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Determining larval dispersal and natal origins of marine fishes using geochemical signatures in otoliths

机译:使用耳石中的地球化学特征确定海水鱼类的幼体扩散和幼体起源

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Summary form only given. Quantifying connectivity among fish populations remains a significant hurdle in fisheries management, the design of marine reserves, and the assessment of essential fish habitat. Determining larval trajectories and natal origins of marine fish is challenging because of difficulties in conducting mark-recapture studies in marine systems. We are developing techniques that utilize stable isotope and trace element signatures in otoliths (ear stones) as natural markers in marine fishes. Laboratory studies confirmed that the composition of otolith aragonite is related to physico-chemical properties of ambient waters. We are now applying the technique to determine population structure of weakfish (Cynoscion regalis), and to examine larval dispersal pathways of coral reef fishes. In the weakfish study, we have used geochemical signatures in adult otoliths (parameterized by groundtruthed signatures from two annual cohorts of juvenile weakfish) to retrospectively determine natal origins of spawning weakfish collected from 5 major estuaries along the US east coast. We found much more population structure, as evidenced by natal homing, than was implicated by genetic approaches. We suspect that such behavior may be much more common in marine fishes than is currently assumed, and believe that there is an urgent need to acknowledge spatial context in the management of marine fish populations.
机译:仅提供摘要表格。量化鱼类种群之间的连通性仍然是渔业管理,海洋保护区设计和基本鱼类生境评估的重大障碍。由于很难在海洋系统中进行标记捕获研究,因此确定海洋鱼类的幼体轨迹和成年起源具有挑战性。我们正在开发利用耳石(耳石)中的稳定同位素和微量元素特征作为海洋鱼类中天然标记物的技术。实验室研究证实,耳石文石的组成与环境水的理化性质有关。现在,我们正在应用该技术确定弱鱼(Cynoscion regalis)的种群结构,并检查珊瑚礁鱼的幼体扩散途径。在弱鱼研究中,我们使用了成年耳石的地球化学特征(以来自两个年度幼弱鱼群的地面真实特征为参数)来追溯确定从美国东海岸的5个主要河口收集的产卵弱鱼的出生起源。我们发现,由出生归巢证明的人口结构要比遗传方法所暗示的要多得多。我们怀疑这种行为在海洋鱼类中可能比目前所认为的更为普遍,并认为迫切需要在管理海洋鱼类种群中认识到空间环境。

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