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首页> 外文期刊>Neuron >Heterosynaptic Plasticity Underlies Aversive Olfactory Learning in Drosophila
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Heterosynaptic Plasticity Underlies Aversive Olfactory Learning in Drosophila

机译:异突触可塑性是果蝇厌恶嗅觉的基础。

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摘要

Although associative learning has been localized to specific brain areas in many animals, identifying the underlying synaptic processes in vivo has been difficult. Here, we provide the first demonstration of long-term synaptic plasticity at the output site of the Drosophila mushroom body. Pairing an odor with activation of specific dopamine neurons induces both learning and odor-specific synaptic depression. The plasticity induction strictly depends on the temporal order of the two stimuli, replicating the logical requirement for associative learning. Furthermore, we reveal that dopamine action is confined to and distinct across different anatomical compartments of the mushroom body lobes. Finally, we find that overlap between sparse representations of different odors defines both stimulus specificity of the plasticity and generalizability of associative memories across odors. Thus, the plasticity we find here not only manifests important features of associative learning but also provides general insights into how a sparse sensory code is read out.
机译:尽管联想学习已被局限在许多动物的特定大脑区域,但在体内识别潜在的突触过程却很困难。在这里,我们提供了果蝇蘑菇体输出部位长期突触可塑性的首次证明。将气味与特定多巴胺神经元的激活配对会诱导学习和气味特异性突触抑制。可塑性归纳严格地取决于两个刺激的时间顺序,从而复制了联想学习的逻​​辑要求。此外,我们揭示了多巴胺的作用仅限于蘑菇体叶的不同解剖部分,并且在不同的解剖部分之间是不同的。最后,我们发现不同气味的稀疏表示之间的重叠既定义了可塑性的刺激特异性,也定义了跨气味的联想记忆的泛化性。因此,我们在这里发现的可塑性不仅体现了联想学习的重要特征,而且还提供了如何读取稀疏感官代码的一般见解。

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