课题基金 / 基金详情

Estuarine Ecosystem Adaptation Due to Environmental Variability and Watershed Restoration

Estuarine Ecosystem Adaptation Due to Environmental Variability and Watershed Restoration
环境变化和流域恢复导致的河口生态系统适应
批准号:
2045200
负责人:
Scott Markwith
金额:
$1.25万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2021
资助国家:
美国
项目状态:
已结题
起止时间:
2021-03-01 至 2023-02-28

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中文摘要
翻译
这篇博士论文将研究生态恢复、海平面上升和环境变化对沿海生态系统食物网变化的综合影响。河口产生了高产的娱乐和商业渔业,养活了数十亿人,推动了经济发展。许多大规模的生态系统恢复工作的目标是改变影响下游沿海沃茨的功能、生产力和生物多样性的淡水系统。 与此同时,环境的变化正在驱动海平面、温度和降水的变化,这些变化正在影响这些河口系统的相同特征。本研究开发的生态系统模型将帮助资源管理者和恢复实践者设计和规划沿海生态系统的有益成果,因为这些共同发生的变化驱动因素之间存在复杂的相互作用。和分析受环境变化和大规模自然灾害的耦合影响的生态系统,大规模的恢复工作将导致空间和时间的河口生态系统对这些大规模的驱动程序的反应的新知识。该项目解决了以下问题:1)盐度范围和变化、水深、温度和底部沉积物的变化将如何影响河口鱼类、无脊椎动物和海草覆盖的分布?2)未来的时空生态系统变化,水文恢复和环境变化的相互作用,将如何影响生产力,渔业上岸量和食物网结构的河口?博士生将开发栖息地适宜性模型,以纳入学生以前校准和验证的空间生态系统模型,并预测未来的河口动态与空间明确和时间动态食物网模型的发展。模拟的生态系统具有广泛的空间和时间盐度变化,具有经济价值的体育渔业,商业渔业的苗圃栖息地,受干扰的流域和水文状况,生态系统规模的恢复努力,并且容易受到环境变化和海洋的无处不在的威胁,该奖项反映了NSF的法定使命,并被认为是值得支持的,使用基金会的知识价值和更广泛的影响审查标准进行评估。
英文摘要
This doctoral dissertation will examine the combined influences of ecological restoration, sea-level rise, and environmental variability on changes in the food webs of coastal ecosystems. Estuaries produce highly productive recreational and commercial fisheries that feed billions and drive economies. Many large-scale ecosystem restoration efforts target changes in freshwater systems that impact the functioning, productivity, and biodiversity of downstream coastal waters. Simultaneously, environmental variability is driving changes in sea-level, temperature, and precipitation that are influencing the same characteristics of these same estuarine systems. The ecosystem model developed by this research will help resource managers and restoration practitioners design and plan for beneficial outcomes for coastal ecosystems given the complex interactions of these co-occurring drivers of change.Modeling, prediction, and analysis of ecosystems impacted by the coupled effects of environmental variability and large-scale restoration efforts will lead to new knowledge of spatial and temporal estuarine ecosystem responses to these large-scale drivers. The project addresses the following questions: 1) How will changes in salinity range and variability, water depth, temperature, and bottom sediments affect the distribution of fishes, invertebrates, and seagrass coverage in estuaries? 2) How will future spatial and temporal ecosystem changes, resulting from the interactions of hydrological restoration and environmental change, affect productivity, fisheries landings, and food web structure in estuaries? The doctoral student will develop habitat suitability models to incorporate into the student’s previously calibrated and validated aspatial ecosystem model and predict future estuarine dynamics with the development of a spatially explicit and temporally dynamic food web model. The modeled ecosystem has broad spatial and temporal salinity variation, has an economically valuable sport fishery, nursery habitat for commercial fisheries, disturbed watershed and hydrologic regime, ecosystem-scale restoration effort, and is vulnerable to the ubiquitous threat of environmental variability and sea-level rise that reflects future changes in systems worldwide.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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