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淡水双壳类贝壳中的季节性氧同位素变化作为亚马逊河流水文地球化学的记录器。

Seasonal oxygen isotope variations in freshwater bivalve shells as recorders of Amazonian rivers hydrogeochemistry.

作者信息

Gaillard Blandine, Lazareth Claire E, Lestrelin Hugo, Dufour Elise, Santos Roberto V, Freitas Carlos E C, Pouilly Marc

机构信息

Laboratoire de Biologie des Organismes et Ecosystèmes Aquatiques (BOREA) MNHN, CNRS, IRD, SU, UCN, UA, Paris, France.

Archéozoologie, Archéobotanique: Sociétés, Pratiques et Environnements (AASPE), Muséum National d'Histoire Naturelle, CNRS, Paris, France.

出版信息

Isotopes Environ Health Stud. 2019 Dec;55(6):511-525. doi: 10.1080/10256016.2019.1666120. Epub 2019 Sep 18.

Abstract

Freshwater bivalve shell oxygen isotope values (O) may act as a recorder of river O variations that can then be interpreted in terms of hydrology (e.g. precipitation-evaporation balance, precipitation and river discharge patterns). We investigated the potential of this proxy measured across the hinge of South American unionid shells: collected in Peru and in Brazil. The isotopic signatures were reproducible between individuals of the same species. clearly showed a strong O cyclicity in accordance with its growth patterns while presented less clear O with lower amplitude. We confirm that the deposition of successive growth lines and increments is annual, with growth line corresponding to the wet season. Also, we suggest that low amplitude of O in the shells indicates a habitat close to the river while large amplitude of O cycles observed in shells would reflect a floodplain lake habitat, seasonally disconnected from the river and thus subjected to higher seasonal fluctuations in water O. Considering these promising first results, future studies could be directed towards the use of fossil shells to reconstruct the past and present hydrological and geochemical conditions of the Amazon.

摘要

淡水双壳贝类壳氧同位素值(O)可作为河流O变化的记录器,进而可根据水文情况(如降水-蒸发平衡、降水和河流流量模式)进行解释。我们研究了在南美洲蚌壳铰链处测量的这种代理指标的潜力:样本采集于秘鲁和巴西。同一物种个体之间的同位素特征具有可重复性。[此处两个“ ”指代不明,无法准确翻译,暂保留原文]明显显示出与其生长模式一致的强烈氧循环,而[此处两个“ ”指代不明,无法准确翻译,暂保留原文]的氧循环不太明显且幅度较小。我们证实,连续生长线和增量的沉积是每年一次,生长线对应于雨季。此外,我们认为[此处两个“ ”指代不明,无法准确翻译,暂保留原文]壳中氧的低幅度表明其栖息地靠近河流,而在[此处两个“ ”指代不明,无法准确翻译,暂保留原文]壳中观察到的大氧循环幅度将反映洪泛平原湖泊栖息地,该栖息地季节性地与河流断开连接,因此水氧的季节性波动更大。考虑到这些有前景的初步结果,未来的研究可以朝着利用化石壳重建亚马逊过去和现在的水文和地球化学条件的方向进行。

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