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Asteraceae Paradox: Chemical and Mechanical Protection of Taraxacum Pollen

机译:菊科悖论:蒲公英花粉的化学和机械保护

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摘要

Excessive pollen harvesting by bees can compromise the reproductive success of plants. Plants have therefore evolved different morphological structures and floral cues to narrow the spectrum of pollen feeding visitors. Among “filtering” mechanisms, the chemical and mechanical protection of pollen might shape bee-flower interactions and restrict pollen exploitation to a specific suite of visitors such as observed in Asteraceae. Asteraceae pollen is indeed only occasionally exploited by generalist bee species but plentifully foraged by specialist ones (i.e., Asteraceae paradox). During our bioassays, we observed that micro-colonies of generalist bumblebee ( L.) feeding on pollen (Asteraceae) reduced their pollen collection and offspring production. Bees also experienced physiological effects of possible defenses in the form of digestive damage. Overall, our results suggest the existence of an effective chemical defense in Asteraceae pollen, while the hypothesis of a mechanical defense appeared more unlikely. Pre- and post-ingestive effects of such chemical defenses (i.e., nutrient deficit or presence of toxic compounds), as well as their role in the shaping of bee-flower interactions, are discussed. Our results strongly suggest that pollen chemical traits may act as drivers of plant selection by bees and partly explain why Asteraceae pollen is rare in generalist bee diets.
机译:蜜蜂过量收获花粉会损害植物的繁殖成功。因此,植物已经进化出不同的形态结构和花序线索,以缩小花粉喂养游客的范围。在“过滤”机制中,花粉的化学和机械保护可能会影响蜂花相互作用,并将花粉的利用限制于特定的访客群体,例如在菊科中观察到的。菊科花粉确实确实仅由普通蜜蜂物种开发,但由专门植物(即,菊科悖论)大量觅食。在我们的生物测定过程中,我们观察到以花粉(菊科)为食的多头大黄蜂(L.)的微型殖民地减少了其花粉的收集和后代的产生。蜜蜂还经历了可能的防御机制(如消化道损伤)的生理效应。总体而言,我们的结果表明菊科花粉中存在有效的化学防御作用,而机械防御作用的假设似乎更不可能。讨论了这种化学防御作用的除味前后效果(即营养缺乏或有毒化合物的存在),以及它们在蜂花相互作用形成中的作用。我们的研究结果强烈表明,花粉的化学性状可能是蜜蜂进行植物选择的驱动力,部分解释了为什么通配蜜蜂饮食中菊苣花粉很少见。

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