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Dopamine Signalling in Mushroom Bodies Regulates Temperature-Preference Behaviour in Drosophila

机译:蘑菇体内的多巴胺信号传导调节果蝇的温度偏好行为。

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摘要

The ability to respond to environmental temperature variation is essential for survival in animals. Flies show robust temperature-preference behaviour (TPB) to find optimal temperatures. Recently, we have shown that Drosophila mushroom body (MB) functions as a center controlling TPB. However, neuromodulators that control the TPB in MB remain unknown. To identify the functions of dopamine in TPB, we have conducted various genetic studies in Drosophila. Inhibition of dopamine biosynthesis by genetic mutations or treatment with chemical inhibitors caused flies to prefer temperatures colder than normal. We also found that dopaminergic neurons are involved in TPB regulation, as the targeted inactivation of dopaminergic neurons by expression of a potassium channel (Kir2.1) induced flies with the loss of cold avoidance. Consistently, the mutant flies for dopamine receptor gene (DopR) also showed a cold temperature preference, which was rescued by MB–specific expression of DopR. Based on these results, we concluded that dopamine in MB is a key component in the homeostatic temperature control of Drosophila. The current findings will provide important bases to understand the logic of thermosensation and temperature preference decision in Drosophila.
机译:应对环境温度变化的能力对于动物的生存至关重要。苍蝇表现出强烈的温度偏好行为(TPB),可以找到最佳温度。最近,我们已经证明果蝇蘑菇体(MB)充当了控制TPB的中枢。然而,控制MB中TPB的神经调节剂仍然未知。为了确定多巴胺在TPB中的功能,我们在果蝇中进行了多种遗传研究。基因突变对多巴胺生物合成的抑制作用或化学抑制剂的处理使果蝇偏爱比正常温度更冷的温度。我们还发现,多巴胺能神经元参与了TPB调节,因为通过钾通道(Kir2.1)诱导的苍蝇表达而使多巴胺能神经元靶向失活,从而避免了避免感冒。一致地,多巴胺受体基因(DopR)的突变体也表现出寒冷的温度偏好,这是通过MB特异性的DopR表达挽救的。根据这些结果,我们得出结论,MB中的多巴胺是果蝇体内稳态温度控制的关键组成部分。目前的发现将为了解果蝇中热感和温度偏好决定的逻辑提供重要依据。

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