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Genetic and neural mechanisms that inhibit drosophila from mating with other species

机译:抑制果蝇与其他物种交配的遗传和神经机制

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Genetically hard-wired neural mechanisms must enforce behavioral reproductive isolation because interspecies courtship is rare even in sexually na?ve animals of most species. We find that the chemoreceptor Gr32a inhibits male D. melanogaster from courting diverse fruit fly species. Gr32a recognizes nonvolatile aversive cues present on these reproductively dead-end targets, and activity of Gr32a neurons is necessary and sufficient to inhibit interspecies courtship. Male-specific Fruitless (Fru~M), a master regulator of courtship, also inhibits interspecies courtship. Gr32a and Fru ~M are not coexpressed, but Fru~M neurons contact Gr32a neurons, suggesting that these genes influence a shared neural circuit that inhibits interspecies courtship. Gr32a and Fru~M also suppress within-species intermale courtship, but we show that distinct mechanisms preclude sexual displays toward conspecific males and other species. Although this chemosensory pathway does not inhibit interspecies mating in D. melanogaster females, similar mechanisms appear to inhibit this behavior in many other male drosophilids. PaperClip
机译:遗传上紧密联系的神经机制必须加强行为生殖隔离,因为即使在大多数物种的幼稚动物中,种间求偶也很少。我们发现化学感受器Gr32a抑制雄性D. melanogaster寻求各种果蝇。 Gr32a识别存在于这些生殖死目标上的非易失性厌恶线索,并且Gr32a神经元的活性对于抑制种间求偶是必要且充分的。男性特有的无果(Fru〜M)是求爱的主要调节者,它也抑制种间求爱。 Gr32a和Fru〜M不是共表达的,但是Fru〜M神经元会与Gr32a神经元接触,这表明这些基因影响了抑制种间求偶的共享神经回路。 Gr32a和Fru〜M也抑制种间的男性间求偶,但我们显示出不同的机制排除了对同种雄性和其他物种的性展示。尽管这种化学感应途径不会抑制黑腹果蝇中雌性的种间交配,但在许多其他雄性果蝇中,类似的机制似乎也能抑制这种行为。回形针

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