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Segregation of odor identity and intensity during odor discrimination in Drosophila mushroom body

机译:果蝇蘑菇体内气味识别过程中气味识别和强度的分离

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摘要

Molecular and cellular studies have begun to unravel a neurobiological basis of olfactory processing, which appears conserved among vertebrate and invertebrate species. Studies have shown clearly that experience-dependent coding of odor identity occurs in "associative" olfactory centers (the piriform cortex in mammals and the mushroom body [MB] in insects). What remains unclear, however, is whether associative centers also mediate innate (spontaneous) odor discrimination and how ongoing experience modifies odor discrimination. Here we show in naive flies that Galphaq-mediated signaling in MB modulates spontaneous discrimination of odor identity but not odor intensity (concentration). In contrast, experience-dependent modification (conditioning) of both odor identity and intensity occurs in MB exclusively via Galphas-mediated signaling. Our data suggest that spontaneous responses to odor identity and odor intensity discrimination are segregated at the MB level, and neural activity from MB further modulates olfactory processing by experience-independent Galphaq-dependent encoding of odor identity and by experience-induced Galphas-dependent encoding of odor intensity and identity.
机译:分子和细胞研究已开始揭示嗅觉加工的神经生物学基础,嗅觉加工在脊椎动物和无脊椎动物中似乎是保守的。研究清楚地表明,在“关联的”嗅觉中心(哺乳动物的梨状皮质和昆虫的蘑菇体[MB])中,经历依赖的气味识别编码。但是,尚不清楚的是,联合中心是否也可以调解先天(自发)的气味歧视,以及持续不断的经验如何改变气味的歧视。在这里,我们在天真苍蝇中显示,MB中Galphaq介导的信号传导可自发区分气味识别,但不会调节气味强度(浓度)。相反,仅通过Galphas介导的信号,MB中会发生气味同一性和强度的依赖于经验的修饰(调节)。我们的数据表明,对气味同一性和气味强度区分的自发响应在MB级别上是隔离的,并且MB的神经活动通过与经验无关的Galphaq依赖性编码和与经验有关的Galphas依赖性编码来进一步调节嗅觉处理气味强度和特性。

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    Xia S.; Tully T.;

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  • 年度 2007
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