Complex nonmonotonic responses of biodiversity to habitat destruction

IF 4.4 2区 环境科学与生态学 Q1 ECOLOGY Ecology Pub Date : 2023-10-02 DOI:10.1002/ecy.4177
Helin Zhang, Daniel Bearup, György Barabás, William F. Fagan, Ivan Nijs, Dongdong Chen, Jinbao Liao
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Abstract

It has typically been assumed that habitat destruction, characterized by habitat loss and fragmentation, has consistently negative effects on biodiversity. While numerous empirical studies have shown the detrimental effects of habitat loss, debate continues as to whether habitat fragmentation has universally negative effects. To explore the effects of habitat fragmentation, we developed a simple model for site-occupancy dynamics in fragmented landscapes. With the model, we demonstrate that a competition–colonization trade-off can result in nonlinear oscillatory responses in biodiversity to both habitat loss and fragmentation. However, the overall pattern of habitat loss reducing species richness is still established, in line with empirical observations. Interestingly, the existence of localized oscillations in biodiversity can explain the mixed responses of species richness to habitat fragmentation per se observed in nature, thereby reconciling the debate on the fragmentation–diversity relationship. Therefore, this study offers a parsimonious mechanistic explanation for empirically observed biodiversity patterns in response to habitat destruction.

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生物多样性对栖息地破坏的复杂非单调反应。
通常认为,以栖息地丧失和破碎化为特征的栖息地破坏对生物多样性产生了持续的负面影响。尽管许多实证研究表明了栖息地丧失的有害影响,但关于栖息地破碎化是否具有普遍的负面影响的争论仍在继续。为了探索栖息地破碎化的影响,我们开发了一个破碎化景观中场地占用动态的简单模型。利用该模型,我们证明了竞争-殖民化权衡会导致生物多样性对栖息地丧失和破碎化的非线性振荡响应。然而,根据经验观察,栖息地丧失降低物种丰富度的总体模式仍然成立。有趣的是,生物多样性中局部振荡的存在可以解释自然界中观察到的物种丰富度对栖息地破碎化本身的混合反应,从而调和关于破碎化-多样性关系的争论。因此,这项研究为经验观察到的生物多样性模式对栖息地破坏的反应提供了一个简约的机制解释。这篇文章受版权保护。保留所有权利。
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来源期刊
Ecology
Ecology 环境科学-生态学
CiteScore
8.30
自引率
2.10%
发文量
332
审稿时长
3 months
期刊介绍: Ecology publishes articles that report on the basic elements of ecological research. Emphasis is placed on concise, clear articles documenting important ecological phenomena. The journal publishes a broad array of research that includes a rapidly expanding envelope of subject matter, techniques, approaches, and concepts: paleoecology through present-day phenomena; evolutionary, population, physiological, community, and ecosystem ecology, as well as biogeochemistry; inclusive of descriptive, comparative, experimental, mathematical, statistical, and interdisciplinary approaches.
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