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Ontogenetic vertical distribution patterns in small copepods: field observations and model predictions

机译:小型co足类动物的个体发育垂直分布模式:实地观测和模型预测

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We investigated fine-scale (5m, 4h) species- and stage-specific (N1 to C6) distributions of common copepods at an anchor station in a Swedish fjord during two 24 h periods in October 1997. Generally, both calanoid and cyclopoid nauplii were found near the surface, while copepodids stayed deeper in the water column. No diurnal migration was observed. To analyze the observed distributions, we combined mechanistic models of predation risk from fish and copepods, formulations of temperature-dependent growth and a habitat optimization model, maximizing expected lifetime reproductive output. Motility pattern has implications for encounter rates with copepod predators, and therefore affected optimal vertical positioning in the model. By applying species- and stage-specific motility, and accounting for the ambient copepod predator field, we computed depth profiles of the mortality risk for the observed field situation. Predicted diel and ontogenetic vertical distribution patterns for various levels of fish concentrations were compared with observed distributions, and much of the patterns in the field were explained by the model. While the risk of fish predation governs the deeper habitat selection of the larger copepodids, the risk of copepod predation is probably more important for nauplii and small copepods. In addition, the vertically homogeneous growth profile and dense layers of copepod predators may wipe out potential benefits of diurnal migration.
机译:我们在1997年10月的两个24小时内,在瑞典峡湾的一个锚点研究了普通co足类的小规模(5m,4h)物种和阶段特异性(N1至C6)分布。在地表附近发现,而足足则留在水柱中。没有观察到昼夜迁移。为了分析观察到的分布,我们结合了鱼类和co足类动物的捕食风险机理模型,温度依赖性生长的公式和栖息地优化模型,以最大化预期的一生繁殖产量。运动模式对与co足类捕食者的遭遇率有影响,因此影响了模型中的最佳垂直位置。通过应用物种和阶段特定的运动性,并考虑周围co足类捕食者的田间活动,我们计算了所观察到的田间情况的死亡风险深度图。将各种鱼类浓度水平下预测的diel和个体发育垂直分布模式与观察到的分布进行了比较,该模型解释了田间的许多模式。尽管鱼类被捕食的风险决定了较大肢足纲的更深的栖息地选择,但co足类捕食的风险对于无节幼体和小型co足纲动物而言可能更为重要。此外,co足类捕食者在垂直方向上的均匀分布和密集的层可能会消灭昼夜迁徙的潜在好处。

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