首页> 外文期刊>River Research and Applications >USING OTOLITH CHEMISTRY TAGS AND GROWTH PATTERNS TO DISTINGUISH MOVEMENTS AND PROVENANCE OF NATIVE FISH IN THE GRAND CANYON
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USING OTOLITH CHEMISTRY TAGS AND GROWTH PATTERNS TO DISTINGUISH MOVEMENTS AND PROVENANCE OF NATIVE FISH IN THE GRAND CANYON

机译:使用OTOLITH化学标签和生长模式区分大峡谷中原生鱼的运动和来源

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摘要

Fish otolith and water chemistry were assessed in the Grand Canyon reach of the Colorado River and its tributaries. Aqueous strontium and selenium (in ratio to calcium) and carbon stable isotopic ratios were identified as markers with excellent potential to track the provenance and movements of the endangered humpback chub Gila cypha. Although otolith δ~(13)C and Sr/Ca varied proportionately to water chemistry and provided a framework for detailed study of humpback chub movements, otolith Se/Ca showed ambiguous tracking of known water chemistries. As an application, we document the natal source and movement dynamics of n = 10 humpback chub and compare these findings from otolith microchemistry with the current paradigm of humpback chub spawning ecology. We found that seven of ten fish follow the current early life history paradigm and were spawned in the Little Colorado River and subsequently emigrated to the main stem Colorado River as juveniles. However, the otolith markers of three fish suggest an alternative early life trajectory with unknown provenance. Age and growth analyses demonstrate seasonally higher growth rates in the warmer Little Colorado River compared with the Colorado River. Combining natural markers with age and growth reconstructions provides a powerful tool for assessing the habitat use and success of humpback chub in the Grand Canyon. Copyright © 2012 John Wiley & Sons, Ltd.
机译:在科罗拉多河及其支流的大峡谷河段评估了鱼的耳石和水化学。锶和硒的水溶液(与钙之比)和碳稳定同位素之比被确定为标记物,具有极好的潜力来追踪濒临灭绝的座头鲸吉拉小叶藻的起源和运动。尽管耳石δ〜(13)C和Sr / Ca与水化学成比例地变化,并为详细研究座头鲸运动提供了框架,但耳石Se / Ca对已知的水化学表现出模糊的追踪。作为一项应用,我们记录了n = 10座头鲸的出生和运动动力学,并将这些耳石微化学的发现与当前座头鲸产卵生态学范式进行了比较。我们发现,十种鱼中有七种遵循当前的早期生活史范例,并在小科罗拉多河中产卵,随后作为幼鱼移居到科罗拉多主河。然而,三种鱼类的耳石标记表明了另一种来源不明的早期生命轨迹。年龄和增长分析显示,与科罗拉多河相比,温暖的小科罗拉多河的季节增长率更高。将自然标志物与年龄和生长重建相结合,为评估大峡谷中座头鲸的栖息地使用和成功提供了有力工具。版权所有©2012 John Wiley&Sons,Ltd.

著录项

  • 来源
    《River Research and Applications》 |2013年第10期|1318-1329|共12页
  • 作者单位

    Department of Environmental and Forest Biology, SUNY College of Environmental Science and Forestry, Syracuse, New York, USA,Hammond Bay Biological Station, Great Lakes Science Center, Millersburg, Michigan, USA;

    Department of Environmental and Forest Biology, SUNY College of Environmental Science and Forestry, Syracuse, New York, USA;

    Department of Wildlife Ecology and Conservation and Fisheries and Aquatic Sciences Program, University of Florida, Gainesville, Florida, USA;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    otolith chemistry; humpback chub; Grand Canyon; fish growth/age; Colorado River;

    机译:耳石化学座头鲸大峡谷;鱼类生长/年龄;科罗拉多河;

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