Collaborative Research: Ecosystem Evolution and Sustainability of Nutrient Enriched Coastal Saltmarshes
Collaborative Research: Ecosystem Evolution and Sustainability of Nutrient Enriched Coastal Saltmarshes
批准号:
1719418
负责人:
Jennifer Bowen
金额:
$4.69万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-10-01 至 2018-02-28
中文摘要
概述:盐沼提供了一系列重要的生态系统服务,但也面临着多种人为威胁,包括养分富集和海平面加速上升。初级生产力、分解、沉积和海平面上升之间的复杂相互作用决定了相对于海平面上升速率的临界点,超过该临界点,沼泽就转化为开放水域。硝酸盐-沿海氮富集的主要形式-作为一个强大的电子受体刺激微生物分解,并作为肥料刺激植物生长的潜力,通过关键的植物和微生物过程中的相互作用反馈转化盐沼,潜在地降低相对于海平面上升的临界点。我们迫切需要了解沿海富集对盐沼的影响,部分原因是盐沼在全球范围内迅速消失,部分原因是盐沼已成为大规模恢复战略的重点,这些战略耗资数百万至数十亿美元,作为沿海城市的风暴缓冲区和减缓气候变化的“蓝色”碳库。潮汐盐沼实验是一个独特的生态系统规模的测试,营养富集如何影响生态系统的结构,功能和长期的可持续性。与公认的盐沼模型相反,潮汐能已表明,营养物质可以驱动盐沼损失;然而,重要的问题,因果关系,以及地貌和生态系统功能是否会继续改变或达到一个新的景观平衡与营养负荷,仍然没有答案。考虑到项目迄今为止观察到的持续变化,PI将继续进行总共13年的实验,以解决:(1)长期景观演变(自催化或自限制?),(2)植物机制(环境过滤是否选择地下生物量较低、耐涝性较低的植物?); (3)微生物机制(NO3-是否消除了对微生物的资源限制,并不成比例地刺激河岸微生物/分解者?);(4)对生态系统功能的影响(随着溪缘沼泽的丧失,盐沼保留的N是否减少?)研究人员将使用全生态系统实验操作,遗传方法,常见的花园实验,并在生态系统组件中富集15 N-NO3-addition和delta 15 N值的组合,以了解生态系统地貌和N循环变化的机制。该项目包括新的研究人员,以解决地貌变化,植物和微生物遗传学,基因表达,整个系统的生态系统养分循环和反硝化作用的问题。智力优点:这个跨学科的项目涉及生态系统,植物,微生物,生物地球化学和地质研究人员将测试有关控制生态系统结构和功能的基本问题和长期可持续性的营养丰富的湿地。世界范围内许多基于碎屑的湿地生态系统(北方,苔原,咸水和淡水湿地)出乎意料地跨越临界点,这表明有必要重新评估我们的理论和理解的性质和速度的干扰。对自然生态系统临界点的控制以及人类活动如何改变这些临界点的预测性理解是生态系统科学的一个重大挑战。更广泛的影响:该项目更广泛的社会影响在于解决一个全球性的重要问题,即沿海富营养化。教育影响包括通过学科之间的结构化轮换和实践实地研究,加强高中到研究生的跨学科培训。与少数民族服务机构和RUI女子学院建立的新伙伴关系将吸引城市、贫困和少数民族学生。整个生态系统实验作为科学界教育和研究基础设施的生活实验室得到支持。MBL的科学新闻计划和帕克河国家野生动物保护区将被用来向公众展示结果。通过与环境保护局和瓦奎特湾国家河口研究保护区共同主办的讲习班进行的管理推广将吸引地方、州和联邦管理人员的参与。
英文摘要
Overview: Salt marshes provide a broad suite of critical ecosystem services but also face multiple anthropogenic threats including nutrient enrichment and accelerated sea-level rise. Complex interactions between primary production, decomposition, sedimentation, and sea level rise determine the tipping point relative to the rate of sea-level rise beyond which the marsh converted to open water. Nitrate - the dominant form of coastal N-enrichment - acts as both a powerful electron acceptor stimulating microbial decomposition and as a fertilizer stimulating plant growth with the potential to transform saltmarshes through interactive feedbacks in key plant and microbial processes, potentially lowering the tipping point relative to sea-level rise. It is urgent that we understand the impacts of coastal enrichment on saltmarshes in part because of their globally rapid loss, and in part because salt marshes have become the focus of large-scale restoration strategies costing millions to billions of dollars to serve as storm buffers for coastal cities and as "blue" carbon pools to mitigate climate change. The TIDE saltmarsh experiment is a unique ecosystem-scale test of how nutrient enrichment affects ecosystem structure, function, and long-term sustainability. Contrary to well-accepted saltmarsh models, TIDE has shown that nutrients can drive saltmarsh loss; however, important questions about causality, and whether geomorphic and ecosystem function will continue to change or reach a new landscape equilibrium with nutrient loading, remain unanswered. Given the ongoing changes observed the project to date the PI will continue the experiment for a total of 13 years to address: (1) long-term landscape evolution (autocatalytic or self-limiting?), (2) plant mechanisms (Is environmental filtering selecting for plants with lower belowground biomass that are less flood tolerant?); (3) microbial mechanisms (Does NO3- remove resource limitation on the microbes and disproportionately stimulate creek bank denitrifiers/decomposers?); and (4) the consequences for ecosystem function (With loss of creek edge marsh, do saltmarshes retain less N?). The investigators will use a combination of whole-ecosystem experimental manipulations, genetic approaches, common garden experiments, and enriched 15N-NO3 - additions and delta 15N values in ecosystem components to understand mechanisms underlying ecosystem geomorphic and N cycle