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Temperature Regulation of Top-Down Control in a Pacific Upwelling System

Temperature Regulation of Top-Down Control in a Pacific Upwelling System
太平洋上升流系统自上而下控制的温度调节
批准号:
2128592
负责人:
John Bruno
金额:
$94.44万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-04-01 至 2025-03-31

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中文摘要
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英文摘要
Nearly all the animals that inhabit the ocean are "cold-blooded" or ectothermic, meaning their body temperatures match the temperature of the ocean around them. This has important consequences for their physiology and more broadly for the way marine ecosystems function. When ectotherms warm up, their metabolism increases; meaning they breathe more rapidly, and eat more just to stay alive. This is bad news for prey since a warm predator is a hungry predator. But warming also enables prey species to crawl or swim away more quickly when being hunted. Thus, everything speeds up in warm water. Energy flows more quickly from the sun to seaweeds (via photosynthesis), to the herbivores, then on up to the large predators at the top of the food chain. The research team is testing these ideas in the Galápagos Islands to determine how temperature influences marine ecosystems. Ongoing work in this iconic natural laboratory is helping marine ecologists understand the role of temperature and how this and other ecosystems could function in the future as climate change warms the ocean. Other broader impacts of the project include student training and on-site outreach to tourists and the local community about ocean warming and some of the lesser-known species that inhabit the Galápagos. The broad goal of this project is to understand the effect that temperature has on patterns and processes in upwelling systems. Specifically, the team is measuring the temperature-dependence of herbivory and carnivory in rocky subtidal habitats of the Galápagos. They are performing field experiments to measure the relative and interactive effects of temperature, herbivory, and nutrient flux on the productivity and standing biomass of benthic macroalgae. Additionally, they are using in situ predation assays across spatial and temporal temperature gradients and mesocosm experiments to determine the relationship between ocean temperature and predation intensity for predator-prey pairings including whelk–barnacle, sea star–urchin, and fish–squid.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.
期刊论文(4)
专著(0)
科研奖励(0)
会议论文
DOI: 10.1515/bot-2023-0079
发表时间: 2024-02-19
期刊: BOTANICA MARINA
影响因子: 2.2
作者: [Gabrielson,Paul W., Smith,Anna Claire, Brandt,Margarita]
通讯作者: Brandt,Margarita
Smooth and Spiky: The Importance of Variability in Marine Climate Change Ecology
平滑与尖峰:海洋气候变化生态学中变异性的重要性
DOI: 10.1146/annurev-ecolsys-022323-082123
发表时间: 2023
期刊: and Systematics
影响因子: --
作者: [Witman, Jon D., Pershing, Andrew J., Bruno, John F.]
通讯作者: Bruno, John F.
The Role of Temperature in Regulating Herbivory and Algal Biomass in Upwelling Systems
Collaborative Research: Assessing the Effect of Environmental Stressors on Invertebrate Innate Immunity using a Coral Pathosystem
SBIR Phase I: FRET-Aptamer Tests for Treated Wastewater
RAPID: Lionfish invasion of the Mesoamerican reef: community invasibility and the evolutionary response of prey avoidance behavior to a novel predator
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