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Calibration of a bioenergetics model linking primary production to Atlantic menhaden Brevoortia tyrannus growth in Chesapeake Bay

机译:校准将主要生产与切萨皮克湾的大西洋捕捞的Brevortia tyrannus生长联系在一起的生物能学模型

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ABSTRACT: Growth and potential productivity of young-of-the-year (YOY) Atlantic menhaden Brevoortia tyrannus, a key forage fish, were investigated in Chesapeake Bay. A coupled foraging and bioenergetics model was developed to predict the dependency of menhaden size on chlorophyll a (chl a) and water temperatures in the bay. Substantial improvements were made to functional responses previously developed to describe YOY menhaden filtering efficiency on phytoplankton and swimming speed while filter feeding. Model output was calibrated to correspond to observed lengths of field-collected menhaden over an 11 yr period (1995 to 2005) by adjusting the percentage of chl a available to menhaden in the model. The model effectively represents variability in menhaden length in response to changes in chl a and temperature, indicating that only 9.2% of available chl a was required for menhaden to grow to lengths observed in the bay. In simulations of growth potential by bay region, the oligohaline (upper) region had the highest growth potential with decreasing potential in the mesohaline (middle) and polyhaline (lower) regions of the bay. Our results represent the first rigorous calibration and evaluation of a coupled foraging–bioenergetics model for Atlantic menhaden and establish a quantitative link between chl a standing stock and menhaden growth potential.
机译:摘要:在切萨皮克湾调查了年幼(YOY)的大西洋鲱(Brevoortia tyrannus )(一种主要的饲料鱼)的生长和潜在生产力。建立了耦合的觅食和生物能模型,以预测捕捞量对海湾中叶绿素 a (chl a )和水温的依赖性。对先前开发的功能响应进行了实质性改进,以描述过滤器喂食时对浮游植物的同比污染过滤效率和游泳速度。通过调整模型中可用于遮盖物的chl a 的百分比,对模型输出进行校准,以对应于11年(1995年至2005年)现场收集的遮盖物的观测长度。该模型有效地表示了沙朗长度随chl a 和温度的变化而变化的趋势,表明沙朗长度增长到观察到的长度仅需要9.2%的可用chl a 在海湾。在按海湾地区的增长潜力模拟中,低卤(上部)地区的增长潜力最高,而海湾的中卤(中)和多卤(下部)地区的潜力却逐渐降低。我们的结果代表了大西洋猛禽的觅食-生物能耦合模型的首次严格校准和评估,并建立了chl a 种群和猛禽生长潜力之间的定量联系。

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