首页> 外文期刊>Trees >Seasonal courses of key parameters of nitrogen, carbon and water balance in European beech (Fagus sylvatica L.) grown on four different study sites along a European North–South climate gradient during the 2003 drought
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Seasonal courses of key parameters of nitrogen, carbon and water balance in European beech (Fagus sylvatica L.) grown on four different study sites along a European North–South climate gradient during the 2003 drought

机译:欧洲山毛榉(Fagus sylvatica L.)的氮,碳和水平衡关键参数的季节性过程在2003年干旱期间沿着欧洲南北气候梯度分布在四个不同的研究地点

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During the growing season of the exceptionally dry and warm year 2003, we assessed seasonal changes in nitrogen, carbon and water balance related parameters of mature naturally grown European beech (Fagus sylvatica L.) along a North–South transect in Europe that included a beech forest stand in central Germany, two in southern Germany and one in southern France. Indicators for N balance assessed at all four sites were foliar N contents and total soluble non-protein nitrogen compounds (TSNN) in xylem sap, leaves and phloem exudates; C and water balance related parameters determined were foliar C contents, δ13C and δ18O signatures. Tissue sampling was performed in May, July and September. The N related parameters displayed seasonal courses with highest concentrations during N remobilization in May. Decreased total foliar N contents as well as higher C/N ratios in the stands in central Germany and southern France compared to the other study sites point to an impaired N nutrition status due to lower soil N contents and precipitation perception. TSNN concentrations in leaves and phloem exudates of all study sites were in ranges previously reported, but xylem sap content of amino compounds in July was lower at all study sites when compared to literature data (c. 1 μmol N mL−1). In September, TSNN concentrations increased again at the two study sites in southern Germany after a rain event, whereas they remained constant at sites in central Germany and southern France which hardly perceived precipitation during that time. Thus, TSNN concentrations in the xylem sap might be indicative for water balance related N supply in the beech trees. TSNN profiles at all study sites, however, did not indicate drought stress. Foliar δ13C, but not foliar C and δ18O followed a seasonal trend at all study sites with highest values in May. Differences in foliar δ13C and δ18O did not reflect climatic differences between the sites, and are attributed to differences in altitude, photosynthesis and δ18O signatures of the water sources. Except of low TSNN concentrations in the xylem sap, no physiological indications of drought stress were detected in the trees analysed. We suppose that the other parameters assessed might not have been sensitive to the drought events because of efficient regulation mechanisms that provide a suitable physiological setting even under conditions of prolonged water limitation. The uniform performance of the trees from southern France and central Germany under comparably dry climate conditions denotes that the metabolic plasticity of mature beech from the different sites studied might be similar.
机译:在2003年异常干燥和温暖的生长季节,我们评估了欧洲自然形成的欧洲山毛榉(Fagus sylvatica L.)在包括山毛榉的欧洲南北样带上氮,碳和水平衡相关参数的季节性变化。德国中部的林分,德国南部的两个,法国南部的一个。在所有四个位置评估的氮平衡指标是木质部汁液,叶片和韧皮部分泌物中的叶面氮含量和总可溶性非蛋白质氮化合物(TSNN)。确定的碳和水平衡相关参数是叶面碳含量,δ13 C和δ18 O特征。在5月,7月和9月进行组织采样。 N的相关参数显示5月N迁移期间浓度最高的季节性过程。与其他研究地点相比,德国中部和法国南部林分的总叶面N含量下降以及C / N比较高,这表明由于土壤N含量较低和降水感知,氮营养状况受损。所有研究地点的叶片和韧皮部分泌物中的TSNN浓度均在先前报道的范围内,但与文献数据相比,7月份所有研究地点的氨基化合物木质部汁液含量均较低(c。1μmolN mL-1 )。 9月,在一次降雨之后,德国南部的两个研究地点的TSNN浓度再次升高,而在德国中部和法国南部在这段时间内几乎没有降雨的地点,TSNN浓度保持不变。因此,木质部树液中的TSNN浓度可能指示了山毛榉树中与水平衡相关的氮供应。但是,所有研究地点的TSNN资料均未表明干旱胁迫。在所有5月最高值的研究地点,叶面δ13 C而不是叶面C和δ18 O呈季节趋势。叶面δ13 C和δ18 O的差异不能反映站点之间的气候差异,而归因于海拔高度,光合作用和δ18 O信号特征的差异。除了木质部树液中的TSNN浓度低外,在分析的树木中均未检测到干旱胁迫的生理学迹象。我们认为,所评估的其他参数可能对干旱事件并不敏感,因为有效的调节机制即使在长期缺水的条件下也能提供合适的生理环境。来自法国南部和德国中部的树木在相对干燥的气候条件下的均匀性能表明,来自不同研究地点的成熟山毛榉的代谢可塑性可能相似。

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