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Collaborative Research: Wildlife subsidies interact with discharge to influence ecosystem function of a large African river

Collaborative Research: Wildlife subsidies interact with discharge to influence ecosystem function of a large African river
合作研究:野生动物补贴与排放相互作用,影响非洲大河的生态系统功能
批准号:
1354062
负责人:
Emma Rosi
金额:
$39.09万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-05-15 至 2018-04-30

项目摘要

项目成果

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中文摘要
翻译
动物迁徙是自然界最引人注目的景观之一,并可能导致生态过程的重大工程。例如,迁徙动物有可能在生态系统之间移动大量的碳、氮和其他重要的营养物质。东非的马拉河支持着世界上最大的陆上迁徙:150万头角马和4,000多头非洲羚羊。该项目将使用小规模和全流实验、河流采样和理论模型来测试牛羚和鱼输入马拉河的营养物质如何与河流排放相互作用,以影响生态系统过程,如初级生产、营养物质循环和整个生态系统的新陈代谢。马拉河是为数不多的未受管制的河流之一,受到大量野生动物种群的严重影响,并提供了一个独特的研究机会。调查结果将提高对大型野生动物发挥重要作用的生态系统的理解,并为与野生动物消失或被人类和驯养动物取代的系统进行比较提供基线。马拉河对塞伦盖蒂-马拉生态系统至关重要,为近100万农村贫困人口提供水源。水质下降与伤寒和霍乱的爆发以及维多利亚湖的富营养化有关。此外,马赛马拉国家公园的管理人员还对角马迁徙和大规模溺水事件表示关注。研究还将涉及人类对河流的投入,这可能会让决策者了解如何更有效地处理污水,使该地区受益。该项目将培训来自美国的本科生、研究生和博士后,以及来自东非的研究生。与国家地理学会和世界野生动物基金会(WWF)的伙伴关系将通过印刷、视频和基于网络的举措传播研究成果。世界自然基金会的合作伙伴关系将使用马拉的实时监测数据,现场摄像机捕捉的照片和博客更新,向利益相关者,资源管理者和公众传播调查结果。
英文摘要
Animal migrations are some of the most remarkable spectacles of nature and can result in significant engineering of ecological processes. For example, migrating animals have the potential to move large amounts of carbon, nitrogen, and other important nutrients among ecosystems. The Mara River in East Africa supports the largest remaining overland migration in the world: 1.5 million wildebeest and over 4,000 hippopotami. This project will use small-scale and whole-stream experiments, river sampling and theoretical models to test how nutrient inputs into the Mara River by wildebeest and hippopotami interact with river discharge to influence ecosystem processes such as primary production, nutrient cycling, and whole-ecosystem metabolism. The Mara River is one of the few remaining unregulated rivers heavily influenced by large wildlife populations, and provides a unique opportunity for research. Findings will improve understanding of ecosystems where large wildlife play an important role, and provide a baseline for comparison with systems where wildlife have disappeared or been replaced by humans and domesticated animals.This research will have relevance to regional concerns relating to both wildlife and water quality. The Mara River is critical to the Serengeti Mara ecosystem and provides water for nearly one million rural poor. Declining water quality has been linked to outbreaks of typhoid and cholera, and eutrophication of Lake Victoria. In addition, wildebeest migration and mass drowning events are of local concern to managers in the Maasai Mara National Park. Research will also address human inputs into the river, which may inform decision makers about how more effective sewage treatment could benefit the region. The project will train undergraduate students, graduate students, and a postdoc from the USA, and graduate students from around East Africa. Partnerships with the National Geographic Society and World Wildlife Fund (WWF) will distribute research results through print, video and web-based initiatives. The WWF partnership will use real-time monitoring data from the Mara, photos from live camera traps, and blog updates to disseminate findings to stakeholders, resource managers, and the public.
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会议论文
LTREB: Streams to Screens: Bringing the Hubbard Brook Watershed Ecosystem Record (HB-WatER) into the 21st Century
LTER: Baltimore Ecosystem Study: Synthesis of long-term studies of how multiple human and biophysical factors interact to drive ecological change of an urban ecosystem
LTER: Dynamic heterogeneity: Investigating causes and consequences of ecological change in the Baltimore urban ecosystem
COLLABORATIVE RESEARCH: Using empirical and modeling approaches to quantify the importance of nutrient spiraling in rivers
国内基金
海外基金
Research on Quantum Field Theory without a Lagrangian Description
  • 批准号:
    24ZR1403900
  • 项目类别:
    省市级项目
  • 资助金额:
    --
  • 批准年份:
    2024
  • 负责人:
    SATOSHI NAWATA
  • 依托单位:
Cell Research
Cell Research
Cell Research (细胞研究)