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对雄性夜蛾来说是一项挑战?在植物挥发物的背景中辨别雌性性信息素。

A Challenge for a Male Noctuid Moth? Discerning the Female Sex Pheromone against the Background of Plant Volatiles.

作者信息

Badeke Elisa, Haverkamp Alexander, Hansson Bill S, Sachse Silke

机构信息

Department of Evolutionary Neuroethology, Max Planck Institute for Chemical Ecology Jena, Germany.

出版信息

Front Physiol. 2016 Apr 25;7:143. doi: 10.3389/fphys.2016.00143. eCollection 2016.

Abstract

Finding a partner is an essential task for members of all species. Like many insects, females of the noctuid moth Heliothis virescens release chemical cues consisting of a species-specific pheromone blend to attract conspecific males. While tracking these blends, male moths are also continuously confronted with a wide range of other odor molecules, many of which are plant volatiles. Therefore, we analyzed how background plant odors influence the degree of male moth attraction to pheromones. In order to mimic a natural situation, we tracked pheromone-guided behavior when males were presented with the headspaces of each of two host plants in addition to the female pheromone blend. Since volatile emissions are also dependent on the physiological state of the plant, we compared pheromone attraction in the background of both damaged and intact plants. Surprisingly, our results show that a natural odor bouquet does not influence flight behavior at all, although previous studies had shown a suppressive effect at the sensory level. We also chose different concentrations of single plant-emitted volatiles, which have previously been shown to be neurophysiologically relevant, and compared their influence on pheromone attraction. We observed that pheromone attraction in male moths was significantly impaired in a concentration-dependent manner when single plant volatiles were added. Finally, we quantified the amounts of volatile emission in our experiments using gas chromatography. Notably, when the natural emissions of host plants were compared with those of the tested single plant compounds, we found that host plants do not release volatiles at concentrations that impact pheromone-guided flight behavior of the moth. Hence, our results lead to the conclusion that pheromone-plant interactions in Heliothis virescens might be an effect of stimulation with supra-natural plant odor concentrations, whereas under more natural conditions the olfactory system of the male moth appears to be well adapted to follow the female pheromone plume without interference from plant-emitted odors.

摘要

寻找伴侣是所有物种成员的一项基本任务。像许多昆虫一样,绿棉铃虫(Heliothis virescens)的雌性夜蛾会释放由特定物种信息素混合物组成的化学信号来吸引同种雄性。在追踪这些混合物时,雄性蛾类也会不断接触到各种各样的其他气味分子,其中许多是植物挥发物。因此,我们分析了背景植物气味如何影响雄性蛾类对信息素的吸引程度。为了模拟自然情况,当向雄性呈现两种寄主植物各自的顶空气味以及雌性信息素混合物时,我们追踪了信息素引导的行为。由于挥发物排放也取决于植物的生理状态,我们比较了受损植物和完整植物背景下的信息素吸引力。令人惊讶的是,我们的结果表明,天然气味组合根本不会影响飞行行为,尽管先前的研究在感官层面显示出抑制作用。我们还选择了不同浓度的单一植物释放的挥发物,这些挥发物先前已被证明在神经生理学上具有相关性,并比较了它们对信息素吸引力的影响。我们观察到,当添加单一植物挥发物时,雄性蛾类对信息素的吸引力以浓度依赖的方式显著受损。最后,我们使用气相色谱法对实验中的挥发物排放量进行了量化。值得注意的是,当将寄主植物的天然排放量与测试的单一植物化合物的排放量进行比较时,我们发现寄主植物释放的挥发物浓度不会影响蛾类的信息素引导飞行行为。因此,我们的结果得出结论,绿棉铃虫中信息素与植物的相互作用可能是超自然植物气味浓度刺激的结果,而在更自然的条件下,雄性蛾类的嗅觉系统似乎能够很好地适应追踪雌性信息素羽流,而不受植物释放气味的干扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/837b/4843018/62423cee603a/fphys-07-00143-g0001.jpg

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