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Physical and biological controls of primary production in the ice-covered Canadian Arctic marine system

Physical and biological controls of primary production in the ice-covered Canadian Arctic marine system
冰雪覆盖的加拿大北极海洋系统初级生产的物理和生物控制
批准号:
418397-2013
负责人:
Mundy, Christopher
金额:
$1.97万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2015
资助国家:
加拿大
项目状态:
已结题
起止时间:
2015-01-01 至 2016-12-31

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中文摘要
翻译
北极冰盖海洋环境正在经历前所未有的变化,最近海冰面积加速下降,水团特征和分布发生变化。因此,了解极地海洋生态系统的关键组成部分--冰盖初级生产的时间安排和控制至关重要。例如,更早地终止冰藻水华可能有利于从高能量的北极专业物种转向来自南方的能量较少的通才物种,这部分是因为冰藻产量较低,但也是因为与较长的无冰期相关的浮游植物产量增加。我的研究计划的长期目标是全面了解冰盖生态系统中控制北极海洋初级生产的过程,以更好地预测该系统将如何应对不断变化的环境。我未来5年的具体研究目标是:(1)研究次冰层透射率对冰藻光生理学、生物量和分类组成的光谱依赖性,以进一步发展冰下遥感技术;(2)调查控制冰藻生产、积累和损失的时空变异性的物理和生物过程;(3)确定冰融水藻类对高紫外线(UV)和可见光水平的光保护策略;(4)研究控制冰下浮游植物生产时间和幅度的机制。这些目标将通过实地研究、实验和藻类生长模拟的互动方法来实现。通过实现这些目标,我和我的团队(包括5名学士、2名硕士)这将增加我们对冰盖生态系统初级生产的物理和生物控制方面的知识,开发新的观测技术,激发新的想法,填补知识空白,并提高我们对生态系统建模的能力。冰盖的减少,对航运交通的预期,以及增加对我们北方了解的政治压力,都突显了上述工作的重要性。
英文摘要
The Arctic ice-covered marine environment is undergoing unprecedented changes with recent accelerated declines in sea ice cover and changes to water mass characteristics and distribution. Understanding the timing and controls of ice-covered primary production, a critical component of the polar marine ecosystem, is therefore critically important. For example, an earlier termination of the ice algal bloom could favor a switch from high-energy Arctic specialist species to less energy-rich generalists from the south, due, in part, to lower ice algal production, but also to enhanced phytoplankton production associated with a longer ice-free period. The long-term goal of my research program is to obtain a comprehensive understanding of processes controlling Arctic marine primary production in the ice-covered ecosystem to better predict how the system will respond to its changing environment. My specific research objectives over the next 5 years are to: (1) examine the spectral dependence of sub-ice transmitted irradiance on ice algal photophysiology, biomass, and taxonomic composition to further develop under-ice remote sensing techniques; (2) investigate physical and biological processes that control spatial and temporal variability of ice algal production, accumulation and loss; (3) determine photoprotective strategies of ice melt water algae to high ultraviolet (UV) and visible light levels; and (4) investigate the mechanisms that control the timing and magnitude of under-ice phytoplankton production. The objectives will be met through an interactive approach of field studies, experiments, and algal growth modeling. By meeting these objectives, my team and I (including 5 B.Sc., 2 M.Sc. and 3 Ph.D. students over the grant's tenure) will increase our knowledge on physical and biological controls of primary production in the ice-covered ecosystem, develop new observational techniques, fuel novel ideas, fill knowledge gaps, and improve our capability to model the ecosystem. A declining ice cover, expectation of increased shipping traffic, and political pressure for an increased understanding of our North highlight the importance of the work described above.
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Physical and biological controls of primary production in the ice-influenced Canadian Arctic marine system
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