首页> 外文学位 >Linking hydroperiod with water use and nutrient accumulation in wetland tree islands.
【24h】

Linking hydroperiod with water use and nutrient accumulation in wetland tree islands.

机译:将水期与湿地树木岛上的水分利用和养分积累联系起来。

获取原文
获取原文并翻译 | 示例

摘要

Many large terrestrial ecosystems have patterned landscapes as a result of a positive feedback system between vegetation communities and environmental factors. One example is tree island habitats in the Florida Everglades. Although they only occupy a small portion of the Everglades landscape, tree islands are important features as the focus of nutrient accumulation and wildlife biodiversity in the Everglades ecosystem. The hardwood hammock community on the elevated head of tree island habitats can accumulate high phosphorus concentration in the otherwise P-limited Everglades ecosystem. In this dissertation, I examined two hypotheses derived from the chemohydrodynamic nutrient accumulation model, which suggests that high transpiration of tree island hammock plants is the driving force for nutrient accumulation in tree island soil. According to this model, I hypothesized that tree islands with lower dry season transpiration should have less phosphorus accumulated than the tree islands with higher dry season transpiration. By examining the water use and nutrient status from 18 tree islands in both slough (perennially wet) and prairie (seasonally wet) locations, I was able to compare water availability and nutrient accumulation in slough and prairie tree islands with different marsh hydroperiods. Chapter 1 uses elemental and stable isotope analysis to look at water stress and nutrient concentration in tree island plants. I showed that the prairie tree island plants suffer from drought stress during the dry season, when the marshes in the prairies dry out. Prairie tree islands also have lower soil and plant P concentration than the slough tree islands. Moreover, I showed that foliar N isotope ratio serves as a stable proxy for community level P availability for tree island plants, and prairie tree island plants have less P available than slough tree island plants. In Chapter 2, I showed that the satellite imagery derived normalized difference water index (NDWI) provides a robust indicator of community level canopy water content of these tree islands. NDWI, used as a proxy for water status, was positively related to foliar N isotope ratio, which suggests that water availability is linked to nutrient availability in the tree island hardwood hammock plant communities. These findings are consistent to the chemohydrodynamic nutrient accumulation model. In Chapter 3, I used sap flow sensors on individual trees to provide a real-time measurement of plant transpiration. I showed that tree island plant transpiration is affected by multiple factors including weather fluctuations, marsh water depth regulated by local water management, and canopy structure of different tree islands. Overall, my dissertation establishes a link between tree island plant water use and nutrient accumulation. It could be potentially important for future restoration plan of tree islands and Everglades hydrological management.
机译:由于植被群落和环境因素之间建立了积极的反馈系统,许多大型陆地生态系统已将景观图案化。一个例子是佛罗里达大沼泽地的树岛栖息地。尽管它们仅占大沼泽地景观的一小部分,但作为大沼泽地生态系统中养分积累和野生生物多样性的焦点,树木岛却是重要的特征。在树岛栖息地高架头上的硬木吊床群落可以在磷限制的大沼泽地生态系统中积累高磷浓度。在本文中,我考察了由化学流体动力学养分累积模型得出的两个假设,这些假设表明,树岛吊床植物的高蒸腾作用是树根土壤中养分累积的驱动力。根据该模型,我假设干旱季节蒸腾量较低的树岛应比干旱季节蒸腾量较高的树岛积累的磷更少。通过检查泥沼(常年湿润)和草原(季节性湿润)位置的18个树岛的水分利用和养分状况,我能够比较不同沼泽水文时期的泥沼和草原树岛的水分利用和养分积累。第1章使用元素和稳定同位素分析来研究树木植物中的水分胁迫和养分浓度。我证明了草原树木岛植物在干旱季节遭受干旱胁迫,当时草原上的沼泽地干dry了。草原树木岛的土壤和植物中的磷含量也低于脱落树木岛。此外,我证明了叶面N同位素比可以作为树岛植物群落水平P有效性的稳定代表,而草原树岛植物的P有效性要比矮树植物低。在第二章中,我展示了卫星图像导出的归一化差异水指数(NDWI)为这些树岛的社区水平冠层水含量提供了一个有力的指标。 NDWI用作水状况的代名词,与叶面氮同位素比呈正相关,这表明水的可利用性与树岛硬木吊床植物群落中的养分可利用性有关。这些发现与化学流体动力养分累积模型是一致的。在第3章中,我在单个树木上使用了液流传感器来实时测量植物的蒸腾作用。我发现树岛植物的蒸腾受多种因素的影响,包括天气波动,受当地水管理调节的沼泽水深以及不同树岛的冠层结构。总的来说,我的论文建立了树上植物的水分利用与养分积累之间的联系。这对于未来的树木岛恢复计划和大沼泽地水文管理可能具有潜在的重要意义。

著录项

  • 作者

    Wang, Xin.;

  • 作者单位

    University of Miami.;

  • 授予单位 University of Miami.;
  • 学科 Biology Ecology.;Remote Sensing.;Biogeochemistry.;Hydrology.
  • 学位 Ph.D.
  • 年度 2011
  • 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