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Intracellular regulation of the insect chemoreceptor complex impacts odour localization in flying insects

机译:昆虫化学感受器的细胞内调节复合物在飞虫中的气味定位

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摘要

Flying insects are well known for airborne odour tracking and have evolved diverse chemoreceptors. While ionotropic receptors (IRs) are found across protostomes, insect odorant receptors (ORs) have only been identified in winged insects. We therefore hypothesized that the unique signal transduction of ORs offers an advantage for odour localization in flight. Using Drosophila, we found expression and increased activity of the intracellular signalling protein PKC in antennal sensilla following odour stimulation. Odour stimulation also enhanced phosphorylation of theORco-receptorOrco in vitro, while site-directed mutation of Orco or mutations in PKC subtypes reduced the sensitivity and dynamic range of OR-expressing neurons in vivo, but not IR-expressing neurons. We ultimately show that these mutations reduce competence for odour localization of flies in flight.We conclude that intracellular regulation of OR sensitivity is necessary for efficient odour localization, which suggests a mechanistic advantage for the evolution of the OR complex in flying insects.
机译:飞行昆虫以空气中的气味追踪而闻名,并且已经进化出多种化学感受器。虽然在整个原形体中发现了离子型受体(IRs),但仅在有翅昆虫中才发现了昆虫气味受体(OR)。因此,我们假设OR的独特信号转导为飞行中的气味定位提供了优势。使用果蝇,我们发现气味刺激后触角感官细胞内信号蛋白PKC的表达和活性增加。气味刺激还增强了体外ORco-受体Orco的磷酸化,而Orco的定点突变或PKC亚型突变降低了体内表达OR的神经元的敏感性和动态范围,但不降低了表达IR的神经元的敏感性和动态范围。我们最终表明这些突变降低了飞行中果蝇气味定位的能力。我们得出结论,细胞内对OR敏感性的调节对于有效的气味定位是必要的,这提示了飞行昆虫中OR复合物进化的机械优势。

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