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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Dosage-Dependent Impacts of a Floral Volatile Compound on Pollinators, Larcenists, and the Potential for Floral Evolution in the Alpine Skypilot Polemonium viscosum
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Dosage-Dependent Impacts of a Floral Volatile Compound on Pollinators, Larcenists, and the Potential for Floral Evolution in the Alpine Skypilot Polemonium viscosum

机译:花香挥发性化合物对授粉者,盗窃者的依赖剂量的影响,以及高山Skypilot粘液鼠李的花饰进化潜力

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摘要

All volatile organic compounds (VOCs) vary quantitatively, yet how such variation affects their ecological roles is unknown. Because floral VOCs are cues for both pollinators and floral antagonists, variation in emission may have major consequences for costs and benefits in plant-pollinator interactions. In Polemonium viscosum, the emission rate for the floral VOC 2-phenylethanol (2PE) spans more than two orders of magnitude. We investigated the ecological and evolutionary impacts of this immense phenotypic variation. The emission rate of 2PE varies independently of nectar rewards and thus is uninformative of profitability. Emission is elevated in flowers that are morphologically vulnerable to ant larcenists, suggesting that chemical deterrence may compensate for weak physical barriers. In nature, plants emitting more 2PE than their neighbors escape ant damage. Flower-damaging ants die when exposed to 2PE in the laboratory, and they avoid high 2PE emitters in the field. High 2PE also reduces bumblebee visitation and pollination, suggesting an ecological cost of defense in pollinator service. However, at more moderate emission rates, 2PE enhances the amount of nectar left in flowers, at no pollination cost. In conclusion, repellency of 2PE is highly sensitive to dosage, giving it a key role in shaping ecological interactions between skypilot plants and their floral visitors.
机译:所有挥发性有机化合物(VOC)都有定量变化,但这种变化如何影响其生态作用尚不清楚。由于花卉VOC既是传粉媒介又是花卉拮抗剂的线索,因此排放变化可能会对植物与传粉媒介相互作用的成本和收益产生重大影响。在粘胶芽孢中,花卉VOC 2-苯乙醇(2PE)的排放速率跨越两个以上的数量级。我们调查了这种巨大的表型变异的生态和进化影响。 2PE的排放速率独立于花蜜奖励而变化,因此不利于盈利。形态上易受蚂蚁盗窃者侵害的花朵中的排放量增加,表明化学威慑作用可以弥补较弱的物理障碍。在自然界中,释放出比邻国更多的2PE的植物逃脱了蚂蚁的伤害。破坏花朵的蚂蚁在实验室中暴露于2PE时会死亡,它们会避免在现场使用高2PE的发射器。高2PE还可以减少大黄蜂的走访和授粉,这表明传粉媒介服务的生态防御成本。但是,在更适中的排放速率下,2PE可以增加花中残留的花蜜含量,而无需授粉。总而言之,2PE的排斥性对剂量高度敏感,使其在塑造高空飞植物及其花卉访客之间的生态相互作用中起关键作用。

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