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Size-logging interactions and population dynamics in tropical understorey birds

机译:尺寸测井互动和热带上人物鸟类的种群动态

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Demographic vital rates (e.g., fecundity and survival) determine population size and viability. However, how anthropogenic habitat change differentially influences these dynamic population processes for species with different traits remains unknown. Crucially, this limits a mechanistic understanding of species-and community-level patterns in response to intensity of habitat change, and therefore, impedes robust prediction of future species responses. We investigated how size (across 26 forest birds, spanning almost an order of magnitude in body mass) and habitat modification (logging intensity, from intact forest to a 2.5-fold reduction in tree density) might interact to influence survival, reproduction and dispersal. Data were collected over five sessions under the robust design in a capture-mark-recapture framework and analysed using reverse time capture-recapture models. We found that smaller species were more fecund with increased logging intensity, and dispersed from more heavily logged to more intact forest. With increasing size, species reproduced better in progressively more intact forest, and dispersed from intact forest into more logged forest. These results indicate important trait-linked differences in the relative significance of various demographic processes in influencing species responses to varying intensities of habitat change. Separating the mechanistic processes underlying observed patterns is crucial to understanding and predicting anthropogenic impacts on biodiversity.
机译:人口统计学生命率(例如,繁殖力和生存)确定人口规模和可行性。然而,人为栖息地改变如何差异地影响具有不同特征的物种的这些动态人口过程仍然未知。至关重要的是,这限制了对物种和社区水平模式的机制理解,以应对栖息地改变的强度,因此,阻碍了对未来物种的鲁棒预测。我们调查了如何(跨26个森林鸟类,跨越体重级)和栖息地改性(从完整的林到2.5倍的树密度降低)可能相互作用,以影响生存,再生产和分散。在捕获标记 - 重新捕获框架中的强大设计下在五个会话中收集数据,并使用相反时间捕获 - 重新捕获模型进行分析。我们发现较小的物种更加肥沃,测井强度增加,并从更加严重的记录到更完整的森林中分散。随着较大的尺寸,物种在逐步更完整的森林中更好地复制,并将完整的森林分散到更多的森林中。这些结果表明了各种人口流程对影响物种对栖息地变化的不同强度的相对意义的重要性状相关的差异。分离所观察到的模式的机械过程对于了解和预测对生物多样性的人为影响至关重要。

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