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Bee-Mediated Selection Favors Floral Sex Specialization in a Heterantherous Species: Strategies to Solve the Pollen Dilemma

机译:Bee-Mediated选择有利于杂项物种的花卉性专业:解决花粉困境的策略

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摘要

Animal-pollinated plants show a broad variation in floral morphology traits and gametophyte production within populations. Thus, floral traits related to plant reproduction and sexuality are usually exposed to pollinator-mediated selection. Such selective pressures may be even stronger in heterantherous and pollen flowers, in which pollen contributes to both bee feeding and pollination, overcoming the “pollen dilemma” or the inability to perform both functions simultaneously. We describe the phenotypic gender and sexual organ morphology of flowers in two populations of Macairea radula (Melastomataceae), a heterantherous and buzz-pollinated species with pollen flowers. We estimated selection gradients on these traits through female and male fitness components. Both populations showed sizeable phenotypic gender variation, from strict hermaphrodites to increased femaleness or maleness. We found a continuous variation in style and stamen size, and this variation was correlated with corresponding shape values of both sexual organs. We detected bee-mediated selection towards short and long styles through seed number and towards intermediate degrees of heteranthery through pollen removal in one population, and selection towards increased maleness through pollen dispersal in both populations. Our results suggest that bee-mediated selection favors floral sex specialization and stylar dimorphism in M. radula, optimizing reproductive success and solving the pollen dilemma.
机译:动物授粉植物显示出种群内的花卉形态性状和配子体生产的广泛变化。因此,与植物生殖和性能相关的花卉特征通常暴露于花粉剂介导的选择。这种选择性压力均匀含有含有花粉的花粉,其中花粉有助于蜂饲料和授粉,克服“花粉困境”或无法同时执行两种功能。我们描述了在MacaIrea adlula(Melastomataceae)的两种种群中的花朵的表型性别和性器形态,含有花粉花卉的杂种和嗡嗡的授粉物种。我们通过女性和男性健身部件估计这些特征的选择梯度。两种群体都显示出大量的表型性别变异,从严格的雌雄同体增加了女性沉积或恶意。我们发现风格和稳压尺寸的持续变化,这种变化与性器官的相应形状值相关。我们通过种子数目检测到蜜蜂介导的选择,通过种子数量和杂种的中间度,通过在一个人口中的花粉去除,并通过两种群体中的花粉分散来选择嗅觉增加。我们的研究结果表明,蜜蜂介导的选择有利于M.罗布拉中的花卉性专业化和溜溜癖二态性,优化生殖成功并解决花粉困境。

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