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Collaborative Research: Foraminiferal Ecological Response to Ocean Conditions in the Northwest Pacific Ocean

Collaborative Research: Foraminiferal Ecological Response to Ocean Conditions in the Northwest Pacific Ocean
合作研究:有孔虫对西北太平洋海洋条件的生态响应
批准号:
2048785
负责人:
Claudia Benitez-Nelson
金额:
$37.74万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2021
资助国家:
美国
项目状态:
已结题
起止时间:
2021-04-01 至 2024-03-31

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中文摘要
翻译
有孔虫是微小的、有壳的原生生物,生活在整个海洋中。它们外壳的化学成分随着生长过程中海洋环境的变化而变化。海底常见的有孔虫化石被用来重建过去的海洋条件和地球气候历史。新的数据显示,东北太平洋有孔虫物种的混合正在迅速变化,以响应海洋变暖事件,通常被称为海洋热浪。这项研究将提高我们在古气候研究中使用温带和高纬度物种的能力。它还将有助于量化现代气候变化如何改变该地区现存的物种。这项研究将包括在浮游生物网和沉积物陷阱中收集标本。它将量化沉积物陷阱部署期间存在的物种,并将其外壳的组成与它们生长时的海洋条件进行比较。少量标本将在实验室培养,其他标本将用于基因分析。该项目将有助于展示现代海洋条件如何影响该地区物种的混合,以及生长条件如何影响其外壳的组成。该项目将支持俄勒冈州立大学(OSU)的两名研究生和俄勒冈州立大学和南卡罗来纳大学的多名本科生。该研究项目中的有孔虫壳将在MicroCT扫描仪上成像以生成3D图像。然后,这些图像将提供给更广泛的社区用于研究和教学目的。该项目将提高温带和高纬度浮游有孔虫在古气候研究中的效用,并量化现代气候变化对东北太平洋有孔虫组合的影响。主要目标是扩大我们对温带和高纬度有孔虫物种地球化学的生态和环境控制的认识,量化它们对现代海洋条件变化(特别是海洋热浪)的反应,并限制有孔虫沉入海底时的地球化学特征。这将通过一项重要的实地和实验室工作来实现,其中包括新收集的浮游生物拖曳,短期船舶培养实验,存档的浮游生物拖曳样本的组合数据,以及部署两个系泊沉积物捕集器。提出的多管齐下的采样策略将为了解这一重要海洋边缘地区有孔虫的生物地球化学和生态学提供关键样本,增加它们在了解过去海洋条件方面的效用,并为了解高纬度物种如何应对未来气候变化奠定基础。高度控制的培养实验将量化微量元素在温带到极地物种壳内变化的动力学和机制。这些实验结果将为解释温带至高纬度地区化石有孔虫的地球化学特征提供重要信息,拓宽我们对高纬度和温带有孔虫物种微量元素含量控制的认识,提高其在古海洋重建中的应用价值。沉积物捕集器、浮游生物拖和养殖标本将被分析其微量元素和同位素组成。将对捕获的活体标本进行分析,以确定其基因型和微生物组。有孔虫和沉积物陷阱样本在这个项目中没有被pi使用,将被保存在俄勒冈州立大学海洋地质储存库中,供科学界将来研究。该奖项反映了美国国家科学基金会的法定使命,并通过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,被认为值得支持。
英文摘要
Foraminifera are tiny, shelled protists that live throughout the ocean. The chemical composition of their shells varies as a function of the ocean conditions during growth. Fossil foraminifera, which are common on the seafloor, are used to reconstruct past ocean conditions and Earth’s climate history. New data show that the mix of foraminifera species present in the Northeast Pacific Ocean is changing rapidly in response to ocean warming events, commonly referred to as marine heat waves. This study will improve our ability to use temperate and high-latitude species in paleoclimate research. It will also help quantify how modern climate change is modifying the species present in this region. The study will include collecting specimens in plankton nets and sediment traps. It will quantify the species present during the sediment trap deployment and will compare the composition of their shells to ocean conditions when they grew. A small number of specimens will be grown in the laboratory and additional specimens will be used for genetic analyses. This project will help show how modern ocean conditions impact the mix of species present in this region and how growth conditions influence the composition of their shells. This project will support two graduate students at Oregon State University (OSU) and multiple undergraduate students at OSU and at the University of South Carolina. Foraminifera shells from this research project will be imaged on a MicroCT scanner to generate 3D images. Those images will then be made available to the broader community for research and teaching purposes. The project will improve the utility of temperate and high-latitude planktic foraminifera in paleoclimate research and quantify the effects of modern climate change on foraminifera assemblages in the Northeast Pacific Ocean. The main objectives are to expand our knowledge of the ecology and environmental controls on the geochemistry of temperate and higher-latitude foraminifera species, quantify their response to modern changes in oceanographic conditions (specifically marine heat waves), and constrain foraminiferal geochemical signatures as they sink to the seafloor. This will be achieved through a significant field-based and laboratory effort that includes newly collected plankton tows, short-duration ship-based culture experiments, assemblage data from archived plankton tow samples, and the deployment of two moored sediment traps. The proposed multi-pronged sampling strategy will provide critical samples needed to understand the biogeochemistry and ecology of foraminifera in this important ocean margin region, increase their utility in understanding past oceanographic conditions, and lay the groundwork for understanding how high-latitude species will respond to future climate change. Highly controlled culture experiments will quantify trace element incorporation dynamics and mechanisms responsible for intrashell trace element variability in temperate to polar species. The results of these experiments will offer important information that can be used to interpret the geochemistry of fossil foraminifera in temperate to high-latitude regions, broaden our understanding of the controls on trace element incorporation in high-latitude and temperate foraminifera species, and improve their utility in paleoceanographic reconstructions. Sediment trap, plankton tow, and cultured specimens will be analyzed for their trace element and isotopic composition. Live captured specimens will be analyzed to determine their genotype and microbiome. Foraminifera and sediment trap samples not used by the PIs in this project will be archived at the OSU Marine Geological Repository for future studies by the scientific community.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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会议论文
Collaborative Research: Three decades of foraminiferal assemblages in the Santa Barbara Basin provide a link between present and past
Collaborative Research: US GEOTRACES GP17-OCE and GP17-ANT: Export and remineralization rates of bioactive and particle reactive trace elements using thorium-234
Collaborative Research: Assessing the relative importance of small vs large particles as sources of nutrition to abyssal communities
Impact of Ocean Acidification on Planktonic Foraminifera in the California Current System During the Last 300 Years
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)