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Animal movement drives variation in seed dispersal distance in a plant - animal network

机译:动物运动驱动植物网络中种子分散距离的变化 - 动物网络

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Frugivores play differing roles in shaping dispersal patterns yet seed dispersal distance is rarely quantified across entire communities. We model seed dispersal distance using gut passage times and bird movement for the majority (39 interactions) of known bird-tree interactions on the island of Saipan to highlight differences in seed dispersal distances provided by the five avian frugivores. One bird species was found to be a seed predator rather than a disperser. The remaining four avian species dispersed seeds but differences in seed dispersal distance were largely driven by interspecific variation in bird movement rather than intraspecific variation in gut passage times. The median dispersal distance was at least 56 m for all species-specific combinations, indicating all species play a role in reducing high seed mortality under the parent tree. However, one species-the Micronesian Starling-performed 94% of dispersal events greater than 500 m, suggesting this species could be a key driver of long-distance dispersal services (e.g. linking populations, colonizing new areas). Assessing variation in dispersal patterns across this network highlights key sources of variation in seed dispersal distances and suggests which empirical approaches are sufficient for modelling how seed dispersal mutualisms affect populations and communities.
机译:节省游戏在整形分散模式中发挥不同的作用,但在整个社区中很少量化种子分散距离。我们使用肠道通道时间和鸟类运动来模拟种子分散距离,为塞班岛岛上的已知鸟类相互作用的大多数(39个相互作用),以突出五个禽游节提供的种子分散距离的差异。发现一只鸟类是种子捕食者而不是分散器。剩余的四种禽类分散的种子,但种子分散距离的差异主要是鸟类运动的间隙变化而不是肠道通道时间的含有含有含量的变化。对于所有物种特异性组合,中位数分散距离为至少56米,表明所有物种在减少父树下的高种子死亡率方面发挥作用。然而,一个物种 - 微孔纪念品椋鸟在大于500米的分散事件的94%,暗示该物种可以是长途分散服务的关键驱动器(例如,将群体连接,殖民化新区)。评估该网络跨越分散模式的变化突出了种子分散距离的变化源,并表明了哪种经验方法足以建模种子分散互动度如何影响人口和社区。

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