MEL含量的变异跟随昼夜节律,在同一昼夜节律(CT)上达到尖峰。此外,在不同CTS的小龙虾中注入小龙虾的单剂量的MEL降低了CG中的自发电活性水平。结果表明,MEL含量的昼夜含量直接影响CG,降低其自发性电力活动,并且MEL可以作为期刊信号,以加强小龙虾中昼夜节律系统的组织。

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