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A global assessment of the potential for ocean-driven transport in hatchling sea turtles

机译:全球评估孵化海龟在海洋驱动的运输潜力

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摘要

Ocean circulation models are an essential tool for use in estimating the movements of drifting marine species. Across the world, hatchling sea turtle transport to the pelagic ocean is facilitated by the local currents off their natal beaches. It is difficult, if not impossible, to observe this transport reliably for any lengthy period, and, as such, ocean circulation models are an essential tool for studying sea turtles during this vulnerable time. Here, we use the ocean circulation model HYCOM and the particle simulator Ichthyop to model the first month of hatchling transport across all sea turtle species from nesting sites across the world from 25 cohorts of hatchlings at 67 nesting sites. We evaluated transport as a function of spatiotemporal factors that could influence turtle movement, using generalized linear models and the information theoretic approach to model selection. We found that multiple physical factors influence transport across the first month of movement and that annual variability is an important factor in hatchling transport. Our findings suggest that the beaches turtles hatch from and the year in which they hatch may shape their early life and the speed of transport into the relative safety of the open ocean. An increased understanding of the likely survival of a cohort may aid in designating funds and planning conservation strategies for individual beaches to either compensate for or take advantage of the local currents.
机译:海洋循环模型是用于估算漂移海洋物种的运动的必备工具。世界各地的孵化海龟输送到野生海滩的当地电流是促进的。如果不是不可能的话,难以让这种运输可靠地遵守任何冗长的时期,因此,海洋循环模型是在这个脆弱的时间内学习海龟的重要工具。在这里,我们使用海洋循环模型ycom和粒子模拟器Ichthyop来模拟所有海龟物种的孵化运输的第一个月,从全世界的嵌套场地到67个嵌套网站的幼龟队。我们使用广义线性模型和模型选择的信息理论方法来评估可能影响龟运动的时空因素的运输。我们发现,多种物理因素影响到运动的第一个月的运输,年度变异性是孵化运输的重要因素。我们的研究结果表明,海滩龟孵化,他们孵化的年份可能会塑造他们的早期生命和运输速度进入开阔海洋的相对安全。对群组的可能生存的增加可能有助于指定各个海滩的基金和规划保护策略,以补偿或利用当地电流。

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    《Oceanographic Literature Review》 |2021年第5期|1074-1074|共1页
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