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Baleen whale prey consumption based on high-resolution foraging measurements

机译:基于高分辨率觅食测量的平贝鲸猎物消耗

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摘要

A combination of 3D whale locations and acoustic measurements of prey density is used here to show that whales' consumption of krill is several times larger than often thought.Baleen whales influence their ecosystems through immense prey consumption and nutrient recycling(1-3). It is difficult to accurately gauge the magnitude of their current or historic ecosystem role without measuring feeding rates and prey consumed. To date, prey consumption of the largest species has been estimated using metabolic models(3-9) based on extrapolations that lack empirical validation. Here, we used tags deployed on seven baleen whale (Mysticeti) species (n = 321 tag deployments) in conjunction with acoustic measurements of prey density to calculate prey consumption at daily to annual scales from the Atlantic, Pacific, and Southern Oceans. Our results suggest that previous studies(3-9) have underestimated baleen whale prey consumption by threefold or more in some ecosystems. In the Southern Ocean alone, we calculate that pre-whaling populations of mysticetes annually consumed 430 million tonnes of Antarctic krill (Euphausia superba), twice the current estimated total biomass of E. superba(10), and more than twice the global catch of marine fisheries today(11). Larger whale populations may have supported higher productivity in large marine regions through enhanced nutrient recycling: our findings suggest mysticetes recycled 1.2 x 10(4) tonnes iron yr(-1) in the Southern Ocean before whaling compared to 1.2 x 10(3) tonnes iron yr(-1) recycled by whales today. The recovery of baleen whales and their nutrient recycling services(2,3,7) could augment productivity and restore ecosystem function lost during 20th century whaling(12,13).
机译:这里使用3D鲸位置和声学测量的声学测量的组合来表明鲸鱼的消费量大于经常思考的几倍。鲸鱼通过巨大的猎物消费和营养回收(1-3)影响其生态系统。难以准确地衡量其当前或历史生态系统角色的大小而不测量饲养速度和消耗的猎物。迄今为止,基于缺乏经验验证的外推的代谢模型(3-9),估计了最大物种的牺牲品消费。在这里,我们使用在七个平台鲸(Mysticeti)物种(n = 321标签部署)上部署的标签与猛禽密度的声学测量,以计算日常从大西洋,太平洋和南海海洋的年度尺度计算猛禽消费。我们的研究结果表明,在一些生态系统中,以前的研究(3-9)已经低下了三倍或更多的鲸鱼猎物消费。在南海单独,我们计算出每年消耗4.3亿吨的南极KRILL(Euphausia SuperBa)的捕鲸群,其目前估计的E. Superba(10)的总生物量,以及两倍于全球捕获的两倍海洋渔业今天(11)。通过增强的营养回收:我们的研究结果提高了大型海域的较大的鲸鱼群体在大型海洋地区的生产率提高了Mysticetes在鲸鱼之前回收了1.2×10(4)吨铁(-1),而捕鲸率为1.2 x 10(3)吨Iron Yr(-1)今天被鲸鱼再循环。鲸鲸及其营养回收服务的回收率(2,3,7)可以增强生产力,恢复20世纪捕鲸(12,13)损失的生态系统功能。

著录项

  • 来源
    《Nature》 |2021年第7883期|85-90|共6页
  • 作者单位

    Stanford Univ Hopkins Marine Stn Stanford CA 94305 USA;

    Stanford Univ Hopkins Marine Stn Stanford CA 94305 USA;

    Stanford Univ Hopkins Marine Stn Stanford CA 94305 USA;

    Stanford Univ Hopkins Marine Stn Stanford CA 94305 USA;

    Stanford Univ Hopkins Marine Stn Stanford CA 94305 USA|Cascadia Res Collect Olympia WA USA;

    Duke Univ Marine Lab Beaufort NC 28516 USA|Oregon State Univ Hatfield Marine Sci Ctr Marine Mammal Inst Newport OR USA;

    Stanford Univ Hopkins Marine Stn Stanford CA 94305 USA;

    Univ Copenhagen Dept Biol Copenhagen Denmark|Univ Southern Denmark Dept Biol Odense Denmark|Aarhus Univ Dept Biosci Aarhus Denmark;

    Nelson Mandela Univ Inst Coastal & Marine Res Port Elizabeth South Africa;

    Natl Ocean Serv Stellwagen Bank Natl Marine Sanctuary NOAA Scituate MA USA;

    Cascadia Res Collect Olympia WA USA;

    Duke Univ Marine Lab Beaufort NC 28516 USA;

    Duke Univ Marine Lab Beaufort NC 28516 USA;

    Natl Museum Nat Hist Dept Paleobiol Washington DC USA|Burke Museum Nat Hist & Culture Dept Paleontol & Geol Seattle WA USA;

    Univ Calif Santa Cruz Long Marine Lab Santa Cruz CA 95064 USA;

    Stanford Univ Hopkins Marine Stn Stanford CA 94305 USA|Univ Calif Santa Cruz Long Marine Lab Santa Cruz CA 95064 USA|Southwest Fisheries Sci Ctr Environm Res Div NOAA Monterey CA USA;

    Stanford Univ Hopkins Marine Stn Stanford CA 94305 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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