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光在鲤鱼松果体细胞感光蛋白和褪黑素产生系统的时间组织中的重要性。

Importance of light in temporal organization of photoreceptor proteins and melatonin-producing system in the pineal of carp Catla catla.

机构信息

Department of Zoology, Visva Bharati University, Santiniketan, India.

出版信息

Chronobiol Int. 2010 May;27(3):463-86. doi: 10.3109/07420521003666416.

Abstract

The importance of light in the temporal organization of photoreceptor proteins and melatonin-producing system has been investigated for the first time in the pineal of a tropical fish. In this study, an identical experimental paradigm was followed during the four distinct phases of an annual cycle in adult carps (Catla catla) maintained either under natural photoperiod (NP) or continuous illumination (LL) or darkness (DD) for 30 days. At the end of each experiment, the pineal from fish in each experimental group was collected either at 06:00, 12:00, 18:00, or 24:00 in a daily cycle and assessed by Western blot analysis for pineal rod-like opsin, alpha-transducin, and AANAT. The same animals were also used for measurement of serum melatonin levels, and the serum as well as intra-pineal Ca(++) levels at each timepoint. The study revealed a daily rhythmicity with a peak at 12:00 h and nadir at 24:00 h in the band intensity of pineal rod-like opsin and alpha-transducin in NP fish, while the band intensities of these photo-pigment proteins remained high under LL and low under DD, irrespective of clock hour during the 24 h cycle. The band intensity of pineal AANAT, levels of serum melatonin, and both serum Ca(++) and intra-pineal Ca(++) were maximum at 24:00 h and minimum at 12:00h in NP fish, and they were significantly lower under LL and higher under DD at each point of study. The results showed loss of daily rhythm in each studied variable in both LL and DD carps, suggesting that their circadian organization is dependent on the external light-dark conditions, rather than an endogenous circadian oscillator in the pineal.

摘要

首次在热带鱼的松果体中研究了光在光感受器蛋白和褪黑素产生系统的时间组织中的重要性。在这项研究中,成年鲤鱼(Catla catla)在自然光照周期(NP)或连续光照(LL)或黑暗(DD)下分别维持 30 天的四个不同年度周期阶段中,遵循相同的实验方案。在每个实验结束时,从每个实验组的鱼的松果体中收集 06:00、12:00、18:00 或 24:00 时的每日周期,并用 Western blot 分析测定松果体棒状视蛋白、α-转导蛋白和 AANAT。同样的动物也用于测量血清褪黑素水平,以及每个时间点的血清和松果体内钙(++)水平。研究表明,在 NP 鱼中,松果体棒状视蛋白和α-转导蛋白的带强度具有每日节律性,峰值出现在 12:00 时,谷值出现在 24:00 时,而在 LL 下,这些光色素蛋白的带强度保持较高,在 DD 下则保持较低,而与 24 小时周期中的时钟小时无关。血清褪黑素水平、血清和松果体内钙(++)的水平以及松果体 AANAT 的带强度在 NP 鱼中在 24:00 时最高,在 12:00 时最低,在 LL 和 DD 下的每个研究点均显著较低。结果表明,在 LL 和 DD 鲤鱼中,每个研究变量的昼夜节律均丧失,表明它们的生物钟组织依赖于外部明暗条件,而不是松果体内的内源性生物钟振荡器。

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