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出 处:《生态学报》2003年第2期346-352,共7页Acta Ecologica Sinica
基 金:国家重点基础研究发展规划资助项目 ( G2 0 0 0 0 1 860 7);国家杰出青年科学基金资助项目 ( 3982 5 1 0 6)~~
摘 要:空间异质性是生态学系统的一个普遍特性 ,生态学家对它在生态学中的重要性已取得了比以往更深刻的认识。试图从空间异质性的含义 ,空间异质性与尺度和等级的关系 ,空间异质性的定量描述 ,空间异质性对生物和非生物过程的影响 ,以及空间异质性的动态等 5个方面综述了有关空间异质性的生态学研究的新进展。Spatial heterogeneity in ecological systems is a common understanding of ecologists. The importance of spatial heterogeneity in ecology lies in its ubiquity as a feature of ecosystems and in the ecological effects it raises. Spatial heterogeneity, the complexity and/or variability of ecological systems in space, associates with scale. The degree to which heterogeneity is expressed depends on scale. The hierarchical theory throws light on understanding spatial heterogeneity in ecological systems. Ecological systems can be seen as multi-scale hierarchical mosaic patches. Many quantitative methods, such as nested quadrat analysis, semivariograms, fractals, trend-surface analysis, spectral analysis, etc. provide powerful tools to describe spatial heterogeneity. Spatial heterogeneity has very important influences on both abiotic and biotic processes. Most organisms are benefited from environmental heterogeneity. Modeling and experimental studies over landscape scale is a new challenge to ecologists in studies of dynamics of spatial heterogeneity. Experimental studies on striding across boundaries between landscape patches of some clonal plants can link researches on behaviors of plant individuals and dynamics of patches and landscapes. In the future, defining a system appropriately within which heterogeneity is analyzed and identification of appropriate null models for studies of the effects of heterogeneity are important issues.
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