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Stochastic simulation of size variation in turbot: possible causesanalysed with an individual-based model

机译:大菱t尺寸变化的随机模拟:用基于个体的模型分析的可能原因

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摘要

Causes of size variation in a population of juvenile turbot were studied using an individual-based model (IBM). Each simulation started with 800 (divided into eight groups of 100 each) 120-day-old (posthatch) juveniles and was run for 140 days, and the data gained from model simulations compared directly with the result of a laboratory study with size-graded turbot. Stochastic growth with memory, which was included in the models as an individual genetical growth rate variation, is important in explaining size variation, and the combination between individual genetic growth rate and social interactions related to size-dependent hierarchies also contributes to size variation. The use of size-dependent growth rate alone fails to explain size variation, and is of little value in predicting size variation in turbot culture. Further, the results indicate formation of different types of size hierarchies for different sizes of juvenile turbot.
机译:使用基于个体的模型(IBM)研究了大菱turbo种群大小变化的原因。每个模拟都从800个(分为八组,每组100个)120天大的幼鱼开始,运行了140天,并且从模型模拟中获得的数据直接与规模分级的实验室研究的结果进行了比较大菱鲆。模型中包含的具有记忆的随机增长是个体遗传增长率的变化,在解释个体大小变异方面很重要,个体遗传增长率与与个体大小相关的等级相关的社会互动之间的结合也有助于个体大小的变异。单独使用依赖大小的增长率无法解释大小变化,并且在预测大菱turbo培养中大小变化方面没有什么价值。此外,结果表明,针对不同尺寸的幼年大菱of形成了不同类型的尺寸层次。

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