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Roles for Drosophila mushroom body neurons in olfactory learning and memory

机译:果蝇蘑菇体神经元在嗅觉学习和记忆中的作用

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Olfactory learning assays in Drosophila have revealed that distinct brain structures known as mushroom bodies (MBs) are critical for the associative learning and memory of olfactory stimuli. However, the precise roles of the different neurons comprising the MBs are still under debate. The confusion surrounding the roles of the different neurons may be due, in part, to the use of different odors as conditioned Stimuli in previous studies. We investigated the requirements for the different MB neurons, specifically the alpha/beta versus the gamma neurons, and whether olfactory learning is supported by different Subsets of MB neurons irrespective of the odors used as conditioned stimuli. We expressed the rutabaga (rut)-encoded adenylyl cyclase in either the gamma or alpha/beta neurons and examined the effects on restoring olfactory associative learning and memory of rut mutant flies. We also expressed a temperature-sensitive shibire (shil transgene in these neuron sets and examined the effects of disrupting synaptic vesicle recycling oil Drosophila olfactory learning. Our results indicate that although we did not detect odor-pair-specific learning using GAL4 drivers that primarily express in gamma neurons, expression of the transgenes in a subset of alpha/beta neurons resulted in both odor-pair-specific rescue of the rut defect as well as odor-pair-specific disruption of learning using shi(tsl)..
机译:果蝇中的嗅觉学习分析表明,被称为蘑菇体(MBs)的独特大脑结构对于嗅觉刺激的联想学习和记忆至关重要。但是,组成MB的不同神经元的确切作用仍在争论中。围绕不同神经元作用的困惑可能部分是由于先前研究中使用了不同的气味作为条件刺激。我们调查了不同MB神经元的需求,特别是α/β与γ神经元的关系,以及嗅觉学习是否由MB神经元的不同子集支持,而与用作条件刺激的气味无关。我们在γ或α/β神经元中表达了大头菜(rut)编码的腺苷酸环化酶,并研究了对恢复rut突变果蝇的嗅觉联想学习和记忆的影响。我们还表达了对温度敏感的抑制物(在这些神经元组中为shil转基因,并研究了破坏突触小泡再循环油果蝇嗅觉学习的影响。我们的结果表明,尽管我们未检测到主要使用GAL4驱动程序的气味对特异性学习,在γ神经元中,转基因在α/β神经元子集中的表达既导致了气味对特异性的对车辙缺陷的挽救,也导致了气味对特异性的对shi(tsl)的学习的破坏。

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