首页> 美国卫生研究院文献>The Journal of Neuroscience >Degeneracy and Neuromodulation among Thermosensory Neurons Contribute to Robust Thermosensory Behaviors in Caenorhabditis elegans
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Degeneracy and Neuromodulation among Thermosensory Neurons Contribute to Robust Thermosensory Behaviors in Caenorhabditis elegans

机译:热感神经元之间的简并性和神经调节有助于秀丽隐杆线虫的鲁棒热感行为。

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摘要

Animals must ensure that they can execute behaviors important for physiological homeostasis under constantly changing environmental conditions. The neural mechanisms that regulate this behavioral robustness are not well understood. The nematode Caenorhabditis elegans thermoregulates primarily via modulation of navigation behavior. Upon encountering temperatures higher than its cultivation temperature (Tc), C. elegans exhibits negative thermotaxis toward colder temperatures using a biased random walk strategy. We find that C. elegans exhibits robust negative thermotaxis bias under conditions of varying Tc and temperature ranges. By cell ablation and cell-specific rescue experiments, we show that the ASI chemosensory neurons are newly identified components of the thermosensory circuit, and that different combinations of ASI and the previously identified AFD and AWC thermosensory neurons are necessary and sufficient under different conditions to execute a negative thermotaxis strategy. ASI responds to temperature stimuli within a defined operating range defined by Tc, and signaling from AFD regulates the bounds of this operating range, suggesting that neuromodulation among thermosensory neurons maintains coherence of behavioral output. Our observations demonstrate that a negative thermotaxis navigational strategy can be generated via different combinations of thermosensory neurons acting degenerately, and emphasize the importance of defining context when analyzing neuronal contributions to a behavior.
机译:动物必须确保它们能够在不断变化的环境条件下执行对生理稳态具有重要意义的行为。调节这种行为鲁棒性的神经机制尚不十分清楚。线虫秀丽隐杆线虫主要通过调节导航行为来调节温度。遇到高于其培养温度(Tc)的温度时,秀丽隐杆线虫会使用偏向随机游走策略对较凉的温度表现出负热趋向。我们发现秀丽隐杆线虫在变化的Tc和温度范围的条件下表现出强大的负热出租车偏见。通过细胞消融和特定于细胞的抢救实验,我们表明ASI化学感应神经元是热感测电路的新发现组件,并且在不同条件下执行时,ASI与先前确定的AFD和AWC热感应神经元的不同组合是必要且充分的负面的出租车策略。 ASI在Tc定义的定义工作范围内对温度刺激做出响应,而AFD发出的信号调节该工作范围的界限,这表明热感神经元之间的神经调节可维持行为输出的连贯性。我们的观察结果表明,可以通过简并作用的热感觉神经元的不同组合来生成负热出租车导航策略,并强调在分析对行为的神经元贡献时定义上下文的重要性。

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