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Oxygen and carbon isoscapes for the Baltic Sea: Testing their applicability in fish migration studies

机译:波罗的海的氧气和碳等势线:测试它们在鱼类迁移研究中的适用性

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摘要

Conventional tags applied to individuals have been used to investigate animal movement, but these methods require tagged individuals be recaptured. Maps of regional isotopic variability known as “isoscapes” offer potential for various applications in migration research without tagging wherein isotope values of tissues are compared to environmental isotope values. In this study, we present the spatial variability in oxygen (δ18OH2O) and dissolved inorganic carbon (δ13 CDIC) isotope values of Baltic Sea water. We also provide an example of how these isoscapes can reveal locations of individual animal via spatial probability surface maps, using the high‐resolution salmon otolith isotope data from salmon during their sea‐feeding phase in the Baltic Sea. A clear latitudinal and vertical gradient was found for both δ18OH2O and δ13 CDIC values. The difference between summer and winter in the Baltic Sea δ18OH2O values was only slight, whereas δ13 CDIC values exhibited substantial seasonal variability related to algal productivity. Salmon otolith δ18Ooto and δ13Coto values showed clear differences between feeding areas and seasons. Our example demonstrates that dual isotope approach offers great potential for estimating probable fish habitats once issues in model parameterization have been resolved.
机译:应用于个体的常规标签已用于调查动物运动,但是这些方法要求重新捕获带标签的个体。称为“同位素”的区域同位素变异性图为在迁移研究中的各种应用提供了潜力,而无需进行标记,其中将组织的同位素值与环境同位素值进行比较。在这项研究中,我们提出了波罗的海海水中氧(δ 18 OH2O)和溶解的无机碳(δ 13 CDIC)同位素值的空间变异性。我们还提供了一个示例,说明了这些等景线如何使用空间概率表面图通过波罗的海的鲑鱼进食阶段的高分辨率鲑鱼耳石同位素数据揭示动物的位置。 δ 18 OH2O和δ 13 CDIC值均存在明显的横向和纵向梯度。波罗的海夏季和冬季之间的δ 18 OH2O值差异很小,而δ 13 CDIC值却显示出与藻类生产力相关的明显季节性变化。鲑鱼耳石δ 18 Ooto和δ 13 Coto值表明摄食区域和季节之间存在明显差异。我们的示例表明,一旦解决了模型参数化问题,双重同位素方法将为估算可能的鱼类栖息地提供巨大潜力。

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