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Serotonin is critical for rewarded olfactory short-term memory in Drosophila

机译:5-羟色胺对于果蝇获得性嗅觉的短期记忆至关重要

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The biogenic amines dopamine, octopamine, and serotonin are critical in establishing normal memories. A common view for the amines in insect memory performance has emerged in which dopamine and octopamine are largely responsible for aversive and appetitive memories. Examination of the function of serotonin begins to challenge the notion of one amine type per memory because altering serotonin function also reduces aversive olfactory memory and place memory levels. Could the function of serotonin be restricted to the aversive domain, suggesting a more specific dopamine/serotonin system interaction? The function of the serotonergic system in appetitive olfactory memory was examined. By targeting the tetanus toxin light chain (TNT) and the human inwardly rectifying potassium channel (Kir2.1) to the serotonin neurons with two different GAL4 driver combinations, the serotonergic system was inhibited. Additional use of the GAL80 ts1 system to control expression of transgenes to the adult stage of the life cycle addressed a potential developmental role of serotonin in appetitive memory. Reduction in appetitive olfactory memory performance in flies with these transgenic manipulations, without altering control behaviors, showed that the serotonergic system is also required for normal appetitive memory. Thus, serotonin appears to have a more general role in Drosophila memory, and implies an interaction with both the dopaminergic and octopaminergic systems.
机译:生物胺多巴胺,章鱼胺和血清素对建立正常记忆至关重要。胺在昆虫记忆性能中的普遍观点已经出现,其中多巴胺和章鱼胺主要负责厌恶和食欲性记忆。对5-羟色胺功能的检查开始挑战每个记忆中一种胺类型的概念,因为改变5-羟色胺功能还可以减少厌恶的嗅觉记忆并降低记忆水平。 5-羟色胺的功能是否可以限制在反感域内,表明更具体的多巴胺/ 5-羟色胺系统相互作用?检查了血清素能系统在嗅觉记忆中的功能。通过将破伤风毒素轻链(TNT)和人向内整流的钾通道(Kir2.1)靶向具有两种不同GAL4驱动程序组合的5-羟色胺神经元,抑制了血清素能系统。 GAL80 ts1系统在生命周期的成年阶段控制转基因表达的额外用途解决了5-羟色胺在食性记忆中的潜在发展作用。这些转基因操作在果蝇中降低了食欲的嗅觉记忆性能,而没有改变控制行为,这表明,正常的食欲记忆也需要血清素能系统。因此,5-羟色胺似乎在果蝇记忆中具有更普遍的作用,并暗示与多巴胺能和章鱼胺能系统的相互作用。

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