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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Mapping Neurotransmitter Identity in the Whole-Mount Drosophila Brain Using Multiplex High-Throughput Fluorescence in Situ Hybridization
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Mapping Neurotransmitter Identity in the Whole-Mount Drosophila Brain Using Multiplex High-Throughput Fluorescence in Situ Hybridization

机译:使用多重高通量荧光原位杂交在全果蝇大脑中映射神经递质的身份

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Identifying the neurotransmitters used by specific neurons is a critical step in understanding the function of neural circuits. However, methods for the consistent and efficient detection of neurotransmitter markers remain limited. Fluorescence in situ hybridization (FISH) enables direct labeling of type-specific mRNA in neurons. Recent advances in FISH allow this technique to be carried out in intact tissue samples such as whole-mount Drosophila melanogaster brains. Here, we present a FISH platform for high-throughput detection of eight common neurotransmitter phenotypes in Drosophila brains. We greatly increase FISH throughput by processing samples mounted on coverslips and optimizing fluorophore choice for each probe to facilitate multiplexing. As application examples, we demonstrate cases of neurotransmitter coexpression, reveal neurotransmitter phenotypes of specific cell types, and explore the onset of neurotransmitter expression in the developing optic lobe. Beyond neurotransmitter markers, our protocols can in principle be used for large-scale FISH detection of any mRNA in whole-mount fly brains.
机译:识别特定神经元使用的神经递质是理解神经回路功能的关键步骤。然而,用于一致和有效地检测神经递质标志物的方法仍然受到限制。荧光原位杂交(FISH)可以直接标记神经元中特定类型的mRNA。 FISH的最新进展使该技术可以在完整的组织样品(如整个果蝇的果蝇大脑)中进行。在这里,我们提出了一个用于高通量检测果蝇大脑中八种常见神经递质表型的FISH平台。通过处理安装在盖玻片上的样品并优化每个探针的荧光团选择以利于多路复用,我们大大提高了FISH的通量。作为应用实例,我们演示了神经递质共表达的情况,揭示了特定细胞类型的神经递质表型,并探讨了神经递质在发育中的视叶中的表达。除了神经递质标记物外,我们的协议原则上也可用于大规模FISH检测整座苍蝇大脑中的任何mRNA。

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