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无脊椎动物视觉的当前进展:并列眼感光细胞膜片钳研究的见解

Current advances in invertebrate vision: insights from patch-clamp studies of photoreceptors in apposition eyes.

作者信息

Frolov Roman V

机构信息

Department of Physics, Division of Biophysics, University of Oulu, Oulun Yliopisto, Finland

出版信息

J Neurophysiol. 2016 Aug 1;116(2):709-23. doi: 10.1152/jn.00288.2016. Epub 2016 Jun 1.

Abstract

Traditional electrophysiological research on invertebrate photoreceptors has been conducted in vivo, using intracellular recordings from intact compound eyes. The only exception used to be Drosophila melanogaster, which was exhaustively studied by both intracellular recording and patch-clamp methods. Recently, several patch-clamp studies have provided new information on the biophysical properties of photoreceptors of diverse insect species, having both apposition and neural superposition eyes, in the contexts of visual ecology, behavior, and ontogenesis. Here, I discuss these and other relevant results, emphasizing differences between fruit flies and other species, between photoreceptors of diurnal and nocturnal insects, properties of distinct functional types of photoreceptors, postembryonic developmental changes, and relationships between voltage-gated potassium channels and visual ecology.

摘要

传统上,对无脊椎动物光感受器的电生理研究是在体内进行的,采用对完整复眼进行细胞内记录的方法。唯一的例外曾经是黑腹果蝇,它通过细胞内记录和膜片钳方法进行了详尽的研究。最近,一些膜片钳研究在视觉生态学、行为学和个体发育的背景下,提供了关于具有并列眼和神经重叠眼的多种昆虫物种光感受器生物物理特性的新信息。在此,我将讨论这些及其他相关结果,重点强调果蝇与其他物种之间的差异、昼行性和夜行性昆虫光感受器之间的差异、不同功能类型光感受器的特性、胚胎后发育变化以及电压门控钾通道与视觉生态学之间的关系。

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