Foraging Behavior and Ecological Role of the Least Studied Antarctic Krill Predator, the Antarctic Minke Whale (Balaenoptera Bonaerensis)
研究最少的南极磷虾捕食者南极小须鲸(Balaenoptera Bonaerensis)的觅食行为和生态作用
基本信息
- 批准号:1643877
- 负责人:
- 金额:$ 36.58万
- 依托单位:
- 依托单位国家:美国
- 项目类别:Standard Grant
- 财政年份:2017
- 资助国家:美国
- 起止时间:2017-08-15 至 2021-07-31
- 项目状态:已结题
- 来源:
- 关键词:
项目摘要
The Antarctic Peninsula is warming and one of the consequences is a decrease in sea ice cover. Antarctic minke whales are the largest ice-obligate krill predator in the region, yet- little is known about their foraging behavior and ecology. The goals of the project are to use a suite of new technological tools to measure the underwater behavior of the whales and better understand how they exploit the sea ice habitat. Using video-recording motion-sensing tags, the underwater movements of the whales can be reconstructed and it can be determine where and when they feed. UAS (unmanned aerial systems) will be used to generate real-time images of sea ice cover that will be linked with tag data to determine how much time whales spend in sea ice versus open water, and how the behavior of the whales changes between these two habitats. Lastly, scientific echosounders will be used to characterize the prey field that the whales are exploiting and differences in krill availability inside and out of the ice will be investigated. All of this information is critical to understand the ecological role of Antarctic minke whales so that better predictions can be made regarding impacts of climate change not only on these animals, but on the structure and function of the Antarctic marine ecosystem. The project will promote the progress of science by elucidating the ecological role of a poorly known Antarctic predator and using this information to better understand the impact of changes that are occurring in Polar Regions. The educational and outreach program will increase awareness and understanding of minke whales, Antarctic marine ecosystems, sea ice, and the dynamics of climate change through the use of film, social media, and curriculum development for formal STEM educators.To understand how changes in sea ice will manifest in the demography of predators that rely on sea ice habitat requires knowledge of their behavior and ecology. The largest ice-dependent krill predator and most abundant cetacean in the Southern Ocean is the Antarctic minke whale (AMW)- yet, virtually nothing is known of its foraging behavior or ecological role. Thus, the knowledge to understand how climate-driven changes will affect these animals and therefore the dynamics of the ecosystem as a whole is lacking. The project will use multi-sensor and video recording tags, fisheries acoustics, and unmanned aerial systems to study the foraging behavior and ecological role of minke whales in the waters of the Antarctic Peninsula. The following research questions will be posed:1. What is the feeding performance of AMWs?2. How important is sea ice to the foraging behavior of AMW?3. How do AMWs feed directly under sea ice?Proven tagging and analytical approaches to characterize the underwater feeding behavior and kinematics of minke whales will be used. Combined with quantitative measurements of the prey field, the energetic costs of feeding will be measured and it will be determined how minke whales optimize energy gain. Using animal-borne video recording tags and UAS technology it will also be determined how much feeding occurs directly under sea ice and how this mode differs from open water feeding. This knowledge will: (1) significantly enhance knowledge of the least-studied Antarctic krill predator; and (2) be made directly available to international, long-term efforts to understand how climate-driven changes will affect the structure and function of the Antarctic marine ecosystem.The educational and outreach efforts aim to increase awareness and understanding of: (i) the ecological role of minke whales around the Antarctic Peninsula; (ii) the effects of environmental change on an abundant but largely unstudied marine predator; (iii) the advanced methods and technologies used by whale researchers to study these cryptic animals and their prey; and (iv) the variety of careers in the ocean sciences by sharing the experiences of scientists and students. These educational aims will be achieved by delivering continuous near-real-time delivery of project events and data to informal audiences through social media channels as well as curricula and professional development programs that will provide formal STEM educators with specific standards-compliant lesson plans.
