Greater moisture impacts on radial growth of Larix sibirica in the eastern Altay Mountains since the 1990s.

IF 3 3区 地球科学 Q2 BIOPHYSICS International Journal of Biometeorology Pub Date : 2024-11-04 DOI:10.1007/s00484-024-02795-2
Xiaoxia Gou, Tongwen Zhang, Shulong Yu, Huaming Shang, Ruibo Zhang, Li Qin, Kexiang Liu, Shengxia Jiang, Dong Guo, Yuting Fan, Ruxianguli Abudureheman, Heli Zhang
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Abstract

Against the background of climate warming and humidification, the so-called 'divergence problem' reduces the stability of tree rings in response to climate, and affects the reliability of tree-ring reconstruction. Investigation of the divergence problem is crucial to improve our understanding of the response patterns of trees to climate warming, and provide a scientific basis for accurate climate reconstruction. Based on tree-ring width data for Siberian larch (Larix sibirica Ledeb.) growing at low elevations in the eastern Altay Mountains, we analyzed the relationship between radial growth of trees and climatic factors in the context of abrupt climate change in this region. We calculated the proportional contribution of five climatic factors to the radial growth of trees, and discussed the response mechanism of radial growth of L. sibirica in combination with large-scale atmospheric circulation patterns. The radial growth of L. sibirica was mainly constrained by water availability. Before climate warming (1961-1990), the radial growth of L. sibirica was mainly limited by temperature in the previous June. After abrupt climate warming (1991-2020), there was a significant positive correlation between growth and soil moisture in the previous winter, suggesting that high temperatures in the following spring would limit tree radial growth if water availability was low. The attribution analysis results revealed that, before 1990, the proportional of relative contribution of temperature to radial growth of trees exceeded 60%. Since 1990, the proportional of relative contribution of water (precipitation and volumetric soil water) to growth of L. sibirica increased. This might reflect the combined effects of local climatic conditions and changes in large-scale atmospheric circulation.

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自 20 世纪 90 年代以来,湿度对阿勒泰山脉东部西伯利亚红豆杉径向生长的影响越来越大。
在气候变暖和潮湿的背景下,所谓的 "发散问题 "降低了树木年轮对气候反应的稳定性,影响了树木年轮重建的可靠性。研究发散问题对于提高我们对树木对气候变暖的响应模式的理解,以及为准确的气候重建提供科学依据至关重要。基于生长在阿勒泰山脉东部低海拔地区的西伯利亚落叶松(Larix sibirica Ledeb.)的树环宽度数据,我们分析了该地区气候突变背景下树木径向生长与气候因素之间的关系。我们计算了五种气候因子对树木径向生长的贡献比例,并结合大尺度大气环流模式讨论了西伯利亚红豆杉径向生长的响应机制。西伯利亚红豆杉的径向生长主要受水分供应的制约。在气候变暖之前(1961-1990 年),L. sibirica 的径向生长主要受前 6 月温度的限制。气候骤然变暖后(1991-2020 年),树木的径向生长与前一年冬季的土壤湿度呈显著正相关,表明如果水分供应不足,次年春季的高温将限制树木的径向生长。归因分析结果显示,1990 年以前,温度对树木径向生长的相对贡献比例超过 60%。自 1990 年以来,水量(降水量和土壤容积水量)对西伯利亚红豆杉生长的相对贡献比例有所增加。这可能反映了当地气候条件和大尺度大气环流变化的综合影响。
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来源期刊
CiteScore
6.40
自引率
9.40%
发文量
183
审稿时长
1 months
期刊介绍: The Journal publishes original research papers, review articles and short communications on studies examining the interactions between living organisms and factors of the natural and artificial atmospheric environment. Living organisms extend from single cell organisms, to plants and animals, including humans. The atmospheric environment includes climate and weather, electromagnetic radiation, and chemical and biological pollutants. The journal embraces basic and applied research and practical aspects such as living conditions, agriculture, forestry, and health. The journal is published for the International Society of Biometeorology, and most membership categories include a subscription to the Journal.
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