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Can we detect changes in Arctic ecosystems?

Can we detect changes in Arctic ecosystems?
我们能否检测到北极生态系统的变化?
批准号:
NE/P005896/1
负责人:
Rowena Stern
金额:
$12.96万
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2017
资助国家:
英国
项目状态:
已结题
起止时间:
2017 至 --

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中文摘要
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英文摘要
Ecosystems are communities of organisms that interact with each other and their environment. They are often considered in terms of food webs or chains, which describe the interactions between different organisms and their relative hierarchies, known as trophic position. Ocean ecosystems provide key services, such as nutrition, control of climate, support of nutrient cycling and have cultural significance for certain communities. It is thus important that we understand how changes to the environment reshape ecosystems in order to manage climate change impacts.The Arctic Ocean is already being heavily impacted by climate change. It is warming faster than any other ocean region and as it absorbs fossil fuel emissions, it is gradually acidifying. Arctic sea ice is declining by 10% per decade. This affects the availability of sea ice habitats for organisms from plankton to mammals and modifies the ocean environment. Finally, the Arctic is affected by changes in the magnitude of water movement to and from the Pacific and Atlantic Oceans and composition of these waters. Thus Arctic ecosystems are being impacted by multiple concurrent stressors and must adapt. To understand how Arctic ecosystems will evolve in response to multiple stressors, it is crucial to evaluate the effects of on going change. Often these questions are tackled by studies that focus on a specific ecosystem in one location and document the various components of the food chain. However the Arctic is diverse, with a wide range of environments that are responding to unique stressors differently. We require a new approach that can provide information on Arctic ecosystems from a pan-Arctic perspective over decadal timescales. To effectively monitor changes to pan-Arctic ecosystems requires tracers that focus on key ecosystem components and provide quantitative information on ecosystem structure, providing information for management and conservation of ecosystem services. Our goal is to respond to this challenge. We will focus simultaneously on the base of the food chain, controlled by the activity of marine phytoplankton, and key Arctic predators, harp and ringed seals. Seals are excellent candidates to monitor the food web due to their pan-Arctic distribution and foraging behaviour, which means they are exposed to the changing environment. Nitrogen and carbon stable isotopes are often used to examine ecosystems as they are modified during trophic transfer up the food chain. Hence, they can quantify seal trophic position and food chain length, key determinants of ecosystem structure. Crucial in this context however is the isotope value of the base of the food web, known as the isoscape, which is itself affected by a range of environmental characteristics and fluctuates in space and time. Equally, by virtue of changing migration patterns, seals themselves may feed on similar prey in different isoscapes, which would affect the interpretation of ecosystem structure from stable isotopes. These are the major challenges in using stable isotopes.We will link stable isotopes to novel tracers of the food web, known as biomarkers. When these tracers are compared against observations of the shifting isoscape and data on seal foraging, they permit seals to be used to monitor the Arctic ecosystem by quantifying their trophic position and overall food chain length. Via a range of observational platforms, our new food web tracers will be mechanistically linked to the spatial and seasonal trends in the Arctic isoscape and seal behaviour. By then combining historical observations from around the Arctic basin with state of the art ocean and seal population modelling, we can quantify past and future changes in Arctic ecosystems. This will provide information on past changes to Arctic ecosystems, but also put in place an approach that can be used to monitor future changes and aid in the management and conservation of ecosystem services
期刊论文(6)
专著(0)
科研奖励(0)
会议论文
Climate variability and multi-decadal diatom abundance in the Northeast Atlantic
东北大西洋的气候变化和数十年硅藻丰度
DOI: 10.1038/s43247-022-00492-9
发表时间: 2022
期刊: Communications Earth & Environment
影响因子: 7.9
作者: [Edwards M]
通讯作者: Edwards M
Reduce, Reuse, Recycle in the Arctic Ocean With the Power of Microbes
利用微生物的力量减少、再利用、回收北冰洋
DOI: 10.3389/frym.2020.00090
发表时间: 2020
期刊: Frontiers for Young Minds
影响因子: --
作者: [Zäncker B]
通讯作者: Zäncker B
DOI: 10.5194/bg-2021-279-supplement
发表时间: 2021
期刊:
影响因子: --
作者: [Price E]
通讯作者: Price E
Sensitivity of plankton assemblages to hydroclimate variability in the Barents Sea
巴伦支海浮游生物组合对水文气候变化的敏感性
DOI: 10.5194/bg-2021-279
发表时间: 2021
期刊:
影响因子: --
作者: [Price E]
通讯作者: Price E
Understanding trophic links between marine plankton to consumers to improve assessments of UK pelagic habitats
Tracking Marine sources of a Cholera outbreak using high throughput molecular methods on archival samples
国内基金
海外基金
中国的城市变化及其自组织的空间动力学
  • 批准号:
    40335051
  • 项目类别:
    重点项目
  • 资助金额:
    90.0万元
  • 批准年份:
    2003
  • 负责人:
    周一星
  • 依托单位: