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Multimodal stimulus coding by a gustatory sensory neuron in Drosophila larvae

机译:果蝇幼虫味觉感觉神经元的多模式刺激编码。

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摘要

Accurate perception of taste information is crucial for animal survival. In adult Drosophila, gustatory receptor neurons (GRNs) perceive chemical stimuli of one specific gustatory modality associated with a stereotyped behavioural response, such as aversion or attraction. We show that GRNs of Drosophila larvae employ a surprisingly different mode of gustatory information coding. Using a novel method for calcium imaging in the larval gustatory system, we identify a multimodal GRN that responds to chemicals of different taste modalities with opposing valence, such as sweet sucrose and bitter denatonium, reliant on different sensory receptors. This multimodal neuron is essential for bitter compound avoidance, and its artificial activation is sufficient to mediate aversion. However, the neuron is also essential for the integration of taste blends. Our findings support a model for taste coding in larvae, in which distinct receptor proteins mediate different responses within the same, multimodal GRN.
机译:正确理解味觉信息对于动物生存至关重要。在成人果蝇中,味觉受体神经元(GRN)感知一种特定的味觉形态的化学刺激,该化学刺激与定型的行为反应(例如反感或吸引力)相关。我们显示果蝇幼虫的GRNs采用令人惊讶的味觉信息编码模式。使用一种在幼虫味觉系统中进行钙成像的新方法,我们确定了一种多峰GRN,该多峰GRN对具有不同价态的不同味觉形式的化学物质(例如甜蔗糖和苦味地那铵)做出了响应,它们依赖于不同的感觉受体。这种多峰神经元是避免苦味化合物必不可少的,其人工激活足以介导厌恶。但是,神经元对于味觉混合的整合也是必不可少的。我们的发现支持了幼虫中味觉编码的模型,其中不同的受体蛋白在相同的多峰GRN中介导不同的响应。

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