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A novel thermosensitive escape behavior in Drosophila larvae

机译:果蝇幼虫的新型热敏逃逸行为。

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摘要

We describe a novel thermosensitive escape behavior in Drosophila larvae and a simple assay to accurately define the response temperature. When a larva is placed in a droplet of water that is subsequently heated, a stereotypical escape response is robustly elicited at 29 degrees C. Larvae defective for the painless TRP receptor, or blocked in the function of class IV multi-dendritic sensory dendrites respond to this stimulus at reproducibly higher temperature (34 degrees C). The escape response has novel behavioral components and a lower temperature threshold in comparison with the responses to touch with a hot needle. Furthermore the assay minimizes operator bias that is present in current tests of thermosensitive nociception and generates a precise determination of temperature at the point of response. This response is highly reproducible and directly applicable to genetic and neural circuit analysis of a simple escape behavior.
机译:我们描述了果蝇幼虫中的新型热敏逃逸行为和一种简单的测定法,以准确定义响应温度。当将幼虫放在水滴中并随后加热时,在29°C强烈引发定型逃逸反应。幼虫对无痛TRP受体有缺陷,或在IV类多树突状感觉树突的功能中受阻在较高的温度(34摄氏度)下刺激。与用热针触摸的响应相比,逃逸响应具有新颖的行为成分和较低的温度阈值。此外,该测定使在热敏伤害感受的当前测试中存在的操作员偏差最小化,并在响应点生成温度的精确确定。该响应具有很高的可重复性,可直接应用于简单逃逸行为的遗传和神经回路分析。

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