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首页> 外文期刊>Journal of great lakes research >Patterns of age-0 yellow perch growth, diets, and mortality in Saginaw Bay, Lake Huron
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Patterns of age-0 yellow perch growth, diets, and mortality in Saginaw Bay, Lake Huron

机译:休伦湖萨吉诺湾的0岁黄河鲈生长,饮食和死亡率的模式

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摘要

Identifying mechanisms influencing early-life survival may elucidate recruitment variability of fish populations. Yellow perch (Perca flavescens), are economically and ecologically important in Saginaw Bay, Lake Huron, but have recently experienced low recruitment despite strong production of age-0 fish. Recent year classes have been characterized by slow first-year growth, as indexed by fall size of age-0 yellow perch; however, seasonal growth patterns and accompanying diet and survivorship patterns have not been documented for age-0 yellow perch in Saginaw Bay. To this end, we collected age-0 yellow perch weekly (larvae) and monthly (juveniles) throughout the first year of life during 2009 and 2010 to track changes in growth and diet composition. We also evaluated predation and over-winter energy-loss as potential mechanisms of size-selective mortality. Yellow perch growth, energy accumulation and size-specific condition decreased during late summer and fall. During larval and juvenile stages, predominant components of yellow perch diets transitioned from copepods to Daphnia and other zooplankton; however, we observed only weak ontogenetic shifts toward benthic prey. Smaller yellow perch a) were preferentially preyed upon by walleye (the bay's main piscivore) and b) displayed lower mass-specific energy content, potentially increasing overwinter starvation risk, suggesting that slow growth increases mortality risk. Our results are consistent with the hypothesis that recruitment dynamics are influenced by an interplay of size-selective mortality and diet-induced reductions in growth.
机译:确定影响早期生存的机制可以阐明鱼类种群的募集变异性。黄鲈(Perca flavescens)在休伦湖萨吉诺湾具有重要的经济和生态意义,但尽管0年龄大的鱼类产量高,但最近的捕捞能力较低。近年来的课程以第一年的成长缓慢为特征,以0岁黄色鲈鱼的秋天大小为指标;但是,尚未记录萨吉诺湾0岁黄鲈的季节性生长方式以及伴随的饮食和生存方式。为此,我们在2009年和2010年生命的第一年每周(幼体)和每月(幼体)收集0岁黄鲈,以追踪生长和饮食组成的变化。我们还评估了掠食和越冬能量损失,这是大小选择死亡率的潜在机制。在夏末和秋季,黄鲈的生长,能量积累和特定大小的条件均下降。在幼虫和幼鱼阶段,黄色鲈鱼饮食的主要成分从co足类过渡到水蚤和其他浮游动物。然而,我们只观察到向底栖生物的微弱的个体发育转变。较小的黄色鲈鱼a)优先被角膜白斑(海湾的主要食肉动物)捕食,并且b)显示出较低的质量比能量,可能增加越冬饥饿的风险,这表明生长缓慢会增加死亡风险。我们的结果与以下假设相吻合:招聘动态受大小选择死亡率和饮食诱导的生长减少之间相互作用的影响。

著录项

  • 来源
    《Journal of great lakes research》 |2014年第1期|123-132|共10页
  • 作者单位

    Purdue University, Department of Forestry and Natural Resources, 195 Marsteller St., West Lafayette, IN 47907, United States Illinois Natural History Survey, Lake Michigan Biological Station, 400 17th St., Zion, IL 60099;

    National Oceanic and Atmospheric Administration, Great Lakes Environmental Research Laboratory, 1431 Beach St., Muskegon, MI 49441, United States;

    Purdue University, Department of Forestry and Natural Resources, 195 Marsteller St., West Lafayette, IN 47907, United States,Illinois-Indiana Sea Grant, Purdue University, 195 Marsteller St., West Lafayette, IN 47907, United States;

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

    Saginaw Bay; Age-0; Yellow perch; Growth; Diets; Size-selective mortality;

    机译:萨吉诺湾0岁;0岁;黄鲈成长;饮食;大小选择性死亡率;

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