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Bacteria-induced sexual isolation in Drosophila

机译:果蝇中细菌诱导的性隔离

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Commensal bacteria can induce sexual isolation between populations of Drosophila. This phenomenon has implications for speciation, and raises questions about its behavioral and developmental mechanisms, which are not yet known. In this Extra View, we discuss related work by others, bearing directly on these issues, and we speculate about how bacteria might influence fly behavior. There are many reports of interaction between Drosophila and their microbiota that significantly impacts mating preferences. Sexual isolation can be enhanced or reduced by altering the culture media, or the microbiota inhabiting those media. More dramatically, the endosymbiont Wolbachia has induced strong mate preferences in some instances. While a sudden, ecologically induced shift in mating preferences falls far short of the changes required for speciation, it might be a first step in that direction. We hypothesize that bacteria-induced sexual isolation is caused by chemosensory cues. In our experiments, bacteria altered the profile of cuticular hydrocarbons, which function as sex pheromones. Commensal bacteria may act directly on these hydrocarbons, or they may affect their synthesis. Alternatively, bacterial metabolites might perfume the flies in ways that affect mate choice. In that event, habituation or conditioning likely plays a role.
机译:共生细菌可以诱导果蝇种群之间的性隔离。这种现象对物种形成有影响,并引起对其行为和发育机制的疑问,目前尚不清楚。在此Extra View中,我们直接讨论这些问题,讨论了其他人的相关工作,并且推测细菌如何影响飞行行为。果蝇与其微生物群之间相互作用的许多报道都极大地影响了交配偏好。可以通过改变培养基或居住在这些培养基上的微生物来增强或减少性隔离。更引人注目的是,内共生沃尔巴克氏菌在某些情况下引起强烈的配偶偏好。尽管生态上突然发生的交配偏好转变远未达到物种形成所需的变化,但这可能是朝这个方向迈出的第一步。我们假设细菌诱导的性隔离是由化学感觉线索引起的。在我们的实验中,细菌改变了表皮碳氢化合物的轮廓,后者起着性信息素的作用。共生细菌可能直接作用于这些碳氢化合物,或者可能影响其合成。另外,细菌代谢物可能以影响伴侣选择的方式给果蝇增香。在这种情况下,习惯或适应可能会起作用。

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