南极半岛正在变暖,其后果之一是海冰覆盖面积减少。 南极小须鲸是该地区最大的冰专性磷虾捕食者,但对它们的觅食行为和生态知之甚少。 该项目的目标是使用一套新的技术工具来测量鲸鱼的水下行为,并更好地了解它们如何利用海冰栖息地。 使用视频记录运动传感标签,鲸鱼的水下运动可以被重建,并可以确定它们何时何地进食。 UAS(无人驾驶航空系统)将用于生成海冰覆盖的实时图像,这些图像将与标签数据相关联,以确定鲸鱼在海冰和开放水域中花费的时间,以及鲸鱼的行为在这两个栖息地之间的变化。 最后,科学回声测深仪将用于描述鲸鱼正在利用的猎物场,并将调查冰内外磷虾可用性的差异。 所有这些信息对于了解南极小须鲸的生态作用至关重要,以便更好地预测气候变化不仅对这些动物的影响,而且对南极海洋生态系统的结构和功能的影响。 该项目将通过阐明一种鲜为人知的南极捕食者的生态作用,并利用这一信息更好地了解极地地区正在发生的变化的影响,促进科学的进步。 教育和推广计划将通过使用电影,社交媒体和为正式STEM教育者开发课程来提高对小须鲸,南极海洋生态系统,海冰和气候变化动态的认识和理解。要了解海冰的变化如何在依赖海冰栖息地的捕食者的人口统计中表现出来,需要了解他们的行为和生态。 南极小须鲸(AMW)是南大洋最大的依赖冰的磷虾捕食者和最丰富的鲸目动物-然而,几乎没有人知道它的觅食行为或生态作用。 因此,缺乏了解气候驱动的变化将如何影响这些动物以及整个生态系统动态的知识。该项目将使用多传感器和视频记录标签、渔业声学和无人驾驶航空系统来研究小须鲸在南极半岛沃茨的觅食行为和生态作用。 本文将提出以下研究问题:1. AMW的摄食性能如何?2.海冰对AMW的觅食行为有多重要?3. AMW如何直接在海冰下觅食?将使用生物标记和分析方法来表征小须鲸的水下摄食行为和运动学。 结合对猎物场的定量测量,将测量进食的能量成本,并确定小须鲸如何优化能量增益。 使用动物携带的视频记录标签和无人机系统技术,还将确定有多少喂养直接发生在海冰下,以及这种模式与开放水域喂养有何不同。 这些知识将:(1)大大提高对南极磷虾捕食者的了解,这是研究得最少的一种捕食者;(2)直接提供给国际长期努力,以了解气候变化将如何影响南极海洋生态系统的结构和功能,教育和宣传工作旨在提高对以下问题的认识和理解:(i)南极半岛周围小须鲸的生态作用;(ii)环境变化对数量众多但基本上未被研究的海洋捕食者的影响;(iii)鲸鱼研究人员用来研究这些神秘动物及其猎物的先进方法和技术;以及(iv)通过分享科学家和学生的经验,介绍海洋科学领域的各种职业。 这些教育目标将通过社交媒体渠道以及课程和专业发展计划向非正式受众提供持续的近实时项目事件和数据来实现,这些课程和专业发展计划将为正式的STEM教育工作者提供特定的符合标准的课程计划。
项目成果
期刊论文数量(9)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
In‐situ observations of the sensory hairs of Antarctic minke whales ( Balaenoptera bonaerensis )
南极小须鲸(Balaenoptera bonaerensis)感觉毛的现场观察
- DOI:10.1002/ar.24720
- 发表时间:2021
- 期刊:
- 影响因子:0
- 作者:Reichmuth, Colleen;Casey, Caroline;Friedlaender, Ari
- 通讯作者:Friedlaender, Ari
The scale of the whale: using video-tag data to evaluate sea-surface ice concentration from the perspective of individual Antarctic minke whales
- DOI:10.1186/s40317-020-00218-8
- 发表时间:2020-10-12
- 期刊:
- 影响因子:2.7
- 作者:Linsky, Jacob M. J.;Wilson, Nicole;Friedlaender, Ari S.
- 通讯作者:Friedlaender, Ari S.
Sympatry and resource partitioning between the largest krill consumers around the Antarctic Peninsula
- DOI:10.3354/meps13771
- 发表时间:2021-07-08
- 期刊:
- 影响因子:2.5
- 作者:Friedlaender, Ari S.;Joyce, Trevor;Durban, John W.
