Dominant species stabilize pollination services through response diversity, but not cross-scale redundancy

IF 4.4 2区 环境科学与生态学 Q1 ECOLOGY
Ecology Pub Date : 2024-11-28 DOI:10.1002/ecy.4481
Mark A. Genung, Rachael Winfree
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引用次数: 0

Abstract

Substantial evidence suggests that biodiversity can stabilize ecosystem function, but how it does this is less clear. In very general terms, the hypothesis is that biodiversity stabilizes function because having more species increases the role of compensatory dynamics, which occur when species in a community show different responses to the environment. Here, we focus on two forms of compensatory dynamics, cross-scale redundancy (CSR) and response diversity (RD). CSR occurs when species respond to a disturbance at different scales such that scale-specific disturbances do not negatively affect all species. RD occurs when species contributing to the same function show different responses to an environmental change. We developed a new analytical approach that can compare the strength of CSR and RD in the same dataset and used it to study native bee pollination of blueberry at 16 farms that varied in surrounding agricultural land use. We then asked whether CSR and RD among bee species are associated with the stability of blueberry pollination. Although CSR and RD were both present, only RD was associated with higher stability of pollination. Furthermore, the effects of RD on stability were due to a single widespread species, Andrena bradleyi, that is a specialist on blueberry and, unlike other bee species, was highly abundant at farms surrounded by intensive blueberry agriculture. Thus, the stabilizing effect we observed was attributable to an “identity effect” more than to species richness per se. Our results demonstrate how CSR and RD can be empirically measured and compared and highlight how the theoretical expectations of the biodiversity–ecosystem functioning field are not always upheld when confronted with real-world data.

优势种通过响应多样性而非跨尺度冗余来稳定授粉服务。
大量证据表明,生物多样性可以稳定生态系统功能,但它是如何做到这一点的尚不清楚。一般来说,这个假设是生物多样性稳定了功能,因为有更多的物种增加了补偿动力学的作用,当一个群落中的物种对环境表现出不同的反应时,就会发生补偿动力学。本文主要研究了两种形式的补偿动力学:跨尺度冗余和响应多样性。当物种对不同尺度的干扰做出反应时,就会发生CSR,这样尺度特定的干扰不会对所有物种产生负面影响。当具有相同功能的物种对环境变化表现出不同的反应时,就会发生RD。我们开发了一种新的分析方法,可以在同一数据集中比较CSR和RD的强度,并使用它来研究16个农场蓝莓的本地蜜蜂授粉,这些农场周围的农业用地使用情况各不相同。然后,我们询问蜜蜂物种之间的CSR和RD是否与蓝莓授粉的稳定性有关。虽然CSR和RD都存在,但只有RD具有更高的授粉稳定性。此外,RD对稳定性的影响是由于一种广泛分布的物种,即蓝莓专家安德里娜·布拉德利(Andrena bradleyyi),它与其他蜜蜂物种不同,在被密集的蓝莓农业包围的农场中数量非常丰富。因此,我们观察到的稳定效应更多地归因于“身份效应”而不是物种丰富度本身。我们的研究结果证明了企业社会责任和研发是如何进行实证测量和比较的,并强调了生物多样性-生态系统功能领域的理论期望在面对现实世界数据时并不总是得到支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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