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Ecoregion-Based Conservation Planning in the Mediterranean: Dealing with Large-Scale Heterogeneity

机译:地中海基于生态区域的保护规划:应对大规模异质性

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摘要

Spatial priorities for the conservation of three key Mediterranean habitats, i.e. seagrass Posidonia oceanica meadows, coralligenous formations, and marine caves, were determined through a systematic planning approach. Available information on the distribution of these habitats across the entire Mediterranean Sea was compiled to produce basin-scale distribution maps. Conservation targets for each habitat type were set according to European Union guidelines. Surrogates were used to estimate the spatial variation of opportunity cost for commercial, non-commercial fishing, and aquaculture. Marxan conservation planning software was used to evaluate the comparative utility of two planning scenarios: (a) a whole-basin scenario, referring to selection of priority areas across the whole Mediterranean Sea, and (b) an ecoregional scenario, in which priority areas were selected within eight predefined ecoregions. Although both scenarios required approximately the same total area to be protected in order to achieve conservation targets, the opportunity cost differed between them. The whole-basin scenario yielded a lower opportunity cost, but the Alboran Sea ecoregion was not represented and priority areas were predominantly located in the Ionian, Aegean, and Adriatic Seas. In comparison, the ecoregional scenario resulted in a higher representation of ecoregions and a more even distribution of priority areas, albeit with a higher opportunity cost. We suggest that planning at the ecoregional level ensures better representativeness of the selected conservation features and adequate protection of species, functional, and genetic diversity across the basin. While there are several initiatives that identify priority areas in the Mediterranean Sea, our approach is novel as it combines three issues: (a) it is based on the distribution of habitats and not species, which was rarely the case in previous efforts, (b) it considers spatial variability of cost throughout this socioeconomically heterogeneous basin, and (c) it adopts ecoregions as the most appropriate level for large-scale planning.
机译:通过系统的规划方法确定了保护三个主要地中海生境的空间优先事项,即海草波西多尼亚海洋草甸,珊瑚质地层和海蚀洞。整理了有关这些栖息地在整个地中海的分布的可用信息,以绘制流域规模的分布图。根据欧盟准则设定了每种栖息地类型的保护目标。替代指标用于估计商业,非商业捕鱼和水产养殖机会成本的空间变化。使用马克思保护规划软件来评估两种规划方案的比较效用:(a)全流域方案,指的是整个地中海优先区域的选择;(b)生态区方案,其中优先区域是在八个预定义的生态区域内进行选择。尽管两种方案都需要保护大约相同的总面积才能实现保护目标,但是它们之间的机会成本有所不同。整个流域方案产生的机会成本较低,但没有代表阿尔伯兰海生态区,优先领域主要位于爱奥尼亚海,爱琴海和亚得里亚海。相比之下,生态区域的情景导致了较高的生态区域代表性和优先领域的更均匀分布,尽管机会成本较高。我们建议在生态区域一级进行规划,以确保更好地代表所选保护特征,并在整个流域内对物种,功能和遗传多样性进行充分保护。尽管有几项举措可以确定地中海的优先领域,但我们的方法很新颖,因为它结合了三个问题:(a)基于栖息地而不是物种的分布,这在以前的工作中很少见,(b )它考虑了整个社会经济异质盆地中成本的空间变异性,并且(c)将生态区域作为大规模规划的最合适水平。

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