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具有单一功能感觉纤毛的线虫能够产生适当的神经元特异性行为输出。

Worms with a single functional sensory cilium generate proper neuron-specific behavioral output.

机构信息

Department of Biosciences and Nutrition, Karolinska Institute, Huddinge, Sweden.

出版信息

Genetics. 2009 Oct;183(2):595-605, 1SI-3SI. doi: 10.1534/genetics.109.105171. Epub 2009 Aug 3.

Abstract

Studying the development and mechanisms of sensory perception is challenging in organisms with complex neuronal networks. The worm Caenorhabditis elegans possesses a simple neuronal network of 302 neurons that includes 60 ciliated sensory neurons (CSNs) for detecting external sensory input. C. elegans is thus an excellent model in which to study sensory neuron development, function, and behavior. We have generated a genetic rescue system that allows in vivo analyses of isolated CSNs at both cellular and systemic levels. We used the RFX transcription factor DAF-19, a key regulator of ciliogenesis. Mutations in daf-19 result in the complete absence of all sensory cilia and thus of external sensory input. In daf-19 mutants, we used cell-specific rescue of DAF-19 function in selected neurons, thereby generating animals with single, fully functional CSNs. Otherwise and elsewhere these animals are completely devoid of any environmental input through cilia. We demonstrated the rescue of fully functional, single cilia using fluorescent markers, sensory behavioral assays, and calcium imaging. Our technique, functional rescue in single sensory cilia (FRISSC), can thus cell-autonomously and cell-specifically restore the function of single sensory neurons and their ability to respond to sensory input. FRISSC can be adapted to many different CSNs and thus constitutes an excellent tool for studying sensory behaviors, both in single animals and in populations of worms. FRISSC will be very useful for the molecular dissection of sensory perception in CSNs and for the analysis of the developmental aspects of ciliogenesis.

摘要

研究具有复杂神经网络的生物体的感觉感知的发展和机制具有挑战性。秀丽隐杆线虫具有一个简单的神经网络,其中包括 60 个纤毛感觉神经元 (CSN),用于检测外部感觉输入。因此,秀丽隐杆线虫是研究感觉神经元发育、功能和行为的极佳模型。我们已经生成了一种遗传拯救系统,允许在体内对细胞和系统水平的分离 CSN 进行分析。我们使用了 RFX 转录因子 DAF-19,它是纤毛发生的关键调节剂。daf-19 突变导致所有感觉纤毛完全缺失,因此也没有外部感觉输入。在 daf-19 突变体中,我们使用细胞特异性拯救选定神经元中的 DAF-19 功能,从而产生具有单个、完全功能 CSN 的动物。否则,这些动物在其他方面完全没有通过纤毛进行任何环境输入。我们使用荧光标记物、感觉行为测定和钙成像证明了具有完全功能的单个纤毛的拯救。我们的技术,即单个感觉纤毛的功能拯救 (FRISSC),可以自主和特异性地恢复单个感觉神经元的功能及其对感觉输入的响应能力。FRISSC 可以适应许多不同的 CSN,因此是研究单个动物和蠕虫群体的感觉行为的绝佳工具。FRISSC 将非常有助于 CSN 中感觉感知的分子剖析以及纤毛发生的发育方面的分析。

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