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不同的视觉通路介导果蝇幼虫的光回避和生物钟驯化。

Distinct visual pathways mediate Drosophila larval light avoidance and circadian clock entrainment.

机构信息

Department of Biology, Center for Developmental Genetics, New York University, New York, New York 10003-6688, USA.

出版信息

J Neurosci. 2011 Apr 27;31(17):6527-34. doi: 10.1523/JNEUROSCI.6165-10.2011.

Abstract

Visual organs perceive environmental stimuli required for rapid initiation of behaviors and can also entrain the circadian clock. The larval eye of Drosophila is capable of both functions. Each eye contains only 12 photoreceptors (PRs), which can be subdivided into two subtypes. Four PRs express blue-sensitive rhodopsin5 (rh5) and eight express green-sensitive rhodopsin6 (rh6). We found that either PR-subtype is sufficient to entrain the molecular clock by light, while only the Rh5-PR subtype is essential for light avoidance. Acetylcholine released from PRs confers both functions. Both subtypes of larval PRs innervate the main circadian pacemaker neurons of the larva, the neuropeptide PDF (pigment-dispersing factor)-expressing lateral neurons (LNs), providing sensory input to control circadian rhythms. However, we show that PDF-expressing LNs are dispensable for light avoidance, and a distinct set of three clock neurons is required. Thus we have identified distinct sensory and central circuitry regulating light avoidance behavior and clock entrainment. Our findings provide insights into the coding of sensory information for distinct behavioral functions and the underlying molecular and neuronal circuitry.

摘要

视觉器官感知环境刺激,这些刺激是快速启动行为所必需的,同时也能调节生物钟。果蝇的幼虫眼具有这两种功能。每个眼睛只包含 12 个光感受器 (PR),可以细分为两种亚型。四种 PR 表达对蓝光敏感的视蛋白 5 (rh5),八种表达对绿光敏感的视蛋白 6 (rh6)。我们发现,任何一种 PR 亚型都足以通过光来调节生物钟,而只有 Rh5-PR 亚型对于光回避是必需的。PR 释放的乙酰胆碱赋予这两种功能。幼虫 PR 的两种亚型都支配幼虫的主要生物钟起搏器神经元,即表达神经肽 PDF(色素分散因子)的侧神经元 (LN),为控制生物钟节律提供感觉输入。然而,我们表明,表达 PDF 的 LN 对于光回避是可有可无的,需要一组特定的三个时钟神经元。因此,我们已经确定了调节光回避行为和时钟调节的不同感觉和中枢回路。我们的发现为不同行为功能的感觉信息编码以及潜在的分子和神经元回路提供了深入了解。

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