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运用基于特征的模型实现理论驱动的生态恢复的功能目标。

Applying trait-based models to achieve functional targets for theory-driven ecological restoration.

机构信息

Environmental Research Institute and Department of Biological Sciences, University of Waikato, Private Bag 3105, Hamilton, 3240, New Zealand.

出版信息

Ecol Lett. 2014 Jul;17(7):771-84. doi: 10.1111/ele.12288. Epub 2014 Apr 28.

Abstract

Manipulating community assemblages to achieve functional targets is a key component of restoring degraded ecosystems. The response-and-effect trait framework provides a conceptual foundation for translating restoration goals into functional trait targets, but a quantitative framework has been lacking for translating trait targets into assemblages of species that practitioners can actually manipulate. This study describes new trait-based models that can be used to generate ranges of species abundances to test theories about which traits, which trait values and which species assemblages are most effective for achieving functional outcomes. These models are generalisable, flexible tools that can be widely applied across many terrestrial ecosystems. Examples illustrate how the framework generates assemblages of indigenous species to (1) achieve desired community responses by applying the theories of environmental filtering, limiting similarity and competitive hierarchies, or (2) achieve desired effects on ecosystem functions by applying the theories of mass ratios and niche complementarity. Experimental applications of this framework will advance our understanding of how to set functional trait targets to achieve the desired restoration goals. A trait-based framework provides restoration ecology with a robust scaffold on which to apply fundamental ecological theory to maintain resilient and functioning ecosystems in a rapidly changing world.

摘要

人为操控群落组合以实现功能目标是恢复退化生态系统的关键组成部分。响应-效应特征框架为将恢复目标转化为功能特征目标提供了一个概念基础,但缺乏将特征目标转化为从业者实际可以操纵的物种组合的定量框架。本研究描述了新的基于特征的模型,可用于生成物种丰度范围,以检验关于哪些特征、哪些特征值和哪些物种组合最有效地实现功能结果的理论。这些模型是通用的、灵活的工具,可以广泛应用于许多陆地生态系统。示例说明了该框架如何生成本土物种的组合,(1)通过应用环境过滤、限制相似性和竞争层次的理论来实现期望的群落响应,或(2)通过应用质量比和生态位互补的理论来实现对生态系统功能的期望影响。该框架的实验应用将增进我们对如何设定功能特征目标以实现预期恢复目标的理解。基于特征的框架为恢复生态学提供了一个强大的支架,可将基础生态理论应用于快速变化的世界中,以维持有弹性和功能的生态系统。

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