Department of Biology, University of Pisa, Pisa, Italy.
Department of Biology, Ecology and Earth Sciences, University of Calabria, Arcavacata di Rende, Cosenza, Italy.
Sci Total Environ. 2019 May 15;665:1046-1052. doi: 10.1016/j.scitotenv.2019.02.127. Epub 2019 Feb 11.
Global plant diversity is at risk due to anthropogenic changes to ecosystems, but given severely limited conservation resources, a reliable prioritisation strategy for species and sites is needed. Our objective was to identify key areas for conserving the phylogenetic diversity (PD) of threatened vascular plants in Italy, one of the most species-rich regions in the Mediterranean Basin. We used spatial data and the conservation status of 995 threatened vascular plants and applied a phylogenetically informed spatial planning to minimize conservation costs. We then determined the degree of overlap with existing protected areas and evaluated whether this PD-based prioritisation of areas provides adequate protection for threatened phylogenetically distinctive species (EDGE). The cost-effective procedure identified as priority for conservation 12% of the study territory, while achieving over 90% of conservation targets (total PD). We showed that priority areas and protected areas are moderately spatially mismatched. We also showed that not all top-EDGE species were met by the procedure applied, hence we conclude that the PD-based model indicated key areas for protection, but nevertheless additional attention is needed to protect top-EDGE species. This study represents one of the most comprehensive analyses, to date, for the conservation of the native flora in the Mediterranean, incorporating both spatial distribution and evolutionary relationships. Our work on the prioritisation of threatened plant species across Italy can serve as a guide for future conservation applications.
由于人为改变生态系统,全球植物多样性面临威胁,但鉴于保护资源严重有限,因此需要可靠的物种和地点优先排序策略。我们的目标是确定保护意大利受威胁维管植物系统发育多样性(PD)的关键区域,意大利是地中海盆地物种最丰富的地区之一。我们使用空间数据和 995 种受威胁维管植物的保护状况,并应用基于系统发育的空间规划,以最小化保护成本。然后,我们确定了与现有保护区的重叠程度,并评估了基于 PD 的区域优先排序是否为具有独特系统发育的受威胁物种(EDGE)提供了足够的保护。具有成本效益的程序确定了研究区域 12%的区域作为保护的优先事项,同时实现了超过 90%的保护目标(总 PD)。我们表明,优先区域和保护区在空间上存在中度不匹配。我们还表明,并非所有顶级 EDGE 物种都符合所应用的程序,因此我们得出结论,基于 PD 的模型指示了保护的关键区域,但仍需要额外的关注来保护顶级 EDGE 物种。本研究是迄今为止对地中海地区本地植物保护进行的最全面分析之一,综合考虑了空间分布和进化关系。我们在意大利对受威胁植物物种进行的优先排序工作可以为未来的保护应用提供指导。