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追踪从水源到树木年轮化合物的氧和氢同位素信号。

Tracing Oxygen and Hydrogen Isotope Signals From Water Sources to Tree-Ring Compounds.

作者信息

Diao Haoyu, Holloway-Phillips Meisha, Bernhard Fabian, Wieland Anna, Floriancic Marius G, Waldner Peter, Treydte Kerstin, Saurer Matthias, von Arx Georg, Gessler Arthur, Meusburger Katrin, Lehmann Marco M

机构信息

Swiss Federal Institute for Forest, Snow and Landscape Research WSL, Birmensdorf, Switzerland.

Institute of Earth Sciences, Heidelberg University, Heidelberg, Germany.

出版信息

Plant Cell Environ. 2025 Aug;48(8):6235-6250. doi: 10.1111/pce.15598. Epub 2025 May 7.

Abstract

Stable oxygen (δO) and hydrogen (δH) isotope compositions of tree-ring compounds preserve information about environmental waters; however, our understanding of their isotopic relationships is hampered by the lack of long-term data sets. We investigated correlations using unique 17-year (2006-2022) δO and δH time series of bi-weekly measured soil solution, modelled precipitation and xylem water, along with those of tree-ring α-cellulose and lignin methoxy groups from Norway spruce (Picea abies) across three Swiss forest sites. We show that tree-ring cellulose δO preserves water source information more effectively than δH, making it better suited for ecohydrological reconstructions. We propose δH of tree-ring lignin methoxy groups as an alternative proxy for soil water sources, supported by strong correlations where cellulose failed to track soil water isotopes. Significant linear isotopic relationships within and across sites enable the development of transfer functions that link tree-ring to water sources, particularly precipitation and xylem water. We exemplify how these transfer functions can be used to estimate the seasonal origin of water sourced by trees during the growth period. Our findings enhance the interpretation of environmental water isotope signals in tree rings and promote the use of tree-ring isotope-based tools for retrospective retrieval of forest water dynamics.

摘要

树木年轮化合物中稳定的氧(δO)和氢(δH)同位素组成保存着有关环境水的信息;然而,长期数据集的缺乏阻碍了我们对其同位素关系的理解。我们利用独特的17年(2006 - 2022年)每两周测量一次的土壤溶液、模拟降水和木质部水的δO和δH时间序列,以及来自瑞士三个森林站点的挪威云杉(Picea abies)树木年轮α - 纤维素和木质素甲氧基的时间序列,研究了它们之间的相关性。我们发现,树木年轮纤维素的δO比δH更有效地保存了水源信息,使其更适合用于生态水文重建。我们提出树木年轮木质素甲氧基的δH作为土壤水源的替代指标,这一观点得到了有力的相关性支持,因为在纤维素无法追踪土壤水同位素的情况下,二者存在强相关性。站点内部和站点之间显著的线性同位素关系使得能够开发出将树木年轮与水源,特别是降水和木质部水联系起来的传递函数。我们举例说明了这些传递函数如何用于估计树木在生长期间水源的季节性来源。我们的研究结果增强了对树木年轮中环境水同位素信号的解释,并促进了基于树木年轮同位素的工具在回顾性检索森林水分动态方面的应用。

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