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首页> 外文期刊>Journal of great lakes research >Evaluating the growth potential of sea lampreys (Petromyzon marinus) feeding on siscowet lake trout (Salvelinus namaycush) in Lake Superior
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Evaluating the growth potential of sea lampreys (Petromyzon marinus) feeding on siscowet lake trout (Salvelinus namaycush) in Lake Superior

机译:评估以苏必利尔湖的湿滑鳟鱼(Salvelinus namaycush)为食的海七lamp(Petromyzon marinus)的生长潜力

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摘要

Differences in the preferred thermal habitat of Lake Superior lake trout morphotypes create alternative growth scenarios for parasitic sea lamprey (Petromyzon marinus) attached to lake trout hosts. Siscowet lake trout {Salvelinus namaycush) inhabit deep, consistently cold water (4-6 ℃) and are more abundant than lean lake trout (Salvelinus namaycush) which occupy temperatures between 8 and 12 ℃ during summer thermal stratification. Using bioenergetics models we contrasted the growth potential of sea lampreys attached to siscowet and lean lake trout to determine how host temperature influences the growth and ultimate size of adult sea lamprey. Sea lampreys simulated under the thermal regime of siscowets are capable of reaching sizes within the range of adult sea lamprey sizes observed in Lake Superior tributaries. High lamprey wounding rates on siscowets suggest siscowets are important lamprey hosts. In addition, siscowets have higher survival rates from lamprey attacks than those observed for lean lake trout which raises the prospect that siscowets serve as a buffer to predation on more commercially desirable hosts such as lean lake trout, and could serve to subsidize lamprey growth.
机译:苏必利尔湖鳟鱼形态的首选热生境上的差异为附着在鳟鱼宿主上的寄生海七rey(Petromyzon marinus)创造了替代生长方案。 Siscowet湖鳟鱼(Salvelinus namaycush)栖息在深而稳定的冷水中(4-6℃),比在夏季热分层期间温度在8至12℃之间的瘦湖鳟鱼(Salvelinus namaycush)丰富。使用生物能学模型,我们比较了粘在粘胶鳟鱼和瘦湖鳟鱼上的海七rey鱼的生长潜力,以确定宿主温度如何影响成年海sea鱼的生长和最终大小。在扇贝热状态下模拟的海七simulated能够达到在苏必利尔湖支流中观察到的成人七sea大小范围内的大小。烤饼上的七rey鳗受伤率很高,表明烤饼是重要的七lamp鳗宿主。此外,鱼在七rey鳗侵袭中的存活率要高于对瘦湖鳟鱼观察到的存活率,这增加了the鱼可以作为捕食诸如贫湖鳟鱼等商业上更理想的宿主的缓冲,并可以为七and鳗的生长提供补贴。

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  • 来源
    《Journal of great lakes research》 |2011年第2期|p.343-348|共6页
  • 作者单位

    University of Wisconsin-Madison Center for Limnology, 680 N. Park St., Madison, WI 53706, USA,Arizona State University, School of Life Sciences, 427 E. Tyler Mall LSA 189, Tempe, AZ 85287, USA;

    University of Wisconsin-Madison Center for Limnology, 680 N. Park St., Madison, WI 53706, USA,United States Geological Survey Great Lakes Science Center, 17 Lake Street, Oswego, NY, 13126, USA;

    University of Minnesota - Duluth, Department of Biology, 207 Swenson Science Building, 1035 Kirby Drive, Duluth, MN 55812, USA;

    Great Lakes Indian Fish & Wildlife Commission, P.O. Box 9, Odanah, Wl 54861, USA;

    University of Wisconsin-Madison Center for Limnology, 680 N. Park St., Madison, WI 53706, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    predator-prey interactions; great lakes; bioenergetics; invasive species; thermal heterogeneity;

    机译:食肉动物与猎物的相互作用五大湖;生物能学入侵物种;热异质性;

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