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Lunar Phase-Dependent Expression of Cryptochrome and a Photoperiodic Mechanism for Lunar Phase-Recognition in a Reef Fish, Goldlined Spinefoot

机译:暗色相的月相依赖性表达和金鱼尾足礁鱼的月相识别的光周期机制

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摘要

Lunar cycle-associated physiology has been found in a wide variety of organisms. Recent study has revealed that mRNA levels of Cryptochrome (Cry), one of the circadian clock genes, were significantly higher on a full moon night than on a new moon night in coral, implying the involvement of a photoreception system in the lunar-synchronized spawning. To better establish the generalities surrounding such a mechanism and explore the underlying molecular mechanism, we focused on the relationship between lunar phase, Cry gene expression, and the spawning behavior in a lunar-synchronized spawner, the goldlined spinefoot (Siganus guttatus), and we identified two kinds of Cry genes in this animal. Their mRNA levels showed lunar cycle-dependent expression in the medial part of the brain (mesencephalon and diencephalon) peaking at the first quarter moon. Since this lunar phase coincided with the reproductive phase of the goldlined spinefoot, Cry gene expression was considered a state variable in the lunar phase recognition system. Based on the expression profiles of SgCrys together with the moonlight's pattern of timing and duration during its nightly lunar cycle, we have further speculated on a model of lunar phase recognition for reproductive control in the goldlined spinefoot, which integrates both moonlight and circadian signals in a manner similar to photoperiodic response.
机译:在各种各样的生物中都发现了与月球周期相关的生理。最近的研究表明,昼夜节律基因之一的隐花色素(Crychrome)的mRNA水平在珊瑚的满月之夜明显高于新月的夜晚,这意味着光接收系统参与了月球同步产卵。为了更好地建立围绕这种机制的一般性并探索潜在的分子机制,我们集中在月相,Cry基因表达与月球同步产卵者金线背足(Siganus guttatus)的产卵行为之间的关系,我们在该动物中鉴定出两种Cry基因。它们的mRNA水平显示出在大脑中部(中脑和间脑)的月球周期依赖性表达在第一个四分之一月达到高峰。由于这个月相与金线脊柱足的生殖期相吻合,因此Cry基因表达被认为是月相识别系统中的状态变量。基于SgCrys的表达特征以及月球在夜间夜间周期的时间和持续时间模式,我们进一步推测了月相识别模型,用于在金线脊柱足中进行生殖控制,该模型将月光和昼夜节律信号整合到了类似于光周期反应的方式。

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