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The Importance of Temporal and Spatial Vegetation Structure Information in Biotope Mapping Schemes: A Case Study in Helsingborg, Sweden

机译:时空植被结构信息在生物群落定位方案中的重要性:以瑞典赫尔辛堡为例

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摘要

Temporal and spatial vegetation structure has impact on biodiversity qualities. Yet, current schemes of biotope mapping do only to a limited extend incorporate these factors in the mapping. The purpose of this study is to evaluate the application of a modified biotope mapping scheme that includes temporal and spatial vegetation structure. A refined scheme was developed based on a biotope classification, and applied to a green structure system in Helsingborg city in southern Sweden. It includes four parameters of vegetation structure: continuity of forest cover, age of dominant trees, horizontal structure, and vertical structure. The major green structure sites were determined by interpretation of panchromatic aerial photographs assisted with a field survey. A set of biotope maps was constructed on the basis of each level of modified classification. An evaluation of the scheme included two aspects in particular: comparison of species richness between long-continuity and short-continuity forests based on identification of woodland continuity using ancient woodland indicators (AWI) species and related historical documents, and spatial distribution of animals in the green space in relation to vegetation structure. The results indicate that (1) the relationship between forest continuity: according to verification of historical documents, the richness of AWI species was higher in long-continuity forests; Simpson's diversity was significantly different between long- and shortcontinuity forests; the total species richness and Shannon's diversity were much higher in long-continuity forests shown a very significant difference. (2) The spatial vegetation structure and age of stands influence the richness and abundance of the avian fauna and rabbits, and distance to the nearest tree and shrub was a strong determinant of presence for these animal groups. It is concluded that continuity of forest cover, age of dominant trees, horizontal and vertical structures of vegetation should now be included in urban biotope classifications.
机译:时空植被结构对生物多样性质量有影响。但是,目前的生物群落定位方案仅在有限的范围内将这些因素纳入了定位中。这项研究的目的是评估包括时间和空间植被结构的改进的生物群落定位方案的应用。根据生物群落分类,开发了一种改进的方案,并将其应用于瑞典南部赫尔辛堡市的绿色结构系统。它包括植被结构的四个参数:森林覆盖的连续性,优势树的年龄,水平结构和垂直结构。通过解释全色航拍照片并进行实地调查确定了主要的绿色结构地点。根据修改后的分类的每个级别,构建了一组生物群落图。该计划的评估特别包括两个方面:基于古代林地指标(AWI)物种和相关历史文献的林地连续性识别,基于长连续性森林和短连续性森林之间的物种丰富度比较,以及该区域动物的空间分布与植被结构有关的绿色空间。结果表明:(1)森林连续性之间的关系:根据历史文献的验证,长连续性森林中AWI物种的丰富度较高;长期森林和短期森林之间,辛普森的多样性差异很大。在长连续性森林中,物种的总丰富度和香农的多样性更高,表现出非常显着的差异。 (2)林分的空间植被结构和年龄会影响鸟类动植物和兔子的丰富度和丰度,而距最近树木和灌木的距离是这些动物种群存在的重要决定因素。结论是,森林覆盖的连续性,优势树的年龄,植被的水平和垂直结构现在应包括在城市生物群落分类中。

著录项

  • 来源
    《Environmental Management》 |2012年第2期|p.459-472|共14页
  • 作者单位

    College of Forestry, Northwest A & F University, Yangling 712100, China,Department of Landscape Management, Design and Construction, Swedish University of Agricultural Sciences, 23053 Alnarp, Sweden;

    College of Forestry, Northwest A & F University, Yangling 712100, China,Department of Landscape Management, Design and Construction, Swedish University of Agricultural Sciences, 23053 Alnarp, Sweden;

    Department of Landscape Management, Design and Construction, Swedish University of Agricultural Sciences, 23053 Alnarp, Sweden;

    Department of Landscape Management, Design and Construction, Swedish University of Agricultural Sciences, 23053 Alnarp, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biotope mapping; vegetation structure; ancient woodland indicator species; forest continuity; biodiversity;

    机译:生物群落定位;植被结构古代林地指示物种;森林连续性;生物多样性;
  • 入库时间 2022-08-17 13:28:43

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