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一种新型视蛋白影响果蝇的光依赖日常活动模式。

A New Rhodopsin Influences Light-dependent Daily Activity Patterns of Fruit Flies.

机构信息

Neurobiology and Genetics, Theodor Boveri Institute, Biocenter, University of Würzburg, Würzburg, Germany.

1. Oxitec Ltd, 71 Innovation Drive, Milton Park, Abingdon, OX14 4RQ, UK.

出版信息

J Biol Rhythms. 2017 Oct;32(5):406-422. doi: 10.1177/0748730417721826. Epub 2017 Aug 25.

Abstract

Rhodopsin 7 ( Rh7), a new invertebrate Rhodopsin gene, was discovered in the genome of Drosophila melanogaster in 2000, but its function has remained elusive. We generated an Rh7 null mutant ( Rh7) by P element-mediated mutagenesis and found that an absence of Rh7 had significant effects on fly activity patterns during light-dark (LD) cycles: Rh7 mutants exhibited less morning activity and a longer siesta than wild-type controls. Consistent with these results, we found that Rh7 appears to be expressed in a few dorsal clock neurons that have been previously implicated in the control of the siesta. We also found putative Rh7 expression in R8 photoreceptor cells of the compound eyes and in the Hofbauer-Buchner eyelets, which have been shown to control the precise timing of locomotor activity. The absence of Rh7 alone impaired neither the flies' responses to constant white light nor the ability to follow phase shifts of white LD cycles. However, in blue light (470 nm), Rh7 mutants needed significantly longer to synchronize than wild-type controls, suggesting that Rh7 is a blue light-sensitive photopigment with a minor contribution to circadian clock synchronization. In combination with mutants that lacked additionally cryptochrome-based and/or eye-based light input to the circadian clock, the absence of Rh7 provoked slightly stronger effects.

摘要

视紫红质 7(Rh7)是 2000 年在黑腹果蝇基因组中发现的一种新的无脊椎动物视紫红质基因,但它的功能仍不明确。我们通过 P 元素介导的诱变产生了一个 Rh7 缺失突变体(Rh7),发现 Rh7 的缺失对果蝇在明暗(LD)周期中的活动模式有显著影响:Rh7 突变体比野生型对照表现出更少的早晨活动和更长的午睡。与这些结果一致,我们发现 Rh7 似乎在一些已被证明参与控制午睡的背侧生物钟神经元中表达。我们还在复眼的 R8 光感受器细胞和 Hofbauer-Buchner 小眼点中发现了推定的 Rh7 表达,这些小眼点已被证明可以控制运动活动的精确时间。单独缺失 Rh7 既不会损害果蝇对恒定白光的反应能力,也不会损害它们跟随白光 LD 周期相位移动的能力。然而,在蓝光(470nm)下,Rh7 突变体比野生型对照需要更长的时间来同步,这表明 Rh7 是一种对蓝光敏感的视色素,对生物钟同步有较小的贡献。与缺乏额外的隐花色素和/或眼睛对生物钟的光输入的突变体结合使用时,缺失 Rh7 会引起稍强的影响。

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