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The key factor limiting plant growth in cold and humid alpine areas also plays a dominant role in plant carbon isotope discrimination

机译:限制寒湿高寒地区植物生长的关键因素在植物碳同位素判别中也起着主导作用

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摘要

Many environmental factors affect carbon isotope discrimination in plants, yet the predominant factor influencing this process is generally assumed to be the key growth-limiting factor. However, to our knowledge this hypothesis has not been confirmed. We therefore determined the carbon isotope composition (δ13C) of plants growing in two cold and humid mountain regions where temperature is considered to be the key growth-limiting factor. Mean annual temperature (MAT) showed a significant impact on variation in carbon isotope discrimination value (Δ) irrespective of study area or plant functional type with either partial correlation or regression analysis, but the correlation between Δ and soil water content (SWC) was usually not significant. In multiple stepwise regression analysis, MAT was either the first or the only variable selected into the prediction model of Δ against MAT and SWC, indicating that the effect of temperature on carbon isotope discrimination was predominant. The results therefore provide evidence that the key growth-limiting factor is also crucial for plant carbon isotope discrimination. Changes in leaf morphology, water viscosity and carboxylation efficiency with temperature may be responsible for the observed positive correlation between Δ and temperature.
机译:许多环境因素影响植物中碳同位素的歧视,但通常认为影响该过程的主要因素是关键的生长限制因素。然而,据我们所知,这一假设尚未得到证实。因此,我们确定了在两个寒冷和潮湿的山区生长的植物的碳同位素组成(δ 13 C),这里温度被认为是关键的生长限制因素。无论是研究区域还是植物功能类型,通过部分相关或回归分析,年平均温度(MAT)都会对碳同位素判别值(Δ)的变化产生显着影响,但Δ与土壤含水量(SWC)之间的相关性通常是不重要。在多元逐步回归分析中,MAT是针对MAT和SWC的Δ预测模型中选择的第一个或唯一变量,表明温度对碳同位素歧视的影响最为明显。因此,结果提供了证据,表明关键的生长限制因素对于植物碳同位素的鉴别也至关重要。叶片形态,水粘度和羧化效率随温度的变化可能是观察到的Δ与温度之间的正相关性的原因。

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