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Serotonin transporter dependent modulation of food-seeking behavior

机译:血清素转运蛋白依赖于寻求食物行为的调节

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The olfactory pathway integrates the odor information required to generate correct behavioral responses. To address how changes of serotonin signaling in two contralaterally projecting, serotonin-immunoreactive deutocerebral neurons impacts key odorant attraction in Drosophila melanogaster , we selectively alter serotonin signaling using the serotonin transporter with mutated serotonin binding sites in these neurons and analyzed the consequence on odorant-guided food seeking. The expression of the mutated serotonin transporter selectively changed the odorant attraction in an odorant-specific manner. The shift in attraction was not influenced by more up-stream serotonergic mechanisms mediating behavioral inhibition. The expression of the mutated serotonin transporter in CSD neurons did not influence other behaviors associated with food seeking such as olfactory learning and memory or food consumption. We provide evidence that the change in the attraction by serotonin transporter function might be achieved by increased serotonin signaling and by different serotonin receptors. The 5-HT1B receptor positively regulated the attraction to low and negatively regulated the attraction to high concentrations of acetic acid. In contrast, 5-HT1A and 5-HT2A receptors negatively regulated the attraction in projection neurons to high acetic acid concentrations. These results provide insights into how serotonin signaling in two serotonergic neurons selectively regulates the behavioral response to key odorants during food seeking.
机译:嗅觉途径集成了产生正确行为响应所需的气味信息。为了解决两个对侧投影中的血清素信号传导的变化,血清素 - 免疫反应性脱节性的嗜酸盐蛋白酶对果蝇的关键气味吸引力影响,我们选择性地使用这些神经元中的血清素转运蛋白转运蛋白转运蛋白转运蛋白传导,并在这些神经元中进行了突变的血清素结合位点并分析了对气味引导的结果寻求食物。突变的血清素转运蛋白的表达选择性地以气味特异性的方式改变了气味吸引力。吸引力的转变不受介导行为抑制的更多血流血清致命机制的影响。 CSD神经元中突变的血清素转运蛋白的表达不会影响与食物寻求相关的其他行为,例如嗅觉学习和记忆或食物消费。我们提供了证据表明,通过增加血清素信号传导和不同的血酮受体,可以通过增加血清素转运蛋白转运蛋白功能的变化。 5-HT1B受体积极地调节了对低浓度乙酸的吸引力的吸引力。相反,5-HT1A和5-HT2A受体对高乙酸浓度的投影神经元的吸引力负调节。这些结果提供了探讨了两种血清奈奈神经元中的血清素信号传导如何选择性地调节对食物寻求期间关键气味的行为应答。

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