changes. This project incorporates new researchers to address questions of geomorphologic change, plant and microbial genetics, gene expression, whole-system ecosystem nutrient cycling, and denitrification.Intellectual Merit: This interdisciplinary project involving ecosystem, plant, microbial, biogeochemical, and geological researchers will test fundamental questions about controls on ecosystem structure and function and the long-term sustainability of nutrient enriched wetlands. Many detritus-based wetland ecosystems worldwide (boreal, tundra, salt- and fresh-water wetlands) are unexpectedly crossing tipping points suggesting there is a need to re-assess our theories and understanding on the nature and pace of their response to perturbation. Developing a predictive understanding of the controls on tipping points in natural ecosystems, and how these tipping points are altered by human activities, represents a major challenge in ecosystem science.Broader Impacts: The broader social impacts of this project lie in addressing a globally important issue, coastal eutrophication. The educational impacts include enhancing high school to graduate student interdisciplinary training through a structured rotation among disciplines and hands-on field research. New partnerships with minority serving institutions and a RUI women's college will engage urban, underprivileged and minority students. A whole-ecosystem experiment is supported as a living lab for education and research infrastructure for the scientific community. The MBL's Science Journalism Program and the Parker River National Wildlife Refuge will be used to showcase the results to the public. Management outreach through workshops co-hosted with EPA and the Waquoit Bay National Estuarine Research Reserve will engage local, state and federal managers.
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Collaborative Research: Quantifying the effects of different nitrogen forms on marsh resilience to environmental change
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批准号:2203322
-
项目类别:Continuing Grant
-
资助金额:$102.79万
-
财政年份:2022
-
负责人:Jennifer Bowen
-
依托单位:
Dissertation Research: Assessing the vulnerability of salt marsh carbon storage to nutrient enrichment using an integrated meta-omics framework
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批准号:1701748
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项目类别:Standard Grant
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资助金额:$1.99万
-
财政年份:2017
-
负责人:Jennifer Bowen
-
依托单位:
CAREER: Salt marsh restorations: a structured experiment for learning and teaching about salt marshes, microbial diversity, and ecosystem function
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批准号:1719446
-
项目类别:Continuing Grant
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资助金额:$57.65万
-
财政年份:2016
-
负责人:Jennifer Bowen
-
依托单位:
CAREER: Salt marsh restorations: a structured experiment for learning and teaching about salt marshes, microbial diversity, and ecosystem function
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批准号:1350491
-
项目类别:Continuing Grant
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资助金额:$87.52万
-
财政年份:2014
-
负责人:Jennifer Bowen
-
依托单位:
Collaborative Research: Ecosystem Evolution and Sustainability of Nutrient Enriched Coastal Saltmarshes
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批准号:1353140
-
项目类别:Continuing Grant
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资助金额:$22.02万
-
财政年份:2014
-
负责人:Jennifer Bowen
-
依托单位:
Postdoctoral Research Fellowship in Microbial Biology for FY 2004
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批准号:0400819
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项目类别:Fellowship Award
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资助金额:$10.0万
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财政年份:2005
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负责人:Jennifer Bowen
-
依托单位:
国内基金
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