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最优授粉服务恢复既能增加森林覆盖率,又能使农业利润翻番。

Optimal restoration for pollination services increases forest cover while doubling agricultural profits.

机构信息

School of Earth and Environmental Science and Centre for Biodiversity and Conservation Science, University of Queensland, St Lucia, Brisbane, Queensland, Australia.

School of Geography, Earth and Atmospheric Sciences, University of Melbourne, Parkville, Melbourne, Victoria, Australia.

出版信息

PLoS Biol. 2023 May 23;21(5):e3002107. doi: 10.1371/journal.pbio.3002107. eCollection 2023 May.

Abstract

Pollinators are currently facing dramatic declines in abundance and richness across the globe. This can have profound impacts on agriculture, as 75% of globally common food crops benefit from pollination services. As many native bee species require natural areas for nesting, restoration efforts within croplands may be beneficial to support pollinators and enhance agricultural yields. Yet, restoration can be challenging to implement due to large upfront costs and the removal of land from production. Designing sustainable landscapes will require planning approaches that include the complex spatiotemporal dynamics of pollination services flowing from (restored) vegetation into crops. We present a novel planning framework to determine the best spatial arrangement for restoration in agricultural landscapes while accounting for yield improvements over 40 years following restoration. We explored a range of production and conservation goals using a coffee production landscape in Costa Rica as a case study. Our results show that strategic restoration can increase forest cover by approximately 20% while doubling collective landholder profits over 40 years, even when accounting for land taken out of production. We show that restoration can provide immense economic benefits in the long run, which may be pivotal to motivating local landholders to undertake conservation endeavours in pollinator-dependent croplands.

摘要

传粉媒介的丰度和丰富度在全球范围内正在急剧下降。这对农业可能产生深远影响,因为全球 75%的常见粮食作物都受益于传粉服务。由于许多本地蜜蜂物种需要自然区域筑巢,因此在农田中进行恢复工作可能有助于支持传粉媒介并提高农业产量。然而,由于前期成本高和土地从生产中移除,恢复工作可能具有挑战性。设计可持续景观需要规划方法,包括从(恢复的)植被到作物的传粉服务的复杂时空动态。我们提出了一个新的规划框架,以确定农业景观中恢复的最佳空间安排,同时考虑到恢复后 40 年内的产量提高。我们使用哥斯达黎加的咖啡生产景观作为案例研究,探讨了一系列生产和保护目标。我们的结果表明,即使考虑到生产用地的减少,战略性恢复也可以使森林覆盖率增加约 20%,同时在 40 年内使集体土地所有者的利润翻一番。我们表明,从长远来看,恢复可以带来巨大的经济效益,这可能对激励当地土地所有者在依赖传粉媒介的农田中开展保护工作至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43eb/10204975/33c8c7008659/pbio.3002107.g001.jpg

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