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Benthic macroinvertebrates and ecological assessments: Examining the biological potential of urban stream restoration in the San Francisco Bay area.

机译:底栖大型无脊椎动物和生态评估:检查旧金山湾地区城市河流恢复的生物潜力。

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摘要

Urbanization is a growing land-use change that has complex and pervasive impacts on aquatic communities. Alterations associated with urbanization can cause dramatic shifts in biological assemblages of benthic macroinvertebrates in urban streams, including reductions in the abundance and richness of sensitive taxa. The decline of biological communities in urban areas can result from a wide variety of stressors, which makes management and restoration of these systems difficult. This dissertation examines biological potential thresholds that can be used to simplify the complexity of urban stressors and facilitate the protection and restoration of aquatic resources in urbanized catchments.;As the impact of urbanization on aquatic communities increases, the preservation of unimpacted areas is crucial for understanding natural systems in the absence of disturbance. Therefore, I studied the life history of an undescribed species of egg-mass predator (Diptera: Scathophagidae: Acanthocnema) of a pollution-sensitive caddisfly species (Trichoptera: Uenoidae: Neophylax rickeri) in a catchment located in a peri-urban area. This predator exhibited a bivoltine life cycle in which the winter cohort fed exclusively on N. rickeri egg masses and the spring cohort fed on several different egg mass types.;I also conducted multifaceted post-project assessments of several urban stream restoration projects in the San Francisco East Bay (including Baxter Creek in El Cerrito, California and Strawberry Creek on the University of California, Berkeley campus). Results from the Baxter Creek study found initial increases in biological and habitat condition within the first 1-3 years following the project's completion, but no further improvements over the long-term (3-10 years). The second study of a riparian revegetation project along Strawberry Creek found that native plant cover and diversity successfully increased post-restoration.;Lastly, I examined the response of benthic macroinvertebrates (as biological indicators) across a gradient of urbanization in three climatic regions of the United States (Pacific coast, Midwest, and Mid-Atlantic) and used quantile regression to define biological potential thresholds. The resulting multi-metric index (composed of compositional, functional feeding group, and habit metrics) showed a similar response among regions. The biological potential thresholds are intended to use in setting realistic restoration objectives within urban streams.
机译:城市化是一种日益增长的土地利用变化,对水生社区产生了复杂而普遍的影响。与城市化有关的变化可能导致城市河流底栖无脊椎动物的生物组合发生剧烈变化,包括敏感类群的丰度和丰度降低。城市地区生物群落的减少可能是由各种各样的压力源造成的,这使得这些系统的管理和恢复变得困难。本论文探讨了生物潜在阈值,可用于简化城市压力源的复杂性,并促进城市化集水区中水生资源的保护和恢复。随着城市化对水生社区的影响增加,保护未受影响地区对于理解这一点至关重要。没有干扰的自然系统。因此,我研究了位于郊区附近的一个集水区中一个对污染敏感的瓢虫物种(Trichoptera:Uenoidae:Neophylax rickeri)的一种未描述的卵质捕食者(双翅目:鞘翅目:棘突科)的生活史。该捕食者表现出了双伏特的生命周期,其中冬季队列仅以里克猪笼草的卵块为食,春季队列以几种不同的卵块为食。旧金山东湾(包括加利福尼亚州埃尔塞里托的百特溪和加利福尼亚大学伯克利分校的草莓溪)。 Baxter Creek研究的结果发现,在项目完成后的最初1-3年内,生物和栖息地条件初步有所增加,但长期(3-10年)没有进一步改善。对草莓河沿岸河岸植被恢复项目的第二项研究发现,原生植物的覆盖和多样性成功地增加了恢复后的生活。最后,我考察了三个气候区域内城市化梯度下底栖大型无脊椎动物(作为生物指标)的响应。美国(太平洋海岸,中西部和大西洋中部),并使用分位数回归来定义生物潜力阈值。所得的多指标指数(由组成,功能性进食组和习惯指标组成)显示出区域之间的相似响应。生物潜力阈值旨在用于在城市溪流中设定现实的恢复目标。

著录项

  • 作者

    Purcell, Alison Holmes.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Biology Ecology.;Biology Entomology.;Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 233 p.
  • 总页数 233
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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