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首页> 外文期刊>Journal of quaternary science: JQS >Potential seasonal calibration for palaeoenvironmental reconstruction using skeletal microstructures and strontium measurements from the cold-water coral Lophelia pertusa
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Potential seasonal calibration for palaeoenvironmental reconstruction using skeletal microstructures and strontium measurements from the cold-water coral Lophelia pertusa

机译:利用骨骼微结构和来自冷水珊瑚山Lo的锶锶测量的古环境重建潜在季节性校准

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Lophelia pertusa is a colonial cold-water coral species with a wide spatial distribution in recent marine waters. Analysing the chemistry of its skeleton allows reconstruction of environmental parameter variations. While numerous studies have attempted to interpret such analyses, little information is available on the microstructures of Lophelia pertusa and their temporal constraints. This study introduces newly recognized microstructures in the coral wall following growth along the radial axis. The thicknesses of these ‘micro-layers’ are correlated with strontium concentrations and can be used to estimate seasonal growth rates of single polyps from the colony. We propose that each of these micro-layers represents a period of 1 month of mineralization and can locate two decreasing periods in growth rate during a year: one caused by limited food availability during winter months and one in autumn linked to gametogenesis. High-frequency study of strontium concentrations using this interpretation shows a lunar cycle. We demonstrate that while the micro-layers are present in all L. pertusa specimens from four locations in the Atlantic Ocean and the Mediterranean Sea, growth patterns reveal a complex organization that limits their visibility. Strontium fluctuations, however, appear to be a promising mechanism by which to establish a temporal calibration.
机译:Lophelia pertusa是一种殖民地冷水珊瑚物种,在最近的海水中具有广泛的空间分布。分析其骨架的化学性质可以重建环境参数的变化。尽管大量研究试图解释这种分析,但关于百日草的微观结构及其时间限制的信息很少。这项研究在沿径向轴生长之后,在珊瑚壁中引入了新认识到的微观结构。这些“微层”的厚度与锶的浓度相关,可用于估算菌落中单个息肉的季节性生长率。我们建议这些微层中的每一个都代表一个矿化期为1个月的时期,并且可以定位一年中两个增长率的下降时期:一个是由于冬季几个月的食物供应有限而引起的,另一个是与配子发生有关的秋天。使用这种解释进行的锶浓度的高频研究显示了一个月球周期。我们证明,虽然在大西洋和地中海四个地区的所有百日咳杆菌样品中都存在微层,但生长模式显示出一个复杂的组织,限制了它们的可见性。但是,锶波动似乎是建立时间校准的一种有前途的机制。

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