A synecological framework for systematic conservation planning

J. Hortal, J. Lobo
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引用次数: 30

Abstract

Biodiversity conservation design, though difficult with fragmentary or insufficient biological data, can be planned and evaluated with several methods. One of them, the complementarity criterion, is commonly used nowadays to deal with the distribution of number of species (i.e., an autoecological approach). At the same time, the patchiness and spatial bias of available distribution data has also been dealt with through distribution modelling. However, both the uncertainty of the ranges estimated, and the changes in species distribution in response to changing climates, limit single-species the biodiversity attribute to be used in complementarity strategies. Several technical and theoretical advantages of composite biodiversity variables (i.e., a synecological approach) may, however, make them ideal biodiversity indicators for conservation area selection. The drawbacks associated with current biodiversity data are discussed herein, along with the possible advantages and disadvantages of conservation planning through a synecological or autoecological approach.
系统保护规划的协同框架
生物多样性保护设计虽然在生物数据不完整或不充分的情况下很困难,但可以用几种方法进行规划和评估。其中一种是互补性准则,目前常用于处理物种数量分布(即自生态方法)。同时,通过分布模型处理了现有分布数据的斑块性和空间偏差。然而,由于估计范围的不确定性和物种分布对气候变化的响应,限制了单物种生物多样性属性在互补策略中的应用。然而,复合生物多样性变量(即协同方法)的一些技术和理论优势可能使其成为保护区选择的理想生物多样性指标。本文讨论了与当前生物多样性数据相关的缺点,以及通过协同或自生态方法进行保护规划可能存在的优缺点。
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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