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Responses of Intrinsic Water-use Efficiency and Tree Growth to Climate Change in Semi-Arid Areas of North China

机译:华北半干旱地区内在水分利用效率和树木生长对气候变化的响应

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摘要

Tree-level intrinsic water-use efficiency (iWUE) is derived from the tree-ring 13C isotope composition (δ13C) and is an important indicator of the adaptability for trees to climate change. However, there is still uncertainty regarding the relationship between long-term forest ecosystem carbon sequestration capacity and iWUE. To determine whether elevated atmospheric CO2 concentration (Ca) increase iWUE and tree growth (basal area increment, BAI), dendrochronological methods and stable isotope analyses were used to examine annual changes in the tree-ring width and carbon isotope composition (δ13C) of Platycladus orientalis in northern China. The iWUE derived from δ13C has increased significantly (p < 0.01). Long-term iWUE trend was largely and positively driven by the elevated atmospheric CO2 concentration and temperature. We observed a general increase in averaged BAI, which had significant positive correlation with iWUE (R2 = 0.3186, p < 0.01). Increases in iWUE indeed translated into enhanced P. orientalis growth in semi-arid areas of northern China. Elevated atmospheric CO2 concentration significantly (p < 0.01) stimulated P. orientalis biomass accumulation when Ca was less than approximately 320 ppm in the early phase; however, this effect was not pronounced when Ca exceeded 320 ppm.
机译:树级的内在用水效率(iWUE)是从树环的 13 C同位素组成(δ 13 C)得出的,它是对树木适应性的重要指标。树木应对气候变化。但是,关于长期森林生态系统碳固存能力与iWUE之间关系的问题仍存在不确定性。为了确定升高的大气CO2浓度(Ca)是否增加iWUE和树木生长(基础面积增加,BAI),使用树轮年代学方法和稳定同位素分析来检查树木年轮宽度和碳同位素组成的年度变化(δ中国北方的侧柏(13)。来自δ 13 C的iWUE显着增加(p <0.01)。 iWUE的长期趋势在很大程度上受到大气CO2浓度和温度升高的积极推动。我们观察到平均BAI普遍升高,与iWUE呈显着正相关(R 2 = 0.3186,p <0.01)。 iWUE的增加确实转化为中国北方半干旱地区东方侧柏的生长增强。当早期的Ca低于约320 ppm时,大气CO2浓度的升高显着(p <0.01)刺激了东方侧柏的生物量积累。但是,当Ca超过320ppm时,该效果不明显。

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