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首页> 外文期刊>Biological Conservation >Global patterns and predictors of bird species responses to forest fragmentation: Implications for ecosystem function and conservation
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Global patterns and predictors of bird species responses to forest fragmentation: Implications for ecosystem function and conservation

机译:鸟类对森林破碎化反应的全球模式和预测因子:对生态系统功能和保护的影响

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摘要

The fragmentation of forests is a dominant human impact worldwide with major implications for the conservation and management of ecosystems. Although many studies have assessed the effects of fragmentation on biodiversity at local scales, our understanding of the ecological implications for different functional groups of organisms remains limited, particularly at global scales. Here, we use linear mixed models to explore patterns of occurrence and ecological function of 2844 bird species at 293 localities spanning five continents. We show that sensitivity to fragmentation varies according to functional group and body mass, with the prevalence of insectivores and large frugivores declining in relation to fragment size, particularly under 100 ha. However, the most severe effects were restricted to the tropics, whereas fragmentation had no significant impact on the basic ecological structure of temperate bird communities. We conclude that land-use change in tropical systems is likely to disrupt biotic processes, including seed dispersal and the control of insect herbivores. Our findings highlight the importance of latitude in mediating the impacts of habitat loss, and offer general guidelines for the minimum size of fragments required to prevent the collapse of key ecosystem processes in sensitive regions. (C) 2013 Elsevier Ltd. All rights reserved.
机译:森林破碎是人类在世界范围内的主要影响,对生态系统的保护和管理具有重要意义。尽管许多研究已经评估了碎片化对地方尺度上生物多样性的影响,但我们对生物体的不同功能组的生态影响的理解仍然有限,尤其是在全球尺度上。在这里,我们使用线性混合模型来探索分布在五大洲293个地区的2844种鸟类的发生模式和生态功能。我们表明,对碎片的敏感性随功能组和体重的不同而变化,食虫和大果蝇的患病率相对于碎片大小呈下降趋势,尤其是在100公顷以下。然而,最严重的影响仅限于热带地区,而破碎化对温带鸟类群落的基本生态结构没有重大影响。我们得出的结论是,热带系统中土地利用的变化可能会破坏生物过程,包括种子传播和昆虫食草动物的控制。我们的研究结果突出了纬度在调解生境丧失影响方面的重要性,并为防止敏感地区关键生态系统过程崩溃所需的最小片段大小提供了一般指导。 (C)2013 Elsevier Ltd.保留所有权利。

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