A multitrophic perspective on biodiversity-ecosystem functioning research.

2区 环境科学与生态学 Q1 Agricultural and Biological Sciences Advances in Ecological Research Pub Date : 2019-01-01 Epub Date: 2019-07-23 DOI:10.1016/bs.aecr.2019.06.001
Nico Eisenhauer, Holger Schielzeth, Andrew D Barnes, Kathryn Barry, Aletta Bonn, Ulrich Brose, Helge Bruelheide, Nina Buchmann, François Buscot, Anne Ebeling, Olga Ferlian, Grégoire T Freschet, Darren P Giling, Stephan Hättenschwiler, Helmut Hillebrand, Jes Hines, Forest Isbell, Eva Koller-France, Birgitta König-Ries, Hans de Kroon, Sebastian T Meyer, Alexandru Milcu, Jörg Müller, Charles A Nock, Jana S Petermann, Christiane Roscher, Christoph Scherber, Michael Scherer-Lorenzen, Bernhard Schmid, Stefan A Schnitzer, Andreas Schuldt, Teja Tscharntke, Manfred Türke, Nicole M van Dam, Fons van der Plas, Anja Vogel, Cameron Wagg, David A Wardle, Alexandra Weigelt, Wolfgang W Weisser, Christian Wirth, Malte Jochum
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引用次数: 74

Abstract

Concern about the functional consequences of unprecedented loss in biodiversity has prompted biodiversity-ecosystem functioning (BEF) research to become one of the most active fields of ecological research in the past 25 years. Hundreds of experiments have manipulated biodiversity as an independent variable and found compelling support that the functioning of ecosystems increases with the diversity of their ecological communities. This research has also identified some of the mechanisms underlying BEF relationships, some context-dependencies of the strength of relationships, as well as implications for various ecosystem services that mankind depends upon. In this paper, we argue that a multitrophic perspective of biotic interactions in random and non-random biodiversity change scenarios is key to advance future BEF research and to address some of its most important remaining challenges. We discuss that the study and the quantification of multitrophic interactions in space and time facilitates scaling up from small-scale biodiversity manipulations and ecosystem function assessments to management-relevant spatial scales across ecosystem boundaries. We specifically consider multitrophic conceptual frameworks to understand and predict the context-dependency of BEF relationships. Moreover, we highlight the importance of the eco-evolutionary underpinnings of multitrophic BEF relationships. We outline that FAIR data (meeting the standards of findability, accessibility, interoperability, and reusability) and reproducible processing will be key to advance this field of research by making it more integrative. Finally, we show how these BEF insights may be implemented for ecosystem management, society, and policy. Given that human well-being critically depends on the multiple services provided by diverse, multitrophic communities, integrating the approaches of evolutionary ecology, community ecology, and ecosystem ecology in future BEF research will be key to refine conservation targets and develop sustainable management strategies.

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生物多样性生态系统功能研究的多营养视角。
对生物多样性空前丧失的功能后果的担忧促使生物多样性生态系统功能研究成为过去25年来最活跃的生态研究领域之一。数百项实验将生物多样性作为一个自变量进行了操纵,并发现了令人信服的证据,即生态系统的功能随着其生态群落的多样性而增加。这项研究还确定了BEF关系的一些潜在机制,关系强度的一些上下文依赖性,以及对人类所依赖的各种生态系统服务的影响。在本文中,我们认为,在随机和非随机生物多样性变化场景中,从多营养角度看待生物相互作用是推进未来BEF研究和解决其一些最重要的剩余挑战的关键。我们讨论了空间和时间上多营养相互作用的研究和量化有助于从小规模生物多样性操作和生态系统功能评估扩大到跨生态系统边界管理相关空间尺度。我们特别考虑多营养概念框架来理解和预测BEF关系的上下文依赖性。此外,我们强调了多营养BEF关系的生态进化基础的重要性。我们概述了FAIR数据(满足可查找性、可访问性、互操作性和可重用性的标准)和可重复处理将是通过使其更加集成来推进这一研究领域的关键。最后,我们展示了这些BEF见解如何用于生态系统管理、社会和政策。鉴于人类福祉严重依赖于多样化、多营养群落提供的多种服务,在未来的BEF研究中整合进化生态学、群落生态学和生态系统生态学的方法将是完善保护目标和制定可持续管理战略的关键。
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来源期刊
Advances in Ecological Research
Advances in Ecological Research 环境科学-生态学
CiteScore
10.60
自引率
0.00%
发文量
14
期刊介绍: Advances in Ecological Research is one of the most successful series in the highly competitive field of ecology. Each volume publishes topical and important reviews, interpreting ecology as widely as in the past, to include all material that contributes to our understanding of the field. Topics in this invaluable series include the physiology, populations, and communities of plants and animals, as well as landscape and ecosystem ecology.
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