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大西洋鲑(Salmo salar)生物钟基因表达的季节性变化。

Seasonal variations in clock-gene expression in Atlantic salmon (Salmo salar).

作者信息

Davie Andrew, Minghetti Matteo, Migaud Herve

机构信息

Institute of Aquaculture, University of Stirling, Stirling, UK.

出版信息

Chronobiol Int. 2009 Apr;26(3):379-95. doi: 10.1080/07420520902820947.

Abstract

In homeothermic vertebrates inhabiting temperate latitudes, it is clear that the seasonal changes in daylength are decoded by the master circadian clock, which through secondary messengers (like pineal melatonin secretion) entrains rhythmic physiology to local conditions. In contrast, the entrainment and neuroendocrine regulation of rhythmic physiology in temperate teleosts is not as clear, primarily due to the lack of understanding of the clock gene system in these species. In this study, we analyzed the diel expression of the clock-genes in brains of Atlantic salmon, a species that is both highly photoperiodic and displays robust clock-controlled behavior. Atlantic salmon parr were acclimated to either long-day (LD) or short-day (SD) photoperiods for one month and thereafter sampled at 4 h intervals over a 24 h cycle. Clock, Bmal1, Per2, and Cry2 were all actively expressed in salmon brain homogenates and, with the exception of Per2, all displayed rhythmic expression under SD photoperiods that parallels that reported in zebrafish. Interestingly, daylength significantly altered the mRNA expression of all clock genes studied, with Clock, Bmal1, and Per2 all becoming arrhythmic under the LD compared to SD photoperiod, while Cry2 expression was phase delayed under LD. It is thus proposed that the clock-gene system is actively expressed in Atlantic salmon, and, furthermore, as has been reported in homeothermic vertebrates, it appears that clock expression is daylength-dependent.

摘要

在栖息于温带地区的恒温脊椎动物中,很明显,昼夜长度的季节性变化由主生物钟解码,主生物钟通过二级信使(如松果体褪黑素分泌)使节律性生理适应当地环境。相比之下,温带硬骨鱼节律性生理的同步化和神经内分泌调节尚不清楚,主要是因为对这些物种的生物钟基因系统缺乏了解。在本研究中,我们分析了大西洋鲑鱼大脑中生物钟基因的昼夜表达情况,大西洋鲑鱼是一种对光周期高度敏感且表现出强烈生物钟控制行为的物种。大西洋鲑鱼苗适应长日照(LD)或短日照(SD)光周期一个月,然后在24小时周期内每隔4小时取样一次。Clock、Bmal1、Per2和Cry2在鲑鱼脑匀浆中均有活跃表达,除Per2外,在短日照光周期下均表现出节律性表达,这与斑马鱼中的报道相似。有趣的是,日照长度显著改变了所有研究的生物钟基因的mRNA表达,与短日照光周期相比,在长日照下Clock、Bmal1和Per2均变为无节律,而Cry2表达在长日照下相位延迟。因此,我们提出生物钟基因系统在大西洋鲑鱼中活跃表达,此外,正如在恒温脊椎动物中所报道的那样,生物钟表达似乎依赖于日照长度。

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