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A fuzzy logic method to assess the relationship between landscape patterns and bird richness of the Rolling Pampas

机译:一种评价滚动草原景观格局与鸟类丰富度关系的模糊逻辑方法

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摘要

The loss of biodiversity in productive ecosystems is a global concern of the last decades. The Rolling Pampas of Argentina is an intensively cropped region that underwent important land use and landscape change, with different impacts on biodiversity of both plants and animals. Land use type and habitat complexity are hypothesized to be the most important factors determining species richness in agro-ecosystems. But it is not easy to define these attributes in an unambiguous fashion, or determine their interactions at different spatial scales. A fuzzy logic approach allows overcoming some of these problems by using linguistic variables and logic rules to relate them and formulate hypothesis. We constructed fuzzy logic models to study how bird species richness in the Rolling Pampas is related to land use and habitat complexity, and how these variables interact at two spatial scales. Results showed that at the local scale, landscape complexity is the most important factor determining species numbers; trees and bodies of water are the most influential complexities. The effect of local scale landscape attributes was modified depending on the context at broader scales, so that agricultural sites were enriched when surrounded by more favorable landscapes. There was a high dispersion in the predicted/observed value relationship, indicating that landscape factors interact in more complex ways than those captured by the models we used. We suggest that the fuzzy logic approach is suitable for working with biological systems, and we discuss the advantages and disadvantages of its use.
机译:生产生态系统中生物多样性的丧失是最近几十年来的全球关注。阿根廷的滚动南美大草原是一个集约种植区,经历了重要的土地利用和景观变化,对动植物的生物多样性产生了不同的影响。假设土地利用类型和生境复杂性是决定农业生态系统物种丰富度的最重要因素。但是以明确的方式定义这些属性或确定它们在不同空间尺度上的相互作用并不容易。模糊逻辑方法允许通过使用语言变量和逻辑规则将它们联系起来并提出假设来克服其中的一些问题。我们构建了模糊逻辑模型,以研究滚动南美大草原上鸟类的丰富度与土地利用和栖息地复杂性之间的关系,以及这些变量如何在两个空间尺度上相互作用。结果表明,在地方尺度上,景观的复杂性是决定物种数量的最重要因素。树木和水域是最有影响力的复杂性。在更大范围内,根据上下文修改了局部尺度景观属性的影响,因此,当农业环境被更有利的景观包围时,农业场所变得更加丰富。预测/观测值之间的关系存在高度分散,表明景观因素以比我们使用的模型捕获的方式更复杂的方式相互作用。我们建议模糊逻辑方法适合与生物系统一起使用,并讨论使用它的优缺点。

著录项

  • 来源
    《Landscape Ecology》 |2012年第6期|p.869-885|共17页
  • 作者单位

    IFEVA/CONICET, Departamento de Recursos Naturales y Ambiente. Facultad de Agronomía, Universidad de Buenos Aires, Av. San Martín, 4453 (C1417DSE), Buenos Aires, Argentina;

    INRA, SAD Paysage, 65, Rue de Saint Brieuc. CS 84215, 35042, Rennes Cedex, France;

    IFEVA/CONICET, Departamento de Recursos Naturales y Ambiente. Facultad de Agronomía, Universidad de Buenos Aires, Av. San Martín, 4453 (C1417DSE), Buenos Aires, Argentina;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Agroecosystem; Biodiversity; Fuzzy logic; Pampas region; Argentina;

    机译:农业生态系统;生物多样性;模糊逻辑;蒲苇地区;阿根廷;

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