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Combining stable isotopes and skeletal growth marks to detect habitat shifts in juvenile loggerhead sea turtles Caretta caretta

机译:结合稳定的同位素和骨骼生长标记来检测幼小海龟Caretta caretta的栖息地变化

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摘要

Understanding the phase and timing of ontogenetic habitat shifts underlies the study of a species’ life history and population dynamics. This information is especially critical to the conservation and management of threatened and endangered species, such as the loggerhead sea turtle Caretta caretta. The early life of loggerheads consists of a terrestrial egg and hatchling stage, a posthatchlingudand juvenile oceanic, pelagic feeding stage, and a juvenile neritic, primarily benthic feeding stage. In the present study, novel approaches were applied to explore the timing of the loggerhead ontogenetic shift from pelagic to benthic habitats. The most recent years of somatic growth are recorded as annual marks in humerus cross sections. A consistent growth mark pattern in benthic juvenile loggerheads was identified, with narrow growth marks in the interior of the bone transitioning to wider growth marks at the exterior, indicative of a sharp increase in growth rates at the transitional growth mark. This increase in annual growth is hypothesized to correlate with the ontogenetic shift from pelagic to benthic habitats. Stable isotopes of carbon and nitrogen just interior and exteriorudto the transitional growth mark, as well as stable isotopes from pelagic and benthic flora, fauna and loggerhead stomach contents, were analyzed to determine whether this transition related to a diet shift. The results clearly indicate that a dietary shift from oceanic/pelagic to neritic/benthic feeding corresponds to a transitional growth mark. The combination of stable isotope analysis with skeletochronology can elucidate the ecology of cryptic life history stages during loggerhead ontogeny.
机译:了解个体发生的生境转变的阶段和时间是对物种的生活史和种群动态进行研究的基础。这些信息对于保护和管理濒临灭绝的物种(例如the海龟Caretta caretta)尤其重要。的早期生活包括一个陆生卵和孵化阶段,一个孵化后的乌杜幼鱼,中上层幼鱼阶段以及一个幼稚的,底栖生物阶段。在本研究中,采用了新颖的方法来探索从上层生境到底栖生境的遗传转化时间。最近几年的体细胞生长记录为肱骨横断面的年标记。底栖幼年logger的生长规律是一致的,骨骼内部的狭窄生长标记过渡到外部的较宽生长标记,表明过渡生长标记处的增长率急剧增加。据推测,年增长的这种增长与从上层生境到底栖生境的个体转变有关。仅分析了内部和外部直至过渡生长标记的稳定碳和氮同位素,以及来自中上层和底栖植物群,动物区系和头胃内容物的稳定同位素,以确定这种过渡是否与饮食转变有关。结果清楚地表明,饮食从海洋/中上层向鸟类/底栖动物的转变对应于过渡生长标记。稳定同位素分析与骨架年代学的结合可以阐明顶头个体发育过程中隐性生命历史阶段的生态。

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