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Modeling the active dispersal of juvenile leatherback turtles in the North Atlantic Ocean

机译:模拟北大西洋少年棱皮海龟的活动扩散

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Background The Northwest Atlantic (NWA) leatherback turtle ( Dermochelys coriacea ) subpopulation is one of the last healthy ones on Earth. Its conservation is thus of major importance for the conservation of the species itself. While adults are relatively well monitored, pelagic juveniles remain largely unobserved. In an attempt to reduce this knowledge gap, this paper presents the first detailed simulation of the open ocean dispersal of juveniles born on the main nesting beaches of French Guiana and Suriname (FGS). Methods Dispersal is simulated using STAMM, an Individual Based Model in which juveniles actively disperse under the combined effects of oceanic currents and habitat-driven movements. For comparison purposes, passive dispersal under the sole effect of oceanic currents is also simulated. Results Simulation results show that oceanic currents lead juveniles to cross the Atlantic at mid-latitudes. Unlike passive individuals, active juveniles undertake important north-south seasonal migrations while crossing the North Atlantic. They finally reach the European or North African coast and enter the Mediterranean Sea. Less than 4-year-old active turtles first arrive off Mauritania. Other productive areas on the eastern side of the Atlantic (the coast of Galicia and Portugal, the Gulf of Cadiz, the Bay of Biscay) and in the Mediterranean Sea are first reached by 6 to 9-year-old individuals. This active dispersal scheme, and its timing, appear to be consistent with all available stranding and bycatch data gathered on the Atlantic and Mediterranean coasts of Europe and North Africa. Simulation results also suggest that the timing of the dispersal and the quality of the habitats encountered by juveniles can, at least partly, explain why the NWA leatherback subpopulation is doing much better than the West Pacific one. Conclusion This paper provides the first detailed simulation of the spatial and temporal distribution of juvenile leatherback turtles dispersing from their FGS nesting beaches into the North Atlantic Ocean and Mediterranean Sea. Simulation results, corroborated by stranding and bycatch data, pinpoint several important developmental areas on the eastern side of the Atlantic Ocean and in the Mediterranean Sea. These results shall help focus observation and conservation efforts in these critical areas.
机译:背景技术西北大西洋棱皮龟(Dermochelys coriacea)亚种群是地球上最后的健康种群之一。因此,对物种本身的保护至关重要。尽管成年人受到相对良好的监测,但远洋少年仍未观察到。为了缩小这种知识鸿沟,本文首次详细介绍了法属圭亚那和苏里南(FGS)的主要筑巢海滩上出生的未成年人在海洋中的扩散情况。方法使用STAMM(一个基于个人的模型)模拟扩散,其中少年在洋流和栖息地驱动的运动共同作用下主动扩散。为了比较,还模拟了洋流唯一作用下的被动扩散。结果模拟结果表明,洋流导致少年在中纬度穿越大西洋。与被动个体不同,主动少年在穿越北大西洋时会进行重要的南北季节性迁徙。他们最终到达欧洲或北非海岸并进入地中海。不到4岁的活龟首先从毛里塔尼亚抵达。 6至9岁的人首先到达了大西洋东部(加利西亚和葡萄牙海岸,加的斯湾,比斯开湾)和地中海的其他生产力地区。这种主动的扩散方案及其时机似乎与在欧洲和北非的大西洋和地中海沿岸收集的所有可用的搁浅和兼捕数据一致。模拟结果还表明,幼鸟遇到的散布时间和栖息地的质量至少可以部分解释为什么NWA棱皮龟亚种群的表现要好于西太平洋种群。结论本文首次详细模拟了棱皮海龟从FGS巢滩扩散到北大西洋和地中海的时空分布。通过搁浅和兼捕数据证实了模拟结果,指出了大西洋东侧和地中海中几个重要的开发区域。这些结果应有助于将重点放在这些关键领域的观察和保护工作上。

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