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饲养条件和短期光照对果蝇光感受器信号传导性能的影响。

Impact of rearing conditions and short-term light exposure on signaling performance in Drosophila photoreceptors.

作者信息

Wolfram Verena, Juusola Mikko

机构信息

Physiological Laboratory, University of Cambridge, Cambridge CB2 3EG, UK.

出版信息

J Neurophysiol. 2004 Sep;92(3):1918-27. doi: 10.1152/jn.00201.2004. Epub 2004 May 19.

Abstract

The amount of visual information an animal can extract from its environment is ultimately limited by the signaling performance of its photoreceptors. To maximize their performance, photoreceptors must be able to accommodate large changes in input caused by the dynamic properties of the visual environment and the animal's own behavior. This is likely to require a range of adaptation mechanisms operating over multiple time scales. Using intracellular recordings, we investigated the effects of developmental light rearing conditions and the effects of 2 h light or dark exposure prior the experiment on the signaling performance of adult Drosophila melanogaster photoreceptors. We show that light-rearing amplifies photoreceptors' voltage responses to light contrast changes by >or =20% and accelerates them by 3 ms. We argue that these differences mostly reflect changes in the timing of the early phototransduction reactions, some of which are persistent. However, being born and nurtured in certain lighting conditions does not set an ultimate limit for the signaling performance of Drosophila photoreceptors. Two-hour light exposure prior to the experiment can improve the information capacity of dark-reared photoreceptors close to the values of light-reared photoreceptors by reducing voltage noise. This effect may originate from plastic changes in the utilization of phototransduction proteins and ion channels.

摘要

动物从其环境中提取视觉信息的量最终受到其光感受器信号传导性能的限制。为了使其性能最大化,光感受器必须能够适应由视觉环境的动态特性和动物自身行为引起的输入的巨大变化。这可能需要一系列在多个时间尺度上起作用的适应机制。我们使用细胞内记录,研究了发育过程中的光照饲养条件以及实验前2小时光照或黑暗暴露对成年黑腹果蝇光感受器信号传导性能的影响。我们发现,光照饲养使光感受器对光对比度变化的电压反应放大了≥20%,并使其加速了3毫秒。我们认为,这些差异主要反映了早期光转导反应时间的变化,其中一些变化是持久的。然而,在特定光照条件下出生和培育并不会为果蝇光感受器的信号传导性能设定最终极限。实验前两小时的光照暴露可以通过降低电压噪声,使暗饲养光感受器的信息容量接近光照饲养光感受器的值。这种效应可能源于光转导蛋白和离子通道利用方面的可塑性变化。

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