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首页> 外文期刊>Plant, Cell & Environment >Examining the response of needle carbohydrates from Siberian larch trees to climate using compound-specific C-13 and concentration analyses
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Examining the response of needle carbohydrates from Siberian larch trees to climate using compound-specific C-13 and concentration analyses

机译:使用化合物特异性C-13和浓度分析检查西伯利亚落叶松针叶碳水化合物对气候的响应

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摘要

Little is known about the dynamics of concentrations and carbon isotope ratios of individual carbohydrates in leaves in response to climatic and physiological factors. Improved knowledge of the isotopic ratio in sugars will enhance our understanding of the tree ring isotope ratio and will help to decipher environmental conditions in retrospect more reliably. Carbohydrate samples from larch (Larix gmelinii) needles of two sites in the continuous permafrost zone of Siberia with differing growth conditions were analysed with the Compound-Specific Isotope Analysis (CSIA). We compared concentrations and carbon isotope values (C-13) of sucrose, fructose, glucose and pinitol combined with phenological data. The results for the variability of the needle carbohydrates show high dynamics with distinct seasonal characteristics between and within the studied years with a clear link to the climatic conditions, particularly vapour pressure deficit. Compound-specific differences in C-13 values as a response to climate were detected. The C-13 of pinitol, which contributes up to 50% of total soluble carbohydrates, was almost invariant during the whole growing season. Our study provides the first in-depth characterization of compound-specific needle carbohydrate isotope variability, identifies involved mechanisms and shows the potential of such results for linking tree physiological responses to different climatic conditions.
机译:关于气候和生理因素对叶片中各种碳水化合物的浓度和碳同位素比的动态影响知之甚少。对糖中同位素比率的认识的提高将增强我们对树环同位素比率的理解,并将有助于更可靠地破译环境条件。使用化合物特异性同位素分析(CSIA)分析了西伯利亚连续多年冻土带中两个位置不同生长条件的落叶松(Larix gmelinii)针的碳水化合物样品。我们结合物候数据,比较了蔗糖,果糖,葡萄糖和松糖醇的浓度和碳同位素值(C-13)。针状碳水化合物的变异性结果显示高动态,在研究年份之间和之内具有明显的季节性特征,与气候条件(尤其是蒸气压不足)有着明显的联系。检测到化合物C-13值随气候变化的差异。松脂醇的C-13占可溶性碳水化合物总量的50%,在整个生长季节几乎不变。我们的研究首次对化合物特异性针状碳水化合物的同位素变异性进行了深入表征,确定了相关机制,并显示了将这些结果链接到不同气候条件下树木生理反应的潜力。

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