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Localized zinc distribution in shark vertebrae suggests differential deposition during ontogeny and across vertebral structures

机译:鲨鱼椎骨中锌的局部分布表明个体发育期间和整个椎骨结构中的沉积差异

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摘要

The development of shark vertebrae and the possible drivers of inter- and intra-specific differences in vertebral structure are poorly understood. Shark vertebrae are used to examine life-history traits related to trophic ecology, movement patterns, and the management of fisheries; a better understanding of their development would be beneficial to many fields of research that rely on these calcified structures. This study used Scanning X-ray Fluorescence Microscopy to observe zinc distribution within vertebrae of ten shark species from five different orders. Zinc was mostly localised within the intermedialis and was generally detected at levels an order of magnitude lower in the corpus calcareum. In most species, zinc concentrations were higher pre-birth mark, indicating a high rate of pre-natal zinc deposition. These results suggest there are inter-specific differences in elemental deposition within vertebrae. Since the deposition of zinc is physiologically-driven, these differences suggest that the processes of growth and deposition are potentially different in the intermedialis and corpus calcareum, and that caution should be taken when extrapolating information such as annual growth bands from one structure to the other. Together these results suggest that the high inter-specific variation in vertebral zinc deposition and associated physiologies may explain the varying effectiveness of ageing methodologies applied to elasmobranch vertebrae.
机译:鲨鱼椎骨的发育以及椎间结构种内和种内差异的可能驱动因素知之甚少。鲨鱼椎骨用于检查与营养生态,运动方式和渔业管理有关的生活史特征;更好地了解它们的发展将对依赖于这些钙化结构的许多研究领域有益。这项研究使用扫描X射线荧光显微镜观察了五个不同阶的十种鲨鱼的椎骨中锌的分布。锌大部分位于中间组织内,通常在钙care体中检出的水平要低一个数量级。在大多数物种中,锌的浓度高于出生前标记,表明产前锌的沉积率很高。这些结果表明椎骨内元素沉积存在种间差异。由于锌的沉积是生理驱动的,因此这些差异表明,在中间层和钙盖层中,生长和沉积的过程可能有所不同,并且在将诸如年生长带的信息从一种结构推算到另一种结构时,应谨慎行事。 。这些结果共同表明,椎骨锌沉积的高种间差异和相关的生理学可能解释了应用于弹性分支椎体的衰老方法的不同有效性。

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