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A multi-scale, integrative modeling framework for setting conservation priorities at the catchment scale for the Freshwater Pearl Mussel Margaritifera margaritifera

机译:一个多尺度的综合建模框架,用于在淡水珠蚌贻贝玛格丽特玛(Margaritifera)的流域尺度上确定保护重点

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摘要

The identification and prioritization of sites for conservation actions to protect biodiversity in lotic systems is crucial when economic resources or available areas are limited. Challenges include the incorporation of multi-scale interactions, and the application of species distribution models (SDMs) to rare organism with multiple life stages. To support the planning of conservation actions for the highly endangered Freshwater Pearl Mussel Margaritifera margaritifera (FPM), this paper aims at developing an ecohydrological modeling cascade including a hydrological model (SWAT) and a hydraulic model (HEC-RAS). Building on hydrology and hydraulics. Random Forest models for potential risk to juveniles due to sand accumulation, SDMs for adults habitat niche, and a landscape connectivity assessment of dispersal potential were developed. The feasibility of such models integration was tested in the Aist catchment (630 km2) in Austria. The potential FPM habitat and the sand accumulation risk for the whole catchment were predicted with good accuracy. Results show that while the potentially suitable habitats for adults FPM cover 34% of the river network, only few habitat patches can maximize the dispersal potential (4% of the river network) and even less are showing limited impact of accumulations (3.5% of river network). No habitat patch that meets all the three criteria is available, suggesting approaches that target the patch-specific critical life stage-factors are promising for conservation.
机译:当经济资源或可用区域有限时,确定保护场所的优先级,并确定其优先次序,以保护水系统中的生物多样性。挑战包括纳入多尺度相互作用,以及将物种分布模型(SDM)应用于具有多个生命阶段的稀有生物。为了支持对高度濒危的淡水淡水贻贝玛格丽塔玛格(Margaritifera)(FPM)的保护行动的规划,本文旨在开发包括水文模型(SWAT)和水力模型(HEC-RAS)的生态水文模型级联。以水文学和水力学为基础。开发了随机森林模型,用于研究由于沙子积聚而导致的幼鱼潜在风险,成年生境生态位的SDM以及扩散潜力的景观连通性评估。在奥地利的Aist流域(630 km2)中测试了这种模型集成的可行性。预测了整个流域潜在的FPM生境和积沙风险,准确性很高。结果表明,虽然潜在的适宜成人栖息地的FPM覆盖了河网的34%,但只有很少的生境斑块可以最大程度地发挥扩散潜力(占河网的4%),而对蓄积的影响有限(占河网的3.5%)网络)。没有满足所有三个条件的栖息地斑块,这表明针对斑块特定关键生命阶段因素的方法有望用于保护。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第may20期|137369.1-137369.14|共14页
  • 作者单位

    University of Natural Resources and Life Sciences Vienna Institute of Hydrobiology and Aquatic Ecosystem Management Gregor Mendel Strasse 33 1180 Vienna Austria WasserClusterLunz - Biologische Station GmbH Dr. Carl Kupetwieser Promenade 5 3293 Lunz am See Austria;

    Institute of Environmental Engineering Warsaw University of Life Sciences 02-787 Warsaw Poland;

    Consultants in Aquatic Ecology and Engineering Blattfisch e.U. Gabelsbergerstrasse 7 4600 Wels Austria;

    Christian Doppler Laboratory for Sediment Research and Management University of Natural Resources and Life Sciences Vienna Institute of Hydraulic Engineering and River Research Muthgasse 107 1190 Vienna Austria;

    Consultants in Aquatic Ecology and Engineering Blattfisch e.U. Gabelsbergerstrasse 7 4600 Wels Austria Christian Doppler Laboratory for Sediment Research and Management University of Natural Resources and Life Sciences Vienna Institute of Hydraulic Engineering and River Research Muthgasse 107 1190 Vienna Austria;

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

    Freshwater Pearl Mussel; Ecohydrological modeling cascade; Sand accumulation modeling; Landscape connectivity; Conservation area prioritization;

    机译:淡水珍珠贻贝;生态水文模拟级联;砂粒堆积模型;景观连通性;保护区优先级;

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