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The importance of biotic interactions and climate change on avifaunal range limits of the Albertine rift

机译:生物相互作用和气候变化对阿尔伯丁大裂谷航空范围限制的重要性

摘要

Understanding species distribution ecology is essential given the growing need to understand how species will react to climate change and invasion. Understanding the processes by which distribution limits are set is necessary to build accurate distribution models, yet the role of biotic interactions (e.g. competition, predation, disease, parasitism) in determining range limits is uncertain, despite evidence that incorporating biotic information improves the accuracy of these models. ududBy examining the elevational variability of Afromontane, avian range limits across several communities, we add to reports indicating that environmental conditions are generally more important in determining both high and low stress range limits across an environmental gradient. However, we note that biotic interactions may still be more important at low stress limits than they are at high stress limits and that the processes that limit ranges appear to be different at low and high stress limits. High stress range limits appeared to be much more variable, stimulating new and unexpected questions. ududWe go on to document how distribution limits of avifauna have shifted in two Ugandan national parks. We tentatively conclude that range shifts may have occurred over the last decade, at a rate faster than one would have expected species to move merely based on the warming that has occurred. This indicated that warming may not be the only factor that is causing species’ upper limits to shift upwards in elevation. ud
机译:鉴于越来越需要了解物种对气候变化和入侵的反应,因此了解物种分布生态至关重要。了解建立分配极限的过程对于建立准确的分配模型是必不可少的,但是尽管有证据表明纳入生物信息可以提高分配的准确性,但生物相互作用(例如竞争,捕食,疾病,寄生)在确定范围极限中的作用尚不确定。这些模型。通过检查几个社区的鸟类距离限制的海拔高度变异性,我们增加了一些报告,表明环境条件通常在确定整个环境梯度的高低应力范围限制方面都更为重要。但是,我们注意到,在低压力限制下,生物相互作用仍然比在高压力限制下更为重要,并且在低和高压力限制下,限制范围的过程似乎有所不同。高应力范围限制似乎更具可变性,刺激了新的和意想不到的问题。 ud ud我们继续记录乌干达两个国家公园中鸟类的分布限制如何变化。我们初步得出结论,在过去十年中可能发生了范围变化,其速度比仅根据发生的变暖来预期物种移动的速度快。这表明变暖可能不是导致物种上限升高的唯一因素。 ud

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    Byrne J G D;

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  • 年度 2016
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