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How do Changes in Land Use Patterns Affect Species Diversity? an Approach for Optimizing Landscape Configuration

机译:土地利用模式的变化如何影响物种多样性?一种优化景观配置的方法

摘要

Heterogeneity of agricultural landscapes is supposed to be of significant importance for species diversity in agroecosystems (Weibull et al. 2003). Thus it is necessary to account for structural aspects of landscapes in land management decision processes. Spatial optimization models of land use can serve as tools for decision support. These models can aim at various landscape functions like nutrient leaching and economical aspects (Seppelt and Voinov 2002), water quality (Randhir et al. 2000) or habitat suitability (Nevo and Garcia 1996). However neighbourhood effects stay unconsidered in these approaches. In this paper we present an optimization model concept that aims at maximizing habitat suitability of selected species by identifying optimum spatial configurations of agricultural land use patterns. Bird species with diverging habitat requirements were chosen as target species. Habitat suitability models for these species are used to set up the performance criterion. Landscape structure is quantified by landscape metrics (McGarigal et al. 2002) estimated within the species home range. Statistical significance of these metrics for species presence was proven by a logistic regression model (Fielding and Haworth 1995). The landscape is represented by a grid based data set. Based on a genetic algorithm the optimization task is to identify an optimum configuration of model units. These model units are defined by contiguous cells of identical land use. Within this concept we can study how optimum but possibly artificial landscapes vary in structure depending on the selected species for which habitat suitability is maximized.
机译:农业景观的异质性对于农业生态系统中的物种多样性具有重要意义(Weibull等人,2003)。因此,有必要在土地管理决策过程中考虑景观的结构方面。土地利用的空间优化模型可以用作决策支持的工具。这些模型可以针对各种景观功能,例如营养物淋洗和经济方面(Seppelt和Voinov 2002),水质(Randhir等2000)或栖息地适宜性(Nevo和Garcia 1996)。但是,在这些方法中尚未考虑邻域效应。在本文中,我们提出了一种优化模型的概念,旨在通过确定农业土地利用模式的最佳空间配置来最大化所选物种的栖息地适宜性。选择栖息地要求不同的鸟类作为目标物种。这些物种的栖息地适应性模型用于建立性能标准。景观结构是通过物种居所范围内估计的景观指标(McGarigal等,2002)来量化的。这些度量标准对物种存在的统计意义已通过逻辑回归模型得到证明(Fielding和Haworth 1995)。景观由基于网格的数据集表示。基于遗传算法,优化任务是确定模型单元的最佳配置。这些模型单位由具有相同土地用途的连续单元定义。在这个概念内,我们可以研究如何根据栖息地适应性最大化的所选物种在结构上如何优化但可能是人工景观。

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