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Serotonergic Modulation Differentially Targets Distinct Network Elements within the Antennal Lobe of Drosophila melanogaster

机译:血清素能调制差异地针对果蝇黑腹触角内不同的网络元素。

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Neuromodulation confers flexibility to anatomically-restricted neural networks so that animals are able to properly respond to complex internal and external demands. However, determining the mechanisms underlying neuromodulation is challenging without knowledge of the functional class and spatial organization of neurons that express individual neuromodulatory receptors. Here, we describe the number and functional identities of neurons in the antennal lobe of Drosophila melanogaster that express each of the receptors for one such neuromodulator, serotonin (5-HT). Although 5-HT enhances odor-evoked responses of antennal lobe projection neurons (PNs) and local interneurons (LNs), the receptor basis for this enhancement is unknown. We used endogenous reporters of transcription and translation for each of the five 5-HT receptors (5-HTRs) to identify neurons, based on cell class and transmitter content, that express each receptor. We find that specific receptor types are expressed by distinct combinations of functional neuronal classes. For instance, the excitatory PNs express the excitatory 5-HTRs, while distinct classes of LNs each express different 5-HTRs. This study therefore provides a detailed atlas of 5-HT receptor expression within a well-characterized neural network, and enables future dissection of the role of serotonergic modulation of olfactory processing.
机译:神经调节可为解剖学上受限的神经网络提供灵活性,从而使动物能够适当地应对复杂的内部和外部需求。但是,在不了解表达单个神经调节受体的神经元的功能类别和空间组织的情况下,确定神经调节的基本机制是一项挑战。在这里,我们描述了果蝇果蝇触角中神经元的数量和功能,这些神经元表达一种神经调节剂血清素(5-HT)的每个受体。尽管5-HT增强了触角投射神经元(PNs)和局部中间神经元(LNs)的气味诱发反应,但这种增强的受体基础尚不清楚。我们使用了五个5-HT受体(5-HTR)中的每一个的转录和翻译的内源性报告子,根据细胞类型和递质含量,识别表达每种受体的神经元。我们发现特定受体类型由功能神经元类别的不同组合表达。例如,兴奋性PN表示兴奋性5-HTR,而不同类别的LN各自表示不同的5-HTR。因此,这项研究提供了一个功能完备的神经网络中5-HT受体表达的详细地图集,并使将来解剖嗅觉过程的血清素能调节作用成为可能。

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