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首页> 外文期刊>Annual review of ecology, evolution, and systematics >A Bird's-Eye View of Pollination: Biotic Interactions as Drivers of Adaptation and Community Change
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A Bird's-Eye View of Pollination: Biotic Interactions as Drivers of Adaptation and Community Change

机译:一种粉的授粉:生物互动作为适应和社区变革的驱动因素

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Nectarivorous birds and bird-pollinated plants are linked by a network of interactions. Here I ask how these interactions influence evolution and community composition. I find near complete evidence for the effect of birds on plant evolution. Experiments show the process in action-birds select among floral phenotypes in a population-and comparative studies find the resulting pattern-bird-pollinated species have long-tubed, red flowers with large nectar volumes. Speciation is accomplished in one "magical" step when adaptation for bird pollination brings about divergent morphology and reproductive isolation. In contrast, evidence that plants drive bird evolution is fragmentary. Studies of selection on population-level variation are lacking, but the resulting pattern is clear-nectarivorous birds have evolved a remarkable number of times and often have long bills and brush-tipped or tubular tongues. At the level of the ecological guild, birds select among plant species via an effect on seed set and thus determine plant community composition. Plants simultaneously influence the relative fitness of bird species and thus determine the composition of the bird guild. Interaction partners may give one guild member a constant fitness advantage, resulting in competitive exclusion and community change, or may act as limiting resources that depress the fitness of frequent species, thus stabilizing community composition and allowing the coexistence of diversity within bird and plant guilds.
机译:肾脏鸟类和鸟类授粉植物通过相互作用网络联系在一起。在这里,我问这些互动如何影响进化和社区构成。我发现鸟类对植物演化的效果附近的完整证据。实验表明,作用 - 鸟类中的方法在人口中的花卉表型中选择 - 和比较研究发现所产生的模式 - 鸟授粉物种具有长管,红色花朵,具有大的花蜜体积。当适应鸟授粉带来不同的形态和生殖隔离时,在一个“神奇”步骤中完成了物种。相比之下,植物驱动鸟类演变的证据是零碎的。对人口水平变异的选择的研究缺乏,但是所产生的模式是清澈的苍蝇的鸟类已经演变出了显着的次数,并且通常具有长的钞票和刷子或管状舌头。在生态公会的水平,鸟类通过对种子组的影响进行植物种类,从而确定植物群落组成。植物同时影响鸟类的相对适应性,从而确定鸟类公会的组成。互动伙伴可以给出一个公会会员一个恒定的健身优势,导致竞争性排斥和社区变革,或者可以充当抑制频繁物种的适应度的限制资源,从而稳定群落构成并允许在鸟类和植物公会内共存多样性。

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