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Integrating trait‐based empirical and modeling research to improve ecological restoration

机译:基于特征的实证和建模研究,提高生态恢复

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A global ecological restoration agenda has led to ambitious programs in environmental policy to mitigate declines in biodiversity and ecosystem services. Current restoration programs can incompletely return desired ecosystem service levels, while resilience of restored ecosystems to future threats is unknown. It is therefore essential to advance understanding and better utilize knowledge from ecological literature in restoration approaches. We identified an incomplete linkage between global change ecology, ecosystem function research, and restoration ecology. This gap impedes a full understanding of the interactive effects of changing environmental factors on the long‐term provision of ecosystem functions and a quantification of trade‐offs and synergies among multiple services. Approaches that account for the effects of multiple changing factors on the composition of plant traits and their direct and indirect impact on the provision of ecosystem functions and services can close this gap. However, studies on this multilayered relationship are currently missing. We therefore propose an integrated restoration agenda complementing trait‐based empirical studies with simulation modeling. We introduce an ongoing case study to demonstrate how this framework could allow systematic assessment of the impacts of interacting environmental factors on long‐term service provisioning. Our proposed agenda will benefit restoration programs by suggesting plant species compositions with specific traits that maximize the supply of multiple ecosystem services in the long term. Once the suggested compositions have been implemented in actual restoration projects, these assemblages should be monitored to assess whether they are resilient as well as to improve model parameterization. Additionally, the integration of empirical and simulation modeling research can improve global outcomes by raising the awareness of which restoration goals can be achieved, due to the quantification of trade‐offs and synergies among ecosystem services under a wide range of environmental conditions.
机译:全球生态恢复议程导致环境政策方案雄心勃勃的计划,以减轻生物多样性和生态系统服务的下降。当前的恢复程序可以不完全返回所需的生态系统服务水平,而恢复生态系统的恢复能力为未来的威胁是未知的。因此,必须推进和更好地利用生态文学中的知识在恢复方法中。我们确定了全球变化生态,生态系统函数研究和恢复生态之间的不完整联系。这种差距会充分了解改变环境因素对生态系统职能的长期提供的互动影响以及多项服务之间的权衡和协同作用。涉及多种不断变化因子对植物特征组成的影响及其对提供生态系统功能和服务的直接和间接影响的影响,可以缩短这种差距。然而,目前缺少关于这种多层关系的研究。因此,我们提出了一种综合恢复议程,其具有仿真建模的基于特征的实证研究。我们介绍了一个持续的案例研究,以展示该框架如何允许系统评估对长期服务供应的互动环境因素的影响。我们拟议的议程将通过提示具有特定特征的植物物种组成来利用恢复方案,从长远来看,最大化多种生态系统服务的供应。一旦建议的组合物在实际恢复项目中实施,应监测这些组合,以评估它们是否是有弹性的,以及改善模型参数化。此外,由于在广泛的环境条件下,通过提高恢复目标可以实现恢复目标的认识,可以提高全球结果的整合。在各种环境条件下,生态系统服务中的权衡和协同作用,可以提高恢复目标。

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