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Identification of motor neurons and a mechanosensitive sensory neuron in the defecation circuitry of Drosophila larvae

机译:果蝇幼虫排便回路中运动神经元和机械敏感感觉神经元的鉴定

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摘要

Defecation allows the body to eliminate waste, an essential step in food processing for animal survival. In contrast to the extensive studies of feeding, its obligate counterpart, defecation, has received much less attention until recently. In this study, we report our characterizations of the defecation behavior of Drosophila larvae and its neural basis. Drosophila larvae display defecation cycles of stereotypic frequency, involving sequential contraction of hindgut and anal sphincter. The defecation behavior requires two groups of motor neurons that innervate hindgut and anal sphincter, respectively, and can excite gut muscles directly. These two groups of motor neurons fire sequentially with the same periodicity as the defecation behavior, as revealed by in vivo Ca2+ imaging. Moreover, we identified a single mechanosensitive sensory neuron that innervates the anal slit and senses the opening of the intestine terminus. This anus sensory neuron relies on the TRP channel NOMPC but not on INACTIVE, NANCHUNG, or PIEZO for mechanotransduction.>DOI:
机译:排便可使身体消除浪费,这是食品加工中动物赖以生存的重要步骤。与广泛的喂养研究相反,直到最近,排便的专一性受到的关注较少。在这项研究中,我们报告了果蝇幼虫排便行为的表征及其神经基础。果蝇幼虫显示排便周期的刻板频率,涉及后肠和肛门括约肌的顺序收缩。排便行为需要两组分别支配后肠和肛门括约肌的运动神经元,并且可以直接刺激肠道肌肉。体内Ca 2 + 成像显示,这两组运动神经元以与排便行为相同的周期性顺序发射。此外,我们确定了单个机械敏感的感觉神经元,它可以支配肛门切口并感测肠末端的开放。这种肛门感觉神经元依靠TRP通道NOMPC进行机械转导,而不依靠INACTIVE,NANCHUNG或PIEZO。> DOI:

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