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首页> 外文期刊>The Journal of Applied Ecology >Mercury isotope clocks predict coastal residency and migration timing of hammerhead sharks
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Mercury isotope clocks predict coastal residency and migration timing of hammerhead sharks

机译:汞同位素时钟预测双髻鲨的沿海居住地和迁徙时间

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Abstract The management of migratory taxa relies on the knowledge of their movements. Among them, ontogenetic habitat shift, from nurseries to adult habitats, is a behavioural trait shared across marine taxa allowing resource partitioning between life stages and reducing predation risk. As this movement is consistent over time, characterizing its timing is critical to implement efficient management plans, notably in coastal areas to mitigate the impact of fisheries on juvenile stocks. In the Mexican Pacific, habitat use of the smooth hammerhead shark (Sphyrna zygaena) is poorly described, while the species is heavily harvested. Given the large uncertainties associated with the timing of out‐migration from coastal nursery grounds to offshore waters prior to reproductive maturity, a more precise assessment of smooth hammerhead shark movements is needed. Photochemical degradation of mercury imparts mass‐independent isotope fractionation (Δ199Hg) which can be used to discriminate between neonate coastal shallow habitats and the offshore deep foraging patterns of late juveniles. Here, we present the application of muscle Δ199Hg as molecular clocks to predict the timing of ontogenetic habitat shifts by smooth hammerhead sharks, based on their isotopic compositions at the initial and arrival habitats and on muscle isotopic turnover rate. We observed decreases in Δ199Hg values with shark body length, reflecting increasing reliance on offshore mesopelagic prey with age. Coastal residency estimates indicated that smooth hammerhead sharks utilize coastal resources for 2 years prior to offshore migration, suggesting a prolonged residency in these ecosystems. Policy implications. This study demonstrates how mercury stable isotopes and isotopic clocks can be implemented as a complementary tool for stock management by predicting the timing of animal migration—a key aspect in the conservation of marine taxa. In the Mexican Pacific, fishing pressure on shark species occurs in coastal habitats depleting juvenile stocks. Consequently, management decision support tools are imperative for effectively maintaining early life stage population levels over time. The finding that smooth hammerhead sharks extensively rely on highly fished habitats for 2 years after parturition supports the relevance of establishing a size limit in coastal fisheries and demonstrates how the current temporal shark fishing closure could lack efficiency for the species.
机译:摘要 迁徙类群的管理依赖于对迁徙类群运动的了解。其中,个体发育生境的转变,从苗圃到成虫生境,是海洋类群共有的行为特征,允许在生命阶段之间分配资源并降低捕食风险。由于这种变化在一段时间内是一致的,因此确定其时机对于实施有效的管理计划至关重要,特别是在沿海地区,以减轻渔业对幼鱼种群的影响。在墨西哥太平洋,光滑的双髻鲨(Sphyrna zygaena)的栖息地利用描述很少,而该物种却被大量捕捞。鉴于在繁殖成熟之前从沿海育苗场向近海水域迁徙的时间存在很大的不确定性,因此需要对双髻鲨的平稳运动进行更精确的评估。汞的光化学降解赋予了与质量无关的同位素分馏(Δ199Hg),可用于区分新生沿海浅水生境和晚期幼鱼的近海深部觅食模式。在这里,我们介绍了肌肉Δ199Hg作为分子钟的应用,以预测光滑双髻鲨在初始和到达栖息地的同位素组成以及肌肉同位素周转率的个体发育栖息地变化的时间。我们观察到Δ199Hg值随着鲨鱼体长的增加而降低,反映出随着年龄的增长,对近海中层猎物的依赖性增加。沿海居住估计表明,光滑的双髻鲨在离岸迁徙前利用沿海资源2年,这表明它们在这些生态系统中居住的时间很长。政策影响。这项研究展示了如何通过预测动物迁徙的时间(海洋分类群保护的一个关键方面)来实施汞稳定同位素和同位素时钟作为种群管理的补充工具。在墨西哥太平洋地区,沿海生境对鲨鱼物种的捕捞压力使幼鱼种群枯竭。因此,管理决策支持工具对于长期有效维持生命早期阶段的人口水平至关重要。光滑的双髻鲨在分娩后 2 年内广泛依赖高度捕捞的栖息地,这一发现支持了在沿海渔业中建立尺寸限制的相关性,并表明目前暂时的鲨鱼捕捞关闭对该物种来说可能缺乏效率。

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