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Cumulative impacts of stream burial on network structure and functional connectivity in headwater stream systems.

机译:河床掩埋对源头河水系统中网络结构和功能连通性的累积影响。

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摘要

Stream burial is common during urbanization, and disproportionately affects headwater streams. Burial undermines the physical, chemical, and spatial processes governing aquatic life, with consequences for water quality and biodiversity, both within headwaters and in downstream waters. Network changes associated with headwater burial have not been explored, limiting our understanding of changes in biotic composition with urbanization of these critical ecosystems. To address this need, I predicted stream burial across the Potomac River Basin (PRB) from impervious cover data and training observations from high-resolution aerial photography. Results across the PRB urban gradient reveal consistent burial patterns related to catchment area and topographic slope. I discuss these results in the context of physiographic constraints on stream location and urban development, including implications for management of aquatic resources. Second, I examined burial-related changes to headwater network structure and habitat connectivity, using a series of topological and distance measures, and a novel application of circuit-theoretical modeling to stream networks. Results show stream burial significantly affects both the number and size of remnant stream segments and their spatial orientation. Significant decreases in landscape connectivity were observed with burial, around ecologically important features such as confluences, and for urbanized headwater systems as a whole. Third, I used biological data to compare environmental and spatial controls on species turnover in fish and insect communities across headwater systems. Turnover was analyzed using generalized dissimilarity modeling, which accommodates variation in rates of species turnover along and between gradients, and two novel measures of resistance distance, which combine aspects of space and environment, specifically the spatial extent, orientation, and relative favorability of habitat across the landscape. Results show headwater species are more sensitive to environmental parameters, with less mobile species more sensitive to habitat fragmentation and required dispersal distances. Rapid compositional turnover occurred within short distances from the sampled reaches, suggesting headwater taxa disperse only short distances, with even small obstructions or habitat loss having potential to impact diversity within headwater systems. Knowledge gained from this research is critical for understanding the cumulative impact to stream networks, and for future decision-making allowing for urban development while protecting stream ecosystem function.
机译:在城市化过程中,河道掩埋很普遍,并且对河源径流的影响尤其大。埋葬破坏了控制水生生物的物理,化学和空间过程,对源头和下游水域的水质和生物多样性产生了影响。尚未探索与水源埋葬有关的网络变化,这限制了我们对这些关键生态系统城市化带来的生物组成变化的理解。为了满足这一需求,我通过不透水的覆盖数据和高分辨率航空摄影的训练观测结果,预测了波托马克河盆地(PRB)的河流埋葬。整个PRB城市梯度的结果表明,与流域面积和地形坡度有关的一致的埋葬方式。我将在溪流位置和城市发展的地理约束条件下讨论这些结果,包括对水生资源管理的影响。其次,我使用一系列拓扑和距离测度以及电路理论模型在河流网络中的新应用,研究了与墓葬有关的源头水网结构和栖息地连通性的变化。结果表明,河床埋藏会显着影响剩余河段的数量和大小以及它们的空间方位。在具有重要生态意义的特征(例如汇合处)周围以及整个城市水源系统中,通过埋葬观察到了景观连通性的显着下降。第三,我使用生物学数据比较了整个源水系统鱼类和昆虫群落中物种更新的环境和空间控制。使用广义差异模型对周转进行了分析,该模型适应了物种在坡度之间和之间的周转率的变化,以及两种新颖的阻力距离度量,这些度量结合了空间和环境的各个方面,特别是空间范围,方向和栖息地相对适宜性景观。结果表明,水源物种对环境参数更敏感,流动性较低的物种对生境破碎化和所需的分散距离更敏感。快速的成分更新发生在距采样河段很短的距离内,这表明源头生物分类群仅在很短的距离内分散,即使很小的障碍物或栖息地的丧失也可能影响源头水域系统内的多样性。从这项研究中获得的知识对于理解对河流网络的累积影响,以及在允许城市发展同时保护河流生态系统功能的未来决策中至关重要。

著录项

  • 作者

    Weitzell, Roy Everett, Jr.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Environmental science.;Conservation biology.;Water resources management.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 195 p.
  • 总页数 195
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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