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Testing the thermal-niche oxygen-squeeze hypothesis for estuarine striped bass

机译:测试河口条纹鲈鱼的热生态位挤氧假说

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In many stratified coastal ecosystems, conceptual and bioenergetics models predict seasonal reduction in quality and quantity of fish habitat due to high temperatures and hypoxia. We tested these predictions using acoustic telemetry of 2 to 4 kg striped bass (Morone saxatilis Walbaum) and high-resolution spatial water quality sampling in the Patuxent River, a sub-estuary of the Chesapeake Bay, during 2008 and 2009. Striped bass avoided hypoxic (dissolved oxygen a parts per thousand currency sign2 mg center dot l(-1)) subpycnocline waters, but frequently occupied habitats with high temperatures (> 25 A degrees C) in the summer months, as cooler habitats were typically not available. Using traditional concepts of the seasonal thermal-niche oxygen-squeeze, most of the Patuxent estuary would be considered unsuitable habitat for adult striped bass during summer. Application of a bioenergetics model revealed that habitats selected by striped bass during summer would support positive growth rates assuming fish could feed at one-half of maximum consumption. Occupancy of the estuary during summer by striped bass in this study was likely facilitated by sufficient prey and innate tolerance of high temperatures by sub-adult fish of the size range that we tagged. Our results help extend the thermal-niche oxygen-squeeze hypothesis to native populations of striped bass in semi-enclosed coastal systems. Tolerance of for supraoptimal temperatures in our study supports recent suggestions by others that the thermal-niche concept for striped bass should be revised to include warmer temperatures.
机译:在许多分层的沿海生态系统中,概念模型和生物能模型预测由于高温和缺氧,鱼类栖息地的质量和数量会季节性减少。我们使用2到4公斤条纹鲈鱼(Morone saxatilis Walbaum)的声学遥测和切萨皮克湾子河口Patuxent河的高分辨率空间水质采样,在2008年和2009年之间测试了这些预测。条纹鲈鱼避免了低氧(溶解氧为千分之一货币单位2 mg中心点l(-1)的中心点)亚比诺昔林水域,但由于夏季通常没有凉爽的栖息地,因此在夏季经常有人居住的栖息地处于高温(> 25 A摄氏度)。使用季节性的热生态位压榨的传统概念,大多数Patuxent河口在夏季都被认为不适合成年条纹鲈鱼栖息。生物能学模型的应用表明,假设鱼类可以以最大消耗量的一半进食,那么夏季条纹鲈鱼选择的生境将支持正增长。在这项研究中,条纹鲈鱼在夏季占据河口的原因可能是我们标记的大小范围的亚成年鱼对猎物的充分耐受和对先天高温的耐受性。我们的结果有助于将热生态位氧压缩假设扩展到半封闭沿海系统中的条纹鲈的原生种群。在我们的研究中,对于最高温度的容忍度支持了其他人最近提出的建议,即应该修改条纹鲈鱼的热生态位概念以包括较暖的温度。

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