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Development, application and evaluation of a 1-D full life cycle anchovy and sardine model for the North Aegean Sea (Eastern Mediterranean)

机译:北爱琴海(地中海东部)一维全生命周期an鱼和沙丁鱼模型的开发,应用和评估

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摘要

A 1-D full-life-cycle, Individual-based model (IBM), two-way coupled with a hydrodynamic/biogeochemical model, is demonstrated for anchovy and sardine in the N. Aegean Sea (Eastern Mediterranean). The model is stage-specific and includes a ‘Wisconsin’ type bioenergetics, a diel vertical migration and a population dynamics module, with the incorporation of known differences in biological attributes between the anchovy and sardine stocks. A new energy allocation/egg production algorithm was developed, allowing for breeding pattern to move along the capital-income breeding continuum. Fish growth was calibrated against available size-at-age data by tuning food consumption (the half saturation coefficients) using a genetic algorithm. After a ten-years spin up, the model reproduced well the magnitude of population biomasses and spawning periods of the two species in the N. Aegean Sea. Surprisingly, model simulations revealed that anchovy depends primarily on stored energy for egg production (mostly capital breeder) whereas sardine depends heavily on direct food intake (income breeder). This is related to the peculiar phenology of plankton production in the area, with mesozooplankton concentration exhibiting a sharp decrease from early summer to autumn and a subsequent increase from winter to early summer. Monthly changes in somatic condition of fish collected on board the commercial purse seine fleet followed closely the simulated mesozooplankton concentration. Finally, model simulations showed that, when both the anchovy and sardine stocks are overexploited, the mesozooplankton concentration increases, which may open up ecological space for competing species. The importance of protecting the recruit spawners was highlighted with model simulations testing the effect of changing the timing of the existing 2.5-months closed period. Optimum timing for fishery closure is different for anchovy and sardine because of their opposite spawning and recruitment periods.
机译:一维全生命周期,基于个体的模型(IBM),双向与流体动力学/生物地球化学模型相结合,证明了爱琴海(东地中海)中的an鱼和沙丁鱼。该模型是针对特定阶段的,包括“威斯康星州”型生物能学,diel垂直迁移和种群动态模块,并结合了an鱼和沙丁鱼种群之间生物学特性的已知差异。开发了一种新的能量分配/蛋产生算法,使繁殖模式可以沿着资本收入繁殖连续体移动。通过使用遗传算法调整食物消耗量(半饱和系数),根据可用的年龄大小数据对鱼的生长进行了校准。经过十年的旋转,该模型很好地再现了爱琴海中两个物种的种群生物量大小和产卵期。令人惊讶的是,模型模拟显示,revealed鱼主要取决于蛋的生产所使用的储能(主要是资本育种者),而沙丁鱼在很大程度上取决于直接采食量(收入育种者)。这与该地区浮游生物生产的特殊物候有关,中生浮游生物的浓度从初夏到秋季表现出急剧的下降,随后从冬天到初夏表现出上升。在商业围网渔船上收集的鱼类体细胞状况的每月变化密切跟踪模拟的中层浮游动物的浓度。最后,模型仿真表明,当the鱼和沙丁鱼种群被过度开发时,中层浮游动物的浓度增加,这可能为竞争物种打开生态空间。模型模拟测试了改变现有2.5个月封闭时间的影响,强调了保护新兵产卵者的重要性。由于an鱼和沙丁鱼的产卵期和募集期相反,因此关闭渔业的最佳时机有所不同。

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