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运用二维图谱分析耳石化学成分的异质性:与生物矿化机制的关系及其对微化学分析的启示。

Heterogeneity of otolith chemical composition from two-dimensional mapping: Relationship with biomineralization mechanisms and implications for microchemistry analyses.

机构信息

Ifremer DECOD (Ecosystem Dynamics and Sustainability), Ifremer, INRAE, Institut Agro, Centre Bretagne, HALGO, LBH, Plouzané, France.

Ifremer HMMN (Channel and North Sea Fisheries Research Unit), Boulogne-sur-Mer, France.

出版信息

J Fish Biol. 2024 Jan;104(1):20-33. doi: 10.1111/jfb.15561. Epub 2023 Sep 22.

Abstract

Although otoliths are widely used as archives to infer life-history traits and habitat use in fishes, their biomineralization process remains poorly understood. This lack of knowledge is problematic as it can lead to misinterpretation of the different types of signals (e.g., optical or chemical) that provide basic data for research in fish ecology, fisheries management, and species conservation. Otolith calcification relies on a complex system involving a pericrystalline fluid, the endolymph, whose organic and inorganic compositions are spatially heterogeneous for some constituents. This property stems from the particular structure of the calcifying saccular epithelium. In this study, we explored the spatial heterogeneity of elemental incorporation in otoliths for two species of high economic interest, European hake Merluccius merluccius (L. 1758) and European sea bass Dicentrarchus labrax (L. 1758). Two-dimensional mappings of chemical elements were obtained using UV high-repetition-rate femtosecond laser ablation (fs-LA) system coupled to a high-resolution inductively coupled plasma sector field mass spectrometer analyses on transverse sections of sagittae. Results highlighted a clear asymmetry between proximal (sulcus) and distal (antisulcus) concentrations for elements such as magnesium (Mg), phosphorus (P), manganese (Mn), and potassium (K) with concentration gradient directions that varied depending on the element. Strontium (Sr) and barium (Ba) did not show a proximo-distal gradient. These results are discussed in light of current knowledge on the endolymph composition and the mechanisms that lead to its compartmentalization, highlighting the need for further research on otolith biomineralization. Operational implications for studies based on otolith chemical composition are also discussed with emphasis on advice for sampling strategies to avoid analytical biases and the need for in-depth analyses of analytical settings before comparing otolith signatures between species or geographical areas.

摘要

尽管耳石被广泛用作鱼类生活史特征和栖息地利用的档案,但它们的生物矿化过程仍知之甚少。这种知识的缺乏是有问题的,因为它可能导致对不同类型的信号(例如光学或化学信号)的误解,这些信号为鱼类生态学、渔业管理和物种保护的研究提供了基本数据。耳石钙化依赖于一个复杂的系统,涉及到一个有晶体的液体,即内淋巴,其有机和无机成分在某些成分上是空间不均匀的。这种特性源于钙化囊状上皮的特殊结构。在这项研究中,我们探索了两种具有高经济价值的鱼类,即欧洲无须鳕 Merluccius merluccius(L. 1758)和欧洲鲈鱼 Dicentrarchus labrax(L. 1758)的耳石中元素掺入的空间异质性。使用紫外高重复率飞秒激光烧蚀(fs-LA)系统对矢状面的横切片进行二维元素映射,该系统与高分辨率电感耦合等离子体质谱扇形场分析相结合。结果突出了镁(Mg)、磷(P)、锰(Mn)和钾(K)等元素在近侧(沟)和远侧(反沟)浓度之间的明显不对称性,浓度梯度的方向因元素而异。锶(Sr)和钡(Ba)没有显示出远近梯度。这些结果是根据内淋巴成分的现有知识和导致其分隔的机制来讨论的,突出了需要进一步研究耳石的生物矿化。还讨论了基于耳石化学成分的研究的操作意义,重点是关于采样策略的建议,以避免分析偏差,并在比较物种或地理区域之间的耳石特征之前,需要对分析设置进行深入分析。

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