首页> 外文学位 >Watershed Controls on Stream Thermal Regimes: Effects on Salmon Spawn Timing and Species Interactions.
【24h】

Watershed Controls on Stream Thermal Regimes: Effects on Salmon Spawn Timing and Species Interactions.

机译:流热状况下的分水岭控制:对鲑鱼产卵时间和物种相互作用的影响。

获取原文
获取原文并翻译 | 示例

摘要

Global surface temperatures are warming at unprecedented rates and are expected to continue to warm for the rest of the century. Yet, we know very little about how freshwater ecosystems will respond to a warmer climate. Regardless of uncertainties in global climate projections and unknown thermal responses in freshwater ecosystems, recent responses of freshwater environments to climate variation can provide important insight to future conditions. In this dissertation, I describe the role of geomorphic variation within river basins as a driver of thermal heterogeneity among streams in southwest Alaska. Further, I describe the importance of this thermal heterogeneity in supporting variation in salmon life histories and the consequences of this life-history diversity for species that directly and indirectly depend on salmon.;In Chapter 2, I explore how geomorphic variation produces intraspecific diversity in salmon spawn timing throughout a river system due to large thermal differences among tributaries within a river basin. Here, salmon spawn later in warmer tributaries draining flatter watersheds with lakes and earlier in cooler tributaries draining steeper, high elevation watersheds. Research in Chapter 3 further explores the mechanisms for heterogeneity in water temperature among streams across the geomorphic gradient. Here, I show how snowmelt buffers streams from warmer air temperatures in steeper watersheds. In Chapter 4, I show how lakes, well-known geomorphic features in boreal river systems, affect the thermal regimes of outlet-rivers through wind driven upwelling events. Rivers draining lakes are traditionally thought to be thermally stable environments, but I show how wind action on large upstream lakes can create temperature excursions in the river by 10°C in few hours. Chapter 5 explores how the variation in salmon spawn timing among streams, supported by differences in water temperature, is associated with the phenology in a riparian plant. Specifically, I test the hypothesis that a pollinator mutualism indirectly ties riparian plant flower timing to the seasonal influx of salmon resources to streams.;Taken together, this research highlights how geomorphic variation within river basins filters climate responses in freshwater streams and rivers. Thus, river drainages may express a range of reactions to environmental change due to their geomorphic complexity. Aquatic species that have adapted specific life-history strategies to features within river basins may experience and exploit local filtering of climate forcing rather than responding to regionally coordinated climate responses.
机译:全球地表温度正以前所未有的速度变暖,并有望在本世纪下半年继续变暖。但是,我们对淡水生态系统如何应对温暖的气候知之甚少。无论全球气候预测的不确定性以及淡水生态系统中未知的热响应,近来淡水环境对气候变化的响应都可以为未来的状况提供重要的见识。在这篇论文中,我描述了流域内地貌变异作为阿拉斯加西南部河流间热非均质性驱动因素的作用。此外,我描述了这种热异质性对支持鲑鱼生活史上的变异的重要性以及这种生命史多样性对直接或间接依赖鲑鱼的物种的后果的影响;在第二章中,我探讨了地貌变异如何在鲑鱼中产生种内多样性。由于流域内各支流之间的热差异很大,鲑鱼在整个河流系统中的产卵时间都不同。在这里,鲑鱼在较暖的支流中排泄较晚,从而排泄了平坦的湖泊流域,较早在较冷的支流中排泄了较陡峭的高海拔流域。第三章的研究进一步探讨了跨地貌梯度的溪流中水温异质性的机制。在这里,我展示了融雪如何缓冲陡峭流域中较高的气温所产生的气流。在第4章中,我展示了湖泊(北方河流系统中众所周知的地貌特征)如何通过风力上升流事件影响出水口的热态。传统上,向湖泊排水的河流被认为是热稳定的环境,但是我展示了大型上游湖泊的风力作用如何在几个小时内使河流温度升高10°C。第五章探讨了河水中鲑鱼产卵时间的变化如何受水温差异的影响与河岸植物的物候相关。具体而言,我测试了一个传粉媒介共生关系,间接地将河岸植物的花期与鲑鱼资源的季节性涌入溪流联系起来。该研究共同强调了流域内的地貌变化如何过滤淡水溪流和河流的气候响应。因此,由于河流排水的地貌复杂性,它们可能会对环境变化产生一系列反应。对河流流域的特征采用了特定的生活史策略的水生生物可能会体验并利用当地对气候强迫的过滤,而不是对区域协调的气候响应做出反应。

著录项

  • 作者

    Lisi, Peter Joseph.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Aquatic sciences.;Hydrologic sciences.;Ecology.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号