- 通讯作者:Durban, John W.
Comparing Uncertainty Associated With 1-, 2-, and 3D Aerial Photogrammetry-Based Body Condition Measurements of Baleen Whales
- DOI:10.3389/fmars.2021.749943
- 发表时间:2021-11-26
- 期刊:
- 影响因子:3.7
- 作者:Bierlich, K. C.;Hewitt, Joshua;Johnston, David W.
- 通讯作者:Johnston, David W.
Bayesian approach for predicting photogrammetric uncertainty in morphometric measurements derived from drones
- DOI:10.3354/meps13814
- 发表时间:2021-09-02
- 期刊:
- 影响因子:2.5
- 作者:Bierlich, K. C.;Schick, R. S.;Johnston, D. W.
- 通讯作者:Johnston, D. W.
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Ari Friedlaender其他文献
The fishery for Antarctic krill – Conflicts between industrial production, protection of biodiversity, and legal governance
南极磷虾渔业——工业生产、生物多样性保护和法律治理之间的冲突
- DOI:
10.1016/j.marpol.2025.106787 - 发表时间:
2025-10-01 - 期刊:
- 影响因子:3.700
- 作者:
Philip Trathan;Ari Friedlaender;Chris Johnson;Ryan Reisinger - 通讯作者:
Ryan Reisinger
グライド中の加速度から推定した採餌期ザトウクジラの体密度
根据滑行加速度估算座头鲸进食期间的身体密度
- DOI:
- 发表时间:
2017 - 期刊:
- 影响因子:0
- 作者:
楢﨑友子,Saana Isojunno;Douglas Nowacek;Rene Swift;Ari Friedlaender;Christian Ramp;Sophie Smout;青木かがり,佐藤克文,Patrick Miller - 通讯作者:
青木かがり,佐藤克文,Patrick Miller
Migrating baleen whales transport high-latitude nutrients to tropical and subtropical ecosystems
须鲸迁徙将高纬度营养物质输送到热带和亚热带生态系统
- DOI:
10.1038/s41467-025-56123-2 - 发表时间:
2025-03-10 - 期刊:
- 影响因子:15.700
- 作者:
Joe Roman;Andrew J. Abraham;Jeremy J. Kiszka;Daniel P. Costa;Christopher E. Doughty;Ari Friedlaender;Luis A. Hückstädt;Milton Marcondes;Emma Wetsel;Andrew J. Pershing - 通讯作者:
Andrew J. Pershing
Antarctic pelagic ecosystems on a warming planet
- DOI:
10.1016/j.tree.2024.08.007 - 发表时间:
2024-12-01 - 期刊:
- 影响因子:
- 作者:
Oscar Schofield;Megan Cimino;Scott Doney;Ari Friedlaender;Michael Meredith;Carlos Moffat;Sharon Stammerjohn;Benjamin Van Mooy;Deborah Steinberg - 通讯作者:
Deborah Steinberg
Ari Friedlaender的其他文献
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{{ truncateString('Ari Friedlaender', 18)}}的其他基金
RAPID Proposal: Assessing changes in humpback whale stress hormone levels in response to COVID19-related decreases in ocean noise and vessel traffic
快速提案:评估座头鲸应激激素水平的变化,以应对与新冠病毒相关的海洋噪音和船舶交通的减少
- 批准号:
2032896 - 财政年份:2020
- 资助金额:
$ 36.58万 - 项目类别:
Standard Grant
Collaborative Research: A New Baseline for Antarctic Blue and Fin Whales
合作研究:南极蓝鲸和长须鲸的新基线
- 批准号:
1927709 - 财政年份:2019
- 资助金额:
$ 36.58万 - 项目类别:
Standard Grant
RAPID: Linking the Movement Patterns and Foraging Behavior of Humpback Whales to their Prey across Multiple Spatial Scales within the LTER Study Region
RAPID:将 LTER 研究区域内多个空间尺度的座头鲸的运动模式和觅食行为与其猎物联系起来
- 批准号:
1250208 - 财政年份:2012
- 资助金额:
$ 36.58万 - 项目类别:
Standard Grant
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