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Estimating larval supply of Ezo abalone Haliotis discus hannai in a small bay using a coupled particle-tracking and hydrodynamic model: insights into the establishment of harvest refugia

机译:利用耦合的颗粒追踪和水动力模型估算小海湾虾夷鲍鱼的幼虫供应:对建立避难所的见解

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Most juveniles of Haliotis discus hannai have been found to be descendants of wild individuals, although most adults were artificially produced (released) individuals as a result of restocking inside the refugium located near the head of Oshoro Bay, Hokkaido, Japan. To estimate the larval supply from released and wild individuals into the refugium and to compare the suitability of locations as larval sources, we simulated larval dispersal using a coupled hydrodynamic and particle-tracking model. The simulation results indicated that more larvae may be supplied from the wild adults inside the bay to the refugium than from the released adults. These results are consistent with the observed high abundance of wild juveniles in the refugium. Most larvae from the refugium were predicted to disperse out of the bay. We found that larval retention in the bay was at least one order of magnitude higher than that in the refugium. Thus, it may be more effective in terms of self-replenishment and reproduction if the refugium were to be expanded to the bay scale. There were only minor differences among the compared sites at the head of the bay in terms of their suitability as larval sources. Consequently, the establishment of new refugia in this area could be expected to provide an effectiveness equal to that of the current refugium.
机译:尽管大多数成年成年人是由于在日本北海道奥修罗湾头部附近的避难所内放养的结果,但大多数成年人是野生个体的后代,尽管大多数成年人是人工生产(释放)的个体。为了估计从释放的个体和野生个体到避难所的幼虫供应,并比较场所作为幼虫来源的适宜性,我们使用耦合的水动力和颗粒追踪模型模拟了幼虫的扩散。模拟结果表明,与释放的成年动物相比,海湾内野生成虫向避难所提供的幼虫更多。这些结果与在避难所中观察到的野生少年数量很高相一致。据预测,来自避难所的大多数幼虫会散出海湾。我们发现,海湾中的幼虫滞留量比避难所中的幼虫滞留量至少高一个数量级。因此,如果将避难所扩展到海湾规模,则在自我补给和繁殖方面可能更为有效。就其作为幼体来源的适用性而言,在海湾顶部的比较地点之间只有很小的差异。因此,可以预期在该地区建立新的避难所将提供与当前避难所相同的效力。

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