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Influence of oceanographic structures on foraging strategies: Macaroni penguins at Crozet Islands

机译:海洋结构对觅食策略的影响:克罗泽群岛的通心粉企鹅

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BackgroundIn the open ocean, eddies and associated structures (fronts, filaments) have strong influences on the foraging activities of top-predators through the enhancement and the distribution of marine productivity, zooplankton and fish communities. Investigating how central place foragers, such as penguins, find and use these physical structures is crucial to better understanding their at-sea distribution. In the present study, we compared the travel heading and speed of the world’s most abundant penguin, the Macaroni penguin ( Eudyptes chrysolophus ), with the distribution of surface physical structures (large-scale fronts, eddies and filaments). ResultsThe study was performed during December 2012 in the Crozet Archipelago (46.42° S; 51.86° E), South Indian Ocean. Six males at incubation stage were equipped with GPS loggers to get their trajectories. We used Eulerian and Lagrangian methods to locate large-scale fronts, mesoscale eddies (10–100?km) and part of the sub-mesoscale structures ( ConclusionsWe show that penguins adjust their travel speed and movement during their whole trips in relation with the oceanographic structures visited. At a large scale, we hypothesize that Macaroni penguins target the sub Antarctic Front to find profitable patches of their main prey. At finer scale, Macaroni penguin may adopt a horizontal drifting behavior in strong currents, which could be a way to minimize costs of displacement.
机译:背景技术在公海中,涡旋和相关结构(前部,细丝)通过提高和分配海洋生产力,浮游动物和鱼类群落,对顶级捕食者的觅食活动产生强烈影响。调查中心位置的觅食者(例如企鹅)如何找到并使用这些物理结构对于更好地了解它们在海上的分布至关重要。在本研究中,我们比较了世界上最丰富的企鹅通心粉企鹅(Eudyptes chrysolophus)的行进方向和速度与表面物理结构(大型前沿,涡流和细丝)的分布。结果该研究于2012年12月在南印度洋的克罗泽群岛(46.42°S; 51.86°E)进行。六个处于孵化阶段的雄性配备了GPS记录器,以获取其轨迹。我们使用欧拉和拉格朗日方法来定位大型前沿,中尺度涡旋(10–100?km)和部分亚中尺度结构(结论我们表明,企鹅在整个旅程中会根据海洋学来调节其行进速度和运动。我们假设通心粉企鹅以南极锋面为目标,以寻找主要猎物的获利斑块;在更细的范围内,通心粉企鹅可能会在强流中采取水平漂移的行为,这可能是一种最小化的方法流离失所的成本。

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