课题基金 / 基金详情

Physical and Physiological Growth Contraints of Key, North Sea Gelatinous Zooplankton

Physical and Physiological Growth Contraints of Key, North Sea Gelatinous Zooplankton
北海主要凝胶状浮游动物的物理和生理生长限制
批准号:
184296258
负责人:
Professor Dr. Maarten Boersma, since 8/2013
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2010
资助国家:
德国
项目状态:
已结题
起止时间:
2009-12-31 至 2013-12-31

项目摘要

项目成果

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中文摘要
翻译
在许多海洋系统中,胶状浮游动物的丰度正在增加,由于缺乏检查生长生理学的对照实验,其营养动力学后果未知。本研究探讨了北海四种主要胶状捕食者的生物能量学(代谢:合成代谢和分解代谢):Aurelia aurita, Cyanea capillata, Pleurobrachia pileus和Mnemiopsis leidyi。在水华条件下,这两种孢子虫和两种栉水母都可以对浮游动物资源施加自上而下的控制,限制能量流向其他主要消费者。此外,它们可以直接捕食主要海洋鱼类的早期幼虫。这些胶状捕食者的捕食压力在流体动力学辐合区特别大,比如锋面:北海的滋养动力学“热点”。本提案计划的研究应该能够量化这些主要捕食者的能量和营养需求,并测量和模拟食物数量和食物质量(以元素比例的变化表示)对四种胶状浮游动物生长和繁殖的相互作用。该研究扩展了先前的结果,表明与其他次要消费者(例如小鱼)相比,食物营养化学计量的变化如何影响水母的生产力存在根本差异。我们的实验测试了关于海洋系统中主要捕食者的生态化学计量学和资源有限增长的基本假设。从我们的生理实验中获得的知识将用于创建动态能量预算和基于个体的胶质浮游动物觅食和生长模型(ibm),据我们所知,这是第一次在这样的模型中不仅考虑能量,而且考虑食物质量。如果我们希望了解水母的生长动态和资源限制,这些实验室和建模活动是必不可少的,并且是获得这些捕食者在北海和其他地方的营养动力学影响的可靠预测的先决条件。
英文摘要
The abundance of gelatinous zooplankters is increasing in many marine systems with unknown trophodynamic consequences due to a lack of controlled experiments examining growth physiology. This proposed research explores the bioenergetics (metabolism: anabolism and catabolism) of four, key gelatinous predators in the North Sea: Aurelia aurita, Cyanea capillata, Pleurobrachia pileus and Mnemiopsis leidyi. During bloom conditions, each of these two scyphozoan and two ctenophore species can exert top-down control on zooplankton resources, limiting the flow of energy to other primary consumers. Moreover, they can directly prey upon early larval stages of key marine fish species. Predation pressure by these gelatinous predators is particularly intense at hydrodynamic convergence zones such as fronts: trophodynamic “hot spots” in the North Sea. The research planned in this proposal should allow the quantification of energetic and nutrient demands of these key predators, and measure and model the interactive effects of food quantity and food quality (expressed as changes in elemental ratios) on growth and reproduction in the four gelatinous zooplankters. The research expands upon previous results suggesting fundamental differences in how changes in nutrient stoichiometry of food affect the productivity of jellyfish compared to other secondary consumers (e.g., larval fish). Our experiments test fundamental hypotheses regarding ecological stoichiometry and resource-limited growth in key predators in marine systems. Knowledge gained from our physiological experiments will be used to create dynamic energy budgets and individual-based models (IBMs) of foraging and growth for gelatinous zooplankton, and it is to our knowledge the first time that not only energy, but also food quality is taken into account in such models. These laboratory and modelling activities are essential if we hope to understand growth dynamics and resource limitation in jellyfish and are a perquisite for gaining robust projections of the trophodynamic impacts of these predators in the North Sea and elsewhere.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
Respiration rates of the polyps of four jellyfish species: Potential thermal triggers and limits
四种水母息肉的呼吸速率:潜在的热触发因素和限制
DOI: 10.1016/j.jembe.2014.05.005
发表时间: 2014
期刊: Journal of Experimental Marine Biology and Ecology
影响因子: 2
作者: [Gambill]
通讯作者: Gambill
海外基金