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Collaborative Research: Determining the Field Metabolic Rate of Marine Predators: Integrating Accelerometry and Respirometry to Bridge the Gap Between the Laboratory and the Field

Collaborative Research: Determining the Field Metabolic Rate of Marine Predators: Integrating Accelerometry and Respirometry to Bridge the Gap Between the Laboratory and the Field
合作研究:确定海洋捕食者的野外代谢率:集成加速度测量法和呼吸测量法以弥合实验室和现场之间的差距
批准号:
1156145
负责人:
Samuel Gruber
金额:
$12.76万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-04-01 至 2015-03-31

项目摘要

项目成果

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中文摘要
翻译
能量学是生态学的中心主题,新陈代谢可能是决定整个生物系统结构的主要因素。尽管顶级捕食者在海洋生态系统中的重要性以及了解其全球人口下降的影响的必要性,但令人惊讶的是,对上层营养水平的能量流知之甚少。这种知识上的差距是由于难以评估海洋捕食者的代谢率,以及我们无法将实验得出的代谢率与自然栖息地中自由放养动物的代谢率联系起来。新的加速度测量技术现在第一次使这种联系成为可能。由于整体动态身体加速度(ODBA)已被证明与许多脊椎动物类群的耗氧量密切相关,我们可以使用这种潜在的变革技术来推导自由放养的海洋捕食者的时间-能量预算。本研究将整合呼吸测量和加速度测量技术的使用,以弥合实验室和现场之间的差距,三种不同行为的鲨鱼的代谢率。研究员会在实验室内对装有加速度计的动物进行呼吸测量实验,以确定每个物种在不同游泳速度和水温下的代谢率与ODBA之间的关系。利用这些关系,PI然后将使用加速度计进行现场实验,以计算鲨鱼在自然栖息地数天内的绝对能量消耗。由于加速度计还提供了可以量化特定鲨鱼行为的数据,因此PI将能够在标准代谢率和活跃代谢率之间进行划分,并确定这种关系在不同温度下如何变化。这方面将有影响,预测如何季节性或长期变化的海洋表面温度可能会影响的影响外温食肉动物对他们的prey.Broader影响:这项工作将提供数据和一个新的方法来估计鲨鱼在自然环境中的自然行为模式的能量需求。 这是计算鲨鱼对生态系统其他组成部分的营养影响,从而也计算鲨鱼减少的后果的一个重要步骤。 这项工作将是通过莫特海洋实验室(MML)正在进行的NSF-REU计划的学生实习项目的基础,该计划为美国大学生提供研究经验,特别关注在科学和工程领域代表性不足的少数群体。PI参与了与Untamed Science的独特合作,拍摄他们的工作,并用它来说明特定章节电影的科学概念,这将使他们的工作能够接触到全国数百万的K-12学生。该项目还将通过在MML的公共水族馆(每年约有40万游客)举办新展览,资助一种与公众联系的创造性方式。这充分利用了公众对鲨鱼的广泛兴趣,并允许游客使用基于加速计的视频游戏控制器控制数字鲨鱼。鲨鱼的能量水平将被过度的尾拍耗尽,并通过喂食事件得到补充,游客将不得不平衡喂食成功的价值与更高的ODBA和快速能量耗尽的成本。
英文摘要
Energetics is a central theme in ecology, and metabolism may be the primary factor determining the structure of biological systems as a whole. Despite the importance of top level predators in marine ecosystems and the need to understand the impact of their global population declines, surprisingly little is known about energy flow in upper trophic levels. This gap in knowledge is due to the difficulty of assessing the metabolic rate of marine predators and our inability to link experimentally derived metabolic rates to those of free-ranging animals in their natural habitat. Novel accelerometry technology is now making this link possible for the first time. Because Overall Dynamic Body Acceleration (ODBA) has been shown to correlate closely with oxygen consumption in numerous vertebrate taxa, we can use this potentially transformational technique to derive time-energy budgets for free-ranging marine predators.Intellectual Merit: This study will integrate the use of respirometry and accelerometry technology to bridge the gap between laboratory- and field-based metabolic rates for three species of sharks with different behaviors. The PIs will conduct respirometry experiments on accelerometer-equipped animals in the laboratory to determine the relationship between metabolic rate and ODBA for each species over a range of swim speeds and water temperatures. Using these relationships, the PIs will then conduct field experiments using accelerometry to calculate the absolute energetic expenditure of sharks in their natural habitat over several days. Because accelerometers also provide data with which specific shark behaviors can be quantified, the PIs will be able to partition between standard and active metabolic rate and determine how the relationship changes at varying temperatures. This aspect will have implications for predicting how seasonal or long-term changes in sea surface temperatures are likely to affect the impact of ectothermic predators on their prey.Broader Impacts: This work will provide data and a new methodology for estimating energy demands of sharks in their natural environments following natural patterns of behavior. This is an important step in calculating the trophic effects of sharks on other components of ecosystems, and thereby also calculating the consequences of shark declines. This work will be the basis of student intern projects through the Mote Marine Laboratory's (MML's) ongoing NSF-REU Program, which provides research experiences to U.S. college students with a special focus on minority groups underrepresented in science and engineering. The PIs are involved in a unique collaboration with Untamed Science to film their work and use it to illustrate science concepts for chapter-specific films which will allow their work to reach millions of K-12 students nationwide. This project will also fund a creative way of connecting with the general public through a new exhibit at MML's public aquarium (with approximately 400,000 visitors per year). This capitalizes on the broad public interest in sharks and allows visitors to control a digital shark using an accelerometer-based videogame controller. Shark energy level will be depleted by excessive tailbeats and replenished by feeding events, and visitors will have to balance the value of feeding success against the cost of higher ODBA and rapid energy depletion.
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会议论文
Collaborative Research: A Comparison of the Mating System and Evolutionary Potential of Lemon Sharks, Negaprion Brevirostris (Poey), at Two Nursery Sites in the Western Atlantic
  • 批准号:
    0623283
  • 项目类别:
    Standard Grant
  • 资助金额:
    $41.29万
  • 财政年份:
    2007
  • 负责人:
    Samuel Gruber
  • 依托单位:
Population Structure and Dynamics of the Lemon Shark, Negaprion Brevirostris on a Local and Global Scale: Microsatelite and Mitochondrial DNA Analysis
  • 批准号:
    9712793
  • 项目类别:
    Standard Grant
  • 资助金额:
    $16.64万
  • 财政年份:
    1997
  • 负责人:
    Samuel Gruber
  • 依托单位:
US-Japan Joint Seminar: Elasmobranchs as Living Resources: Recent Advances in Systematics, Physiology, and Ecology / Honolulu, Hawaii / December, 1987
  • 批准号:
    8614397
  • 项目类别:
    Standard Grant
  • 资助金额:
    $1.49万
  • 财政年份:
    1987
  • 负责人:
    Samuel Gruber
  • 依托单位:
Energetics of the Lemon Shark, A Tropical Marine Predator: Consumption, Metabolism and Space Utilization in the Natural Environment
  • 批准号:
    8601146
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $31.59万
  • 财政年份:
    1986
  • 负责人:
    Samuel Gruber
  • 依托单位:
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)