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首页> 外文期刊>Marine ecology progress series >Simulating the effect of hypoxia on bay anchovy egg and larval mortality using coupled watershed, water quality, and individual-based predation models
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Simulating the effect of hypoxia on bay anchovy egg and larval mortality using coupled watershed, water quality, and individual-based predation models

机译:使用分水岭,水质和个体捕食模型耦合模拟缺氧对海湾an鱼卵和幼虫死亡率的影响

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摘要

Greater nutrient loads since the 1950s have increased the extent and duration of hypoxic conditions in the Patuxent River and the Chesapeake Bay (Maryland, USA). We linked watershed, water quality, and individual-based predation models to predict how changes in local (Patuxent River watershed) and regional (bay-wide) nutrient loading rates would affect bay anchovy Anchoa mitchilli egg and larval mortality rates in the lower region of the Patuxent River. Nutrient loadings affected hypoxic volume and the degree of spatial overlap between anchovy and their predators. Mortality rates were simulated during June and July under combinations of a wet or dry year, reduced and increased nutrient loadings from the Patuxent River watershed, and increased and decreased nutrient loadings into the Patuxent River at the Chesapeake Bay boundary. Chesapeake Bay water quality at the downstream boundary had a much larger effect on egg and larval mortality rates than nutrient loading rates from the Patuxent River watershed, and these responses were consistent with the downstream boundary condition having a greater effect on hypoxia. Water column structure, year type (wet/dry), and location within the lower Patuxent River had smaller effects on egg and larval mortality. Due to indirect effects, the effect of the Chesapeake Bay boundary condition on larval mortality rates during June was opposite to that predicted for egg mortality rates. Our results illustrate that statements and justifications about the benefits of nutrient loading reductions on estuarine ecosystems should avoid oversimplification, be specific, and recognize that species responses to changes in environmental conditions can be complex and variable.
机译:自1950年代以来,更大的营养负荷增加了Patuxent河和切萨皮克湾(美国马里兰州)的低氧状况的程度和持续时间。我们将分水岭,水质和基于个体的捕食模型联系在一起,以预测当地(Patuxent河分水岭)和区域(海湾范围)养分负荷率的变化将如何影响海湾较低地区的An鱼an鱼卵和幼虫死亡率。 Patuxent河。营养负荷影响缺氧量和an鱼与其捕食者之间空间重叠的程度。在6月和7月的干旱或干旱年份,死亡率和模拟量的模拟下,死亡率是从Patuxent河流域减少和增加的,在切萨皮克湾边界的Patuxent河中增加和减少的养分是。下游边界的切萨皮克湾水质对鸡蛋和幼虫死亡率的影响要大于Patuxent河流域的养分负荷率,并且这些响应与下游边界条件对缺氧的影响更大有关。水柱结构,年份类型(干/湿)和在Patuxent河下游的位置对卵和幼虫死亡率的影响较小。由于间接影响,六月切萨皮克湾边界条件对幼虫死亡率的影响与鸡蛋死亡率的预测相反。我们的研究结果表明,关于减少营养物负荷对河口生态系统的好处的陈述和理由应避免过于简单化,具体化,并认识到物种对环境条件变化的反应可能是复杂且易变的。

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  • 来源
    《Marine ecology progress series》 |2012年第20期|p.141-160|共20页
  • 作者单位

    Department of Oceanography and Coastal Sciences, Louisiana State University, Baton Rouge, Louisiana 70803, USA,Cooperative Institute for Limnology and Ecosystems Research, University of Michigan, Ann Arbor,Michigan 48108, USA,Present address: Institute for Applied Ecology, University of Canberra, Canberra, ACT 2601, Australia;

    Department of Oceanography and Coastal Sciences, Louisiana State University, Baton Rouge, Louisiana 70803, USA;

    Smithsonian Environmental Research Center, Edgewater, Maryland 21037, USA;

    URS Corporation, Morrisville, North Carolina 27560, USA;

    Department of Civil and Environmental Engineering, The University of Virginia, Thornton Hall, Charlottesville,Virginia 22904-1000, USA;

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

    patuxent river; chesapeake bay; bay anchovy anchoa mitchilli; hypoxia; early-life history; mortality;

    机译:pat河切萨皮克湾海湾an鱼an鱼缺氧早期生活史;死亡;

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