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Stable Water Use Efficiency under Climate Change of Three Sympatric Conifer Species at the Alpine Treeline

机译:气候变化下三种同树针叶树种在高山林线的稳定用水效率

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摘要

The ability of treeline associated conifers in the Central Alps to cope with recent climate warming and increasing CO2 concentration is still poorly understood. We determined tree ring stable carbon and oxygen isotope ratios of Pinus cembra, Picea abies, and Larix decidua trees from 1975 to 2010. Stable isotope ratios were compared with leaf level gas exchange measurements carried out in situ between 1979 and 2007. Results indicate that tree ring derived intrinsic water-use efficiency (iWUE) of P. cembra, P. abies and L. decidua remained constant during the last 36 years despite climate warming and rising atmospheric CO2. Temporal patterns in Δ13C and Δ18O mirrored leaf level gas exchange assessments, suggesting parallel increases of CO2-fixation and stomatal conductance of treeline conifer species. As at the study site soil water availability was not a limiting factor iWUE remained largely stable throughout the study period. The stability in iWUE was accompanied by an increase in basal area increment (BAI) suggesting that treeline trees benefit from both recent climate warming and CO2 fertilization. Finally, our results suggest that iWUE may not change species composition at treeline in the Austrian Alps due to similar ecophysiological responses to climatic changes of the three sympatric study species.
机译:阿尔卑斯山中与树线相关的针叶树应对近期气候变暖和二氧化碳浓度增加的能力仍然知之甚少。我们确定了1975年至2010年间的松树,云杉和落叶松树的年轮稳定碳和氧同位素比率。将稳定的同位素比率与1979年至2007年进行的叶水平气体交换测量进行了比较。尽管气候变暖和大气CO2升高,但过去36年中,P。cembra,P。abies和L. decidua的环衍生内在用水效率(iWUE)保持恒定。 Δ 13 C和Δ 18 O的时间模式反映了叶片水平的气体交换评估,表明树木针叶树种的固碳和气孔导度平行增加。在研究地点,土壤水分的可用性不是一个限制因素,在整个研究期间,iWUE基本上保持稳定。 iWUE的稳定性伴随着基础面积增加(BAI)的增加,这表明树型树木受益于近期的气候变暖和CO2施肥。最后,我们的结果表明,由于对三种同居研究物种的气候变化具有相似的生态生理响应,因此iWUE可能不会改变奥地利阿尔卑斯山林线的物种组成。

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