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The use of multiscale stressors with biological condition assessments: A framework to advance the assessment and management of streams

机译:多尺度压力源进行生物状况评估:促进溪流评估和管理的框架

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摘要

Incorporating information on landscape condition (or integrity) across multiple spatial scales and over large spatial extents in biological assessments may allow for a more integrated measure of stream biological condition and better management of streams. However, these systems are often assessed and managed at an individual scale (e.g., a single watershed) without a larger regional multiscale context. In this paper, our goals were: (1) To develop a conceptual framework that could combine stream biological condition to abiotic landscape integrity (or, conversely, stressor) data at three spatial scales: watershed, catchment and stream-reach scale, to enable more targeted management actions. Measures of landscape integrity and stressors are negatively related, i.e., integrity on a 0-1 scale is equal or equivalent to stressors on a 1-0 scale. (2) To develop the framework in such a way that allows operational flexibility, whereby different indicators can be used to represent biological condition, and landscape integrity (or stressors) at various scales. (3) To provide different examples of the framework's use to demonstrate the flexibility of its application and relevance to management. Examples include stream biological assessments from different regions and states across the U.S. for fish, macroinvertebrates and diatoms using a variety of assessment tools (e.g., the Biological Condition Gradient (BCG), and an Index of Biotic Integrity (IBI)). Landscape integrity indicators comprise U.S. EPA's nationally available Index of Watershed Integrity (IWI) and Index of Catchment Integrity (ICI). and state and regional derived watershed and stream-reach scale integrity indicators. Scatterplots and a landscape integrity map were used to relate samples of stream condition classes (e.g., good, fair, poor) to watershed, catchment and stream-reach scale integrity. This framework and approach could provide a powerful tool for prioritizing, targeting, and communicating management actions to protect and restore stream habitats, and for informing the spatial extent at which management is applied.
机译:在生物评估中包含多个空间尺度和大型空间范围的景观条件(或完整性)的信息可能允许更综合的流生物条件和更好的流管理。然而,这些系统通常以单独的规模(例如,单个流域)评估和管理,而没有更大的区域多尺度背景。在本文中,我们的目标是:(1)制定一个概念框架,可以将流生物病情与非生物景观完整性(或,相反,压力源)数据相结合三个空间尺度:流域,集水区和流达尺度,以实现更多有针对性的管理行动。景观完整性和压力源的措施是否定相关的,即0-1比例的完整性等于1-0比例的压力源。 (2)以一种允许操作灵活性的方式开发框架,由此不同的指标可用于代表各种尺度的生物条件,以及景观完整性(或压力源)。 (3)提供框架使用的不同示例,以证明其应用和与管理相关性的灵活性。实例包括使用各种评估工具(例如,生物条件梯度(BCG)和生物条件梯度(IBI)指数的来自美国的不同地区和抗硅藻的流体生物学评估。景观完整性指标包括美国环保署的流域诚信指数(IWI)和集水区诚信指数(ICI)。和国家和区域衍生的流域和流达到规模完整性指标。散点图和景观完整性地图用于将流条件等级(例如,良好,公平,差)的样本与流域,集水区和流达到规模完整性。此框架和方法可以提供一个强大的工具,用于优先考虑,定位和传送管理操作以保护和恢复流栖息地,并告知应用了管理的空间范围。

著录项

  • 来源
    《Science of the total environment》 |2020年第1期|139699.1-139699.17|共17页
  • 作者单位

    Oak Ridge Institute for Science and Education (ORISE) Post-Doctoral Fellow c/o U.S. Environmental Protection Agency Center for Public Health and Environmental Assessment Pacific Ecological Systems Division 200 SW 35th St.. Corvallis OR 97333 USA;

    U.S. Environmental Protection Agency Center for Public Health and Environmental Assessment Pacific Ecological Systems Division 200 SW 35th St. Corvallis OR 97333 USA;

    U.S. Environmental Protection Agency Center for Public Health and Environmental Assessment Pacific Ecological Systems Division 200 SW 35th St. Corvallis OR 97333 USA;

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

    Stream condition; Biological condition gradient; Index of biotic integrity; Watershed; Catchment; Stream-reach, multiple spatial scales;

    机译:流条件;生物条件梯度;生物完整性指数;分水岭;集水;流达到;多个空间尺度;

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