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Current source density mapping of antennal sensory selectivity reveals conserved olfactory systems between tephritids and Drosophila

机译:天线感觉选择性的电流源密度图揭示了特福列虫和果蝇之间保守的嗅觉系统

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Ecological specialization of insects involves the functional and morphological reshaping of olfactory systems. Little is known about the degree to which insect sensitivity to odorant compounds is conserved between genera, tribes, or families. Here we compared the olfactory systems of six tephritid fruit fly species spanning two tribes and the distantly related Drosophila melanogaster at molecular, functional, and morphological levels. Olfaction in these flies is mediated by a set of olfactory receptors (ORs) expressed in different functional classes of neurons located in distinct antennal regions. We performed a phylogenetic analysis that revealed both family-specific OR genes and putative orthologous OR genes between tephritids and Drosophila. With respect to function, we then used a current source density (CSD) analysis to map activity across antennae. Functional maps mirrored the intrinsic structure of antennae observed with scanning electron microscopy. Together, the results revealed partial conservation of the olfactory systems between tephritids and Drosophila. We also demonstrate that the mapping of olfactory responses is necessary to decipher antennal sensory selectivity to olfactory compounds. CSD analysis can be easily applied to map antennae of other species and therefore enables the rapid deriving of olfactory maps and the reconstructing of the target organisms’ history of evolution.
机译:昆虫的生态专业化涉及嗅觉系统的功能和形态重塑。关于属,部族或科之间昆虫对气味化合物的敏感性保持的程度知之甚少。在这里,我们在分子,功能和形态学水平上比较了跨越两个部落的六个拟南芥果蝇的嗅觉系统和远缘的果蝇。这些果蝇的嗅觉由位于不同触角区域的神经元的不同功能类别中表达的一组嗅觉受体(OR)介导。我们进行了系统发育分析,揭示了特发性和果蝇之间的家族特异性OR基因和假定的直系同源OR基因。关于功能,我们然后使用电流源密度(CSD)分析来绘制天线活动。功能图反映了用扫描电子显微镜观察到的触角的固有结构。在一起,结果揭示了在特霉和果蝇之间的嗅觉系统的部分保守。我们还证明,嗅觉反应的映射对于破译嗅觉化合物对触角的感觉选择性是必要的。 CSD分析可以轻松地应用于其他物种的触角,因此可以快速推导嗅觉图并重建目标生物的进化史。

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