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An objective‐based prioritization approach to support trophic complexity through ecological restoration species mixes

机译:客观的基于优先级的方法支持营养通过生态复杂性恢复物种混合

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摘要

Abstract Reassembling ecological communities and rebuilding habitats through active restoration treatments require curating the selection of plant species to use in seeding and planting mixes. Ideally, these mixes should be assembled based on attributes that support ecosystem function and services, promote plant and animal species interactions and ecological networks in restoration while balancing project constraints. Despite these critical considerations, it is common for species mixes to be selected opportunistically. Reframing the selection of seed mixes for restoration around ecological objectives is essential for success but accessible methods and tools are needed to support this effort. We developed a framework to optimize species seed mixes based on prioritizing plant species attributes to best support different objectives for ecosystem functions, services and trophic relationships such as pollination, seed dispersal and herbivory. We compared results to approaches where plant species are selected to represent plant taxonomic richness, dominant species and at random. We tested our framework in European alpine grasslands by identifying 176 plant species characteristic of the species pool, and identified 163 associated attributes affiliated to trophic relationships, ecosystem functions and services. In all cases, trophic relationships, ecosystem functions and services can be captured more efficiently through objective‐based prioritization using the functional identity of plant species. Solutions (plant species lists) can be compared quantitatively, in terms of costs, species or objectives. We confirm that a random draw of plant species from the regional plant species pool cannot be assumed to support other trophic groups and ecosystem functions and services. Synthesis and Applications. Our framework is presented as a proof‐of‐concept to help restoration practitioners better apply quantitative decision support to plant species selection to efficiently meet ecological restoration outcomes. Our approach may be tailored to any restoration initiative, habitat or restoration targets where seeding or planting mixes will be applied in active treatments. As global priority and resources are increasingly placed into restoration, this approach could be advanced to help make efficient decisions for many stages of the restoration process.
机译:摘要生态社区和重组通过积极的恢复重建的栖息地治疗需要管理的选择使用在播种和种植植物物种混合。基于属性支持生态系统功能和服务,促进植物和动物物种和生态网络的交互恢复,平衡项目约束。尽管这些关键因素,它是常见的物种选择混合传统上。种子和恢复生态目标是成功的必要条件需要访问的方法和工具支持这一努力。基于优先级的优化物种种子混合植物物种属性最好的支持不同的目标生态系统功能,服务和营养等的关系授粉,传播种子和食草性。结果方法相比,植物物种选择代表植物分类学丰富,优势种和随机。在欧洲高山测试我们的框架草原通过识别176个植物物种物种的特征池确定163年相关属性关联和营养的关系,生态系统功能服务。生态系统功能和服务可以被捕捉到更有效地通过客观的基础优先使用功能的身份植物物种。可以比较定量,成本、物种或目标。随机画植物物种的地区植物物种池不能支持和其他营养组织和生态系统功能服务。概念框架是证明优先车道帮助恢复从业者更好的应用定量决策支持植物物种选择有效地满足生态恢复的结果。适合任何恢复倡议,栖息地或恢复目标在播种或种植混合将被应用在积极治疗。全球优先和资源越来越多放入恢复,这种方法先进来帮助做出有效的决策许多阶段的恢复过程。

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