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An efficient method for recombineering GAL4 and QF drivers

机译:重新组合GAL4和QF驱动程序的有效方法

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Neural circuit mapping and manipulation are facilitated by independent control of gene expression in pre- and post-synaptic neurons. The GAL4/UAS and Q binary transcription systems have the potential to provide this capability. Of particular use in neural circuit mapping would be GAL4 and QF drivers specific for neurotransmitters and neurotransmitter receptors. Recently available Drosophila genomic BAC libraries make recombineering large genes including those specific for neurotransmitters and neurotransmitter receptors feasible. Here the functionality of cassettes that allow efficient recombineering of GAL4 and QF drivers based on kanamycin selection is demonstrated in Drosophila. The cassettes should, however, be generalizable for recombineering in other species.
机译:突触前和突触后神经元中基因表达的独立控制可促进神经回路定位和操纵。 GAL4 / UAS和Q二进制转录系统具有提供此功能的潜力。在神经回路作图中特别有用的是针对神经递质和神经递质受体的GAL4和QF驱动程序。最近可用的果蝇基因组BAC库使重组大型基因(包括对神经递质和神经递质受体具有特异性的基因)成为可能。在果蝇中证明了基于卡那霉素选择的允许GAL4和QF驱动程序有效重组的盒式磁带功能。但是,该盒应该是通用的,以便与其他物种重组。

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