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Pollen grain morphology is not exclusively responsible for pollen collectability in bumble bees

机译:花粉的形态并不专门负责大黄蜂的花粉可收集性

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Bee-pollinated plants face a dilemma in that bees both passively transport pollen grains among conspecific flowers and actively collect pollen to feed their larvae. Therefore, mechanisms that reduce pollen collection by bees have evolved in melittophilous plants. Malvaceae pollen is uncollectable for corbiculate bees which has previously been ascribed to pollen size, spines, and pollenkitt. We analysed the influence of pollen grain properties (diameter, spine length, spine density) on the collectability of echinate (spiny) pollen by bumble bees (Bombus terrestris). Workers individually foraging on one of eight plant species from six families performed significantly less pollen foraging on plants which have large, echinate pollen grains. Nevertheless, neither pollen grain size, spine length, nor spine density prove to be an absolute disqualifier for collectability. While pollen foragers did not shift to nectar collection but seized visiting flowers with uncollectable pollen, nectar foragers performed regular foraging bouts on these plants. Pollen that is uncollectable for corbiculate bees limits pollen depletion by generalist bumble bees and probably also honey bees while maintaining them as pollinators, which is an effective solution to the pollen dilemma. As previous assumptions about the impact of pollen morphology on its collectability are disproved, potentially determining factors are discussed.
机译:蜜蜂授粉的植物面临一个难题,蜜蜂既在被动花之间被动运输花粉粒,又主动收集花粉喂食幼虫。因此,在嗜嗜性植物中已经进化出减少蜜蜂花粉收集的机制。锦葵科花粉是无法收集的,因为以前将蜜蜂归因于花粉的大小,刺和花粉。我们分析了花粉粒特性(直径,脊柱长度,脊柱密度)对大黄蜂(Bombus terrestris)对棘突状花粉的收集能力的影响。工人分别从六个科的八种植物中觅食的花粉,在具有较大的棘手的花粉粒的植物上进行的花粉觅食明显减少。然而,花粉粒大小,书脊长度和书脊密度均未证明是可收集性的绝对资格。花粉觅食者并没有转移到花蜜收集中,而是抓住了无法采集花粉的探望花朵,而花蜜觅食者在这些植物上进行了定期觅食。花粉对于蜜蜂来说是无法收集的,它限制了通才大黄蜂和蜜蜂的花粉消耗,同时保持了它们作为传粉媒介,这是解决花粉困境的有效方法。由于先前关于花粉形态对其可收集性的影响的假设不成立,因此讨论了潜在的决定因素。

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