Modeling nature-based restoration potential across aquatic-terrestrial boundaries.

IF 5.2 1区 环境科学与生态学 Q1 BIODIVERSITY CONSERVATION
B Wegscheider, N K Rideout, W A Monk, M A Gray, R Steeves, D J Baird
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引用次数: 0

Abstract

Today, few watersheds remain untouched by global change processes arising from climate warming, impoundments, channelization, water extraction, pollution, and urbanization. The need for restoration has resulted in a myriad of interventions, generally performed at small scales, which have limited measurable impact in restoring biodiversity and ecosystem functions. We propose bringing nature-based restoration (also referred to as rewilding) principles to rivers and their watersheds to allow freshwater ecosystems to heal themselves and present a case study example for the Wolastoq, a transboundary watershed on North America's east coast. We aimed to identify key areas for the provision of the ecosystem function secondary productivity in the watershed and explored how the existing network of protected lands contributes to its conservation. We first developed species distribution models for 94 aquatic insects and 5 aerial insectivores and then considered human footprint and existing protected areas when employing spatial prioritization to meet 2 area-based targets (17% and 30% [i.e., Aichi Biodiversity Target 11 and Canada's 30×30, respectively]) for conservation or restoration of freshwater secondary production. Current conservation protection in the watershed was predicted to be insufficient to protect either ecosystem function providers or receivers of secondary production. By considering integrated conservation strategies, restoration and conservation actions can be better allocated throughout habitat patches to ensure sustained provision of ecosystem functions across the watershed. Nature-based restoration and conservation can help inform Canada's area-based targets, providing a framework for incorporating ecosystem functions into conservation planning and offering practical insights for policy and restoration efforts aimed at safeguarding biodiversity.

跨水陆边界的基于自然的恢复潜力建模。
今天,很少有流域不受气候变暖、蓄水、渠化、取水、污染和城市化等全球变化过程的影响。恢复的需要导致了无数的干预措施,这些干预措施通常规模较小,对恢复生物多样性和生态系统功能的可衡量影响有限。我们建议将基于自然的恢复(也称为重新野生化)原则引入河流及其流域,使淡水生态系统能够自我修复,并以北美东海岸的跨界分水岭沃拉斯托克为例进行了案例研究。我们的目标是确定提供流域生态系统功能第二生产力的关键区域,并探索现有的保护地网络如何有助于其保护。我们首先建立了94种水生昆虫和5种空中食虫动物的物种分布模型,然后在考虑人类足迹和现有保护区时,采用空间优先级来满足2个基于区域的目标(分别为17%和30%[分别为爱知县生物多样性目标11和加拿大的30×30]),以保护或恢复淡水次生生产。预测流域现有的保护保护不足以保护生态系统功能提供者和次生生产接受者。通过综合保护战略,恢复和保护行动可以更好地分配到整个栖息地斑块,以确保整个流域生态系统功能的持续提供。基于自然的恢复和保护可以为加拿大的区域目标提供信息,为将生态系统功能纳入保护规划提供框架,并为旨在保护生物多样性的政策和恢复工作提供实际见解。
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
Conservation Biology
Conservation Biology 环境科学-环境科学
CiteScore
12.70
自引率
3.20%
发文量
175
审稿时长
2 months
期刊介绍: Conservation Biology welcomes submissions that address the science and practice of conserving Earth's biological diversity. We encourage submissions that emphasize issues germane to any of Earth''s ecosystems or geographic regions and that apply diverse approaches to analyses and problem solving. Nevertheless, manuscripts with relevance to conservation that transcend the particular ecosystem, species, or situation described will be prioritized for publication.
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