首页> 外文期刊>Journal of marine systems: journal of the European Association of Marine Sciences and Techniques >Lagrangian modelling of swimming behaviour and encounter success in co-occurring copepods: Clausocalanus furcatus vs. Oithona plumifera
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Lagrangian modelling of swimming behaviour and encounter success in co-occurring copepods: Clausocalanus furcatus vs. Oithona plumifera

机译:拉格朗日游泳行为建模并在共生co足类动物中遇到成功:Clausocalanus furcatus与Oithona plumifera

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摘要

The calanoid Clausocalanus furcatus and the cyclopoid Oithona plumifera are species dominating the copepod assemblage in oligotrophic environments but displaying contrasting swimming behaviour. C. furcatus moves almost continuously along very convoluted trajectories, while O. plumifera sinks slowly with occasional brief relocating jumps. To evaluate the efficiency of such opposing behaviour in encountering potential prey, the swimming performances of both species are here simulated with a Lagrangian, individual-based approach, implemented to simulate the realistic motion and perceptive fields of the two species. For each modelled swimming trajectory, we calculate the number of realised encounters and the associated search efficiency in uniform and patchy distributions of virtual prey. C. furcatus will perform better than O. plumifera in terms of realised encounters, but its search efficiency will be lower owing to the peculiar motion behaviour and to the shape and extension of the perceptive field. Despite these differences, these two species do co-exist in food diluted areas, thus indicating alternative strategies to successfully thrive in pelagic oligotrophic environments.
机译:在贫营养环境中,cal兰克劳卡乌拉乌斯(Clausocalanus furcatus)和独眼巨人Oithona plumifera是d足类组合中的主要物种,但表现出相反的游泳行为。短弯线虫沿非常复杂的轨迹几乎连续地移动,而短尾O线虫缓慢下沉,偶尔会出现短暂的重新定位跳跃。为了评估这种对立行为在遇到潜在猎物时的效率,此处使用基于个体的拉格朗日方法模拟了两个物种的游泳表现,该方法用于模拟两个物种的真实运动和感知场。对于每个建模的游泳轨迹,我们在虚拟猎物的均匀且不规则分布中计算已实现的相遇次数以及相关的搜索效率。在实现的相遇方面,C。furcatus的表现将优于O. plumifera,但由于特殊的运动行为以及感知场的形状和扩展,其搜索效率将降低。尽管存在这些差异,但这两种物种确实在食品稀释地区共存,因此表明了在上层贫营养环境中成功繁衍的替代策略。

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