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Collaborative Research: Mechanisms of resistance and resilience to system-wide loss of a keystone predator in an iconic intertidal community

Collaborative Research: Mechanisms of resistance and resilience to system-wide loss of a keystone predator in an iconic intertidal community
合作研究:标志性潮间带群落中关键捕食者全系统丧失的抵抗力和恢复力机制
批准号:
1735743
负责人:
Tarik Gouhier
金额:
$8.4万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-08-15 至 2021-07-31

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中文摘要
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英文摘要
Diseases that compromise the health of predators can lead to large, abrupt and sometimes unexpected changes in the structure of ecosystems. This project will combine field surveys, manipulative experiments and mathematical models to both understand and predict the ecosystem-level effects of the unprecedented sea star wasting disease (SSWD) outbreak that devastated populations of Pisaster ochraceus, a critical predator, across the West Coast of the United States. Specifically, the project will determine (1) the ecological and environmental factors that promote vs. compromise the resilience of intertidal ecosystems to sea star wasting disease, (2) document the pace and extent of recovery from this major disturbance across the West Coast of the United States, and (3) identify hotspots of resilience to sea star wasting disease that may serve as important conservation targets to preserve these iconic ecosystems. The research will address important societal needs by cross-training undergraduate and graduate students in disease ecology, marine biology, mathematical modeling and biostatistics. Students from underrepresented groups will be recruited broadly from West Coast states. Each summer, four undergraduate students will be trained in rocky intertidal field research techniques. SSWD-focused modules will be developed and used in ecology courses at each institution to emphasize the importance of quantitative and interdisciplinary training for addressing important questions in biology. Graduate students will work with the Oregon Migrant Leadership Institute (OMLI) for migrant workers and their children to create workshops for students about SSWD. The PIs will continue interacting with the media and public groups, and will expand outreach activities through The Nature Conservancy and CoastWatch-sponsored workshops for high school teachers interested in involving students in sea star monitoring to ensure that the results of this project are disseminated beyond traditional academic circles. Finally, a series of model-based interactive web modules will be created as part of this project to illustrate the ecosystem-level effects of sea star wasting disease to the broader public. The studies on this model system will lead to a better understanding of how other ecosystems may resist or be vulnerable to human activities (e.g., fishing, hunting and habitat destruction) that asymmetrically influence top predators.Diseases that threaten the health of predators can reduce their top-down influence and thus lead to significant changes in ecosystem structure. In 2013-15, sea star wasting disease (SSWD) devastated populations of Pisaster ochraceus, the original keystone predator, along the west coast of North America in one of the most extensive marine disease events ever recorded. This project will leverage this unprecedented outbreak to test and extend keystone predation theory by documenting and explaining the temporal pace, geographical extent, and spatiotemporal co-occurrence of ecosystem recovery from SSWD. The disease event also provides an opportunity to test the resistance and resilience of a well-studied ecosystem at an unprecedented scale. At each of 14 sites, the investigators will quantify processes that underlie potential resistance of the system to loss of sea stars (prey recruitment and colonization, mussel growth, predation intensity, facilitative interactions among sessile organisms, and the effect of alternative predators). In the latter experiments, the PIs will conduct caging exclusion experiments to test the effects of both larger (e.g., birds) and smaller (e.g., whelks) alternative predators on prey recolonization of cleared plots. The investigators will also conduct a novel set of experiments to manipulate factors affecting facilitation of mussels by barnacles and turf-forming algae. All these empirical studies will be used to parameterize modeling efforts that will explore the longer-term and larger-scale implications of these processes, both for this system and for other ecosystems. Specifically, the PIs will fit a novel spatially-explicit metacommunity model to the empirical data in order to determine the relative importance of intraspecific and interspecific resistance vs. resilience mechanisms for the recovery of intertidal ecosystems following a historical, coastal-scale SSWD disturbance.
期刊论文(14)
专著(0)
科研奖励(0)
会议论文
Trait-mediated indirect effects in a natural tidepool system
自然潮汐池系统中特质介导的间接效应
DOI: 10.1007/s00227-019-3469-5
发表时间: 2019
期刊: Marine Biology
影响因子: 2.4
作者: [Gravem, Sarah A., Morgan, Steven G.]
通讯作者: Morgan, Steven G.
North-East Pacific: Interactions on intertidal hard substrata and alteration by human impacts
东北太平洋:潮间带硬质基质的相互作用以及人类影响造成的改变
DOI: 10.1017/9781108235792.011
发表时间: 2019
期刊: Interactions in the Marine Benthos: Global Patterns and Processes
影响因子: --
作者: [Fenberg, P., Menge, B.a.]
通讯作者: Menge, B.a.
Connecting Science to Policymakers, Managers, and Citizens
将科学与政策制定者、管理者和公民联系起来
DOI: 10.5670/oceanog.2019.317
发表时间: 2019
期刊: Oceanography
影响因子: 2.8
作者: [Lubchenco, Jane, Menge, Bruce, Barth, John, Carr, Mark, Caselle, Jennifer, Chan, Francis, Fulton-Bennett, Heather, Gaines, Steven, Kroeker, Kristy, Milligan, Kristen]
通讯作者: Milligan, Kristen
Community Responses to Climate-Related Variability and Disease: The Critical Importance of Long-Term Research
社区对气候相关变异和疾病的反应:长期研究的至关重要
DOI: 10.5670/oceanog.2019.313
发表时间: 2019
期刊: Oceanography
影响因子: 2.8
作者: [Menge, Bruce, Caselle, Jennifer, Barth, John, Blanchette, Carol, Carr, Mark, Chan, Francis, Gravem, Sarah, Gouhier, Tarik, Lubchenco, Jane, McManus, Margaret]
通讯作者: McManus, Margaret
12
    A novel time-structured framework to account for the cryptic effects of temperature fluctuations on population dynamics
    • 批准号:
      2048894
    • 项目类别:
      Standard Grant
    • 资助金额:
      $97.99万
    • 财政年份:
      2021
    • 负责人:
      Tarik Gouhier
    • 依托单位:
    Coral-microbial interactions as determinants of disease dynamics
    • 批准号:
      1458158
    • 项目类别:
      Standard Grant
    • 资助金额:
      $65.99万
    • 财政年份:
      2015
    • 负责人:
      Tarik Gouhier
    • 依托单位:
    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)