首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Isolation by environment in the highly mobile olive ridley turtle (Lepidochelys olivacea) in the eastern Pacific
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Isolation by environment in the highly mobile olive ridley turtle (Lepidochelys olivacea) in the eastern Pacific

机译:东太平洋高度活动的橄榄色ridley龟(Lepidochelys olivacea)的环境隔离

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摘要

Spatial and temporal scales at which processes modulate genetic diversity over the landscape are usually overlooked, impacting the design of conservation management practices for widely distributed species. We examine processes shaping population divergence in highly mobile species by re-assessing the case of panmixia in the iconic olive ridley turtle from the eastern Pacific. We implemented a biophysical model of connectivity and a seascape genetic analysis based on nuclear DNA variation of 634 samples collected from 27 nesting areas. Two genetically distinct populations largely isolated during reproductive migrations and mating were detected, each composed of multiple nesting sites linked by high connectivity. This pattern was strongly associated with a steep environmental gradient and also influenced by ocean currents. These findings relate to meso-scale features of a dynamic oceanographic interface in the eastern tropical Pacific (ETP) region, a scenario that possibly provides different cost–benefit solutions and selective pressures for sea turtles during both the mating and migration periods. We reject panmixia and propose a new paradigm for olive ridley turtles where reproductive isolation due to assortative mating is linked to its environment. Our study demonstrates the relevance of integrative approaches for assessing the role of environmental gradients and oceanographic currents as drivers of genetic differentiation in widely distributed marine species. This is relevant for the conservation management of species of highly mobile behaviour, and assists the planning and development of large-scale conservation strategies for the threatened olive ridley turtles in the ETP.
机译:通常忽略了过程调节景观遗传多样性的时空尺度,影响了广泛分布物种的保护管理实践的设计。我们通过重新评估东太平洋标志性橄榄色ridley龟中的panmixia病例,研究了影响高度活动物种中种群差异的过程。我们基于从27个筑巢区采集的634个样本的核DNA变异,实现了连通性的生物物理模型和海景遗传分析。在繁殖迁移和交配过程中,发现了两个在遗传上完全不同的种群,每个种群由多个嵌套位点组成,这些位点之间通过高连通性相连。这种模式与陡峭的环境梯度密切相关,还受到洋流的影响。这些发现与东部热带太平洋(ETP)地区动态海洋界面的中尺度特征有关,这种情况可能为交配和迁徙期间的海龟提供不同的成本效益解决方案和选择性压力。我们拒绝混血儿,并提出了一种新的范式,用于橄榄色ridley龟,其中归因于各种交配的繁殖隔离与其环境相关联。我们的研究表明,综合方法对于评估环境梯度和海洋洋流在广泛分布的海洋物种中作为遗传分化驱动力的作用具有重要意义。这与高度流动性物种的保护管理有关,并有助于规划和开发ETP中受威胁的橄榄色ridley龟的大规模保护策略。

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