Kulkarni Nalini H, Yamamoto Akihiko H, Robinson Kellie O, Mackay Trudy F C, Anholt Robert R H
The W. M. Keck Center for Behavioral Biology, North Carolina State University, Raleigh, North Carolina 27695, USA.
Genetics. 2002 Aug;161(4):1507-16. doi: 10.1093/genetics/161.4.1507.
Previously, we generated P-element insert lines in Drosophila melanogaster with impaired olfactory behavior. One of these smell-impaired (smi) mutants, smi60E, contains a P[lArB] transposon in the second intron of the dsc1 gene near a nested gene encoding the L41 ribosomal protein. The dsc1 gene encodes an ion channel of unknown function homologous to the paralytic (para) sodium channel, which mediates neuronal excitability. Complementation tests between the smi60E mutant and several EP insert lines map the smell-impaired phenotype to the P[lArB] insertion site. Wild-type behavior is restored upon P-element excision. Evidence that reduction in DSC1 rather than in L41 expression is responsible for the smell-impaired phenotype comes from a phenotypic revertant in which imprecise P-element excision restores the DSC1 message while further reducing L41 expression. Behavioral assays show that a threefold decrease in DSC1 mRNA is accompanied by a threefold shift in the dose response for avoidance of the repellent odorant, benzaldehyde, toward higher odorant concentrations. In situ hybridization reveals widespread expression of the dsc1 gene in the major olfactory organs, the third antennal segment and the maxillary palps, and in the CNS. These results indicate that the DSC1 channel contributes to processing of olfactory information during the olfactory avoidance response.
此前,我们在黑腹果蝇中构建了嗅觉行为受损的P因子插入系。其中一个嗅觉受损(smi)突变体smi60E,在dsc1基因的第二个内含子中含有一个P[lArB]转座子,该内含子靠近一个编码L41核糖体蛋白的嵌套基因。dsc1基因编码一种功能未知的离子通道,与介导神经元兴奋性的麻痹(para)钠通道同源。smi60E突变体与几个EP插入系之间的互补试验将嗅觉受损表型定位到P[lArB]插入位点。P因子切除后恢复了野生型行为。DSC1表达降低而非L41表达降低导致嗅觉受损表型的证据来自一个表型回复体,其中不精确的P因子切除恢复了DSC1信息,同时进一步降低了L41表达。行为分析表明,DSC1 mRNA减少三倍伴随着对驱避气味剂苯甲醛的剂量反应向更高气味剂浓度方向发生三倍的偏移。原位杂交显示dsc1基因在主要嗅觉器官、第三触角节和上颌触须以及中枢神经系统中广泛表达。这些结果表明,DSC1通道在嗅觉回避反应过程中有助于嗅觉信息的处理。