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首页> 外文期刊>G3: Genes, Genomes, Genetics >A GAL80 Collection To Inhibit GAL4 Transgenes in Drosophila Olfactory Sensory Neurons
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A GAL80 Collection To Inhibit GAL4 Transgenes in Drosophila Olfactory Sensory Neurons

机译:GAL80集合,以抑制果蝇嗅觉感觉神经元中的GAL4转基因。

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摘要

Fruit flies recognize hundreds of ecologically relevant odors and respond appropriately to them. The complexity, redundancy and interconnectedness of the olfactory machinery complicate efforts to pinpoint the functional contributions of any component neuron or receptor to behavior. Some contributions can only be elucidated in flies that carry multiple mutations and transgenes, but the production of such flies is currently labor-intensive and time-consuming. Here, we describe a set of transgenic flies that express the Saccharomyces cerevisiae GAL80 in specific olfactory sensory neurons ( OrX-GAL80s ). The GAL80s effectively and specifically subtract the activities of GAL4-driven transgenes that impart anatomical and physiological phenotypes. OrX-GAL80s can allow researchers to efficiently activate only one or a few types of functional neurons in an otherwise nonfunctional olfactory background. Such experiments will improve our understanding of the mechanistic connections between odorant inputs and behavioral outputs at the resolution of only a few functional neurons.
机译:果蝇识别出数百种与生态相关的气味,并对它们做出适当的响应。嗅觉机器的复杂性,冗余性和相互联系使确定任何成分神经元或受体对行为的功能性贡献的努力变得复杂。只有在携带多个突变和转基因的果蝇中才能阐明某些贡献,但是目前此类果蝇的生产是劳动密集型且耗时的。在这里,我们描述了一组在特定的嗅觉感觉神经元(OrX-GAL80s)中表达酿酒酵母GAL80的转基因果蝇。 GAL80s有效且特异性地消除了由GAL4驱动的转基因的活动,这些转基因赋予了解剖学和生理学的表型。 OrX-GAL80可以使研究人员在非功能性嗅觉背景下仅有效激活一种或几种类型的功能性神经元。这样的实验将提高我们对气味输入和行为输出之间的机械联系的理解,而只有少数功能神经元可以分辨。

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