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首页> 外文期刊>Plant biology >Physiological performance of beech (Fagus sylvatica L.) at its southeastern distribution limit in Europe: Seasonal changes in nitrogen, carbon and water balance
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Physiological performance of beech (Fagus sylvatica L.) at its southeastern distribution limit in Europe: Seasonal changes in nitrogen, carbon and water balance

机译:欧洲东南部山毛榉(Fagus sylvatica L.)的生理性能:氮,碳和水平衡的季节性变化

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To assess the physiological performance of drought-sensitive European beech (Fagus sylvatica L.) under the dry Mediterranean climate prevailing at its southeastern distribution limit in Europe, we analyzed seasonal changes in carbon, nitrogen and water balance of naturally grown adult trees. We determined the foliar C and N contents, delta(13)C and delta(18)O signatures, total soluble non-protein nitrogen compounds (TSNN) in xylem, leaves, and phloem, as well as leaf water potential and photosynthetic quantum yield in northern Greece during 2003. Tissue sampling was performed in May, July, and September, while field measurements were conducted regularly. Climatic conditions for the 2003 growing season fall within the typical range of the studied area. The N- and C-related parameters displayed distinct seasonal courses. TSNN was highest in May in all tissues, and asparagine (Asn) was then the most abundant compound. Thereafter, TSNN decreased significantly in all tissues and both its concentration and composition remained constant in July and September. In both months, glutannate (Glu) prevailed in leaves, gamma-aminobutyric acid (GABA) in phloem exudates from twigs and trunks, and arginine (Arg) in the xylem sap, where loading with amino acids was rather low during that period, amounting to only 0.8 mu mol N ml(-1) in September. Highest total foliar N and C contents were detected in May, and the elevated abundance of nutrients as well as an increased foliar delta(13)C signature at the beginning of the growing season is attributed to remobilization processes. The signatures of delta(18)O, quantum yield and leaf water potentials varied only slightly throughout the growing season. Although summer precipitation at the study site was considerably lower compared to what is usual for typical central European beech forests, no intensive drought responses of the physiological apparatus were detected in the studied beech trees. This suggests efficient internal regulation mechanisms, constantly ensuring a favourable physiological status under the relatively dry Mediterranean climate.
机译:为了评估干旱敏感的欧洲山毛榉(Fagus sylvatica L.)在欧洲东南分布极限的干燥地中海气候下的生理性能,我们分析了自然生长成年树的碳,氮和水平衡的季节性变化。我们确定了叶中的C和N含量,delta(13)C和delta(18)O标记,木质部,叶片和韧皮部中的总可溶性非蛋白氮化合物(TSNN)以及叶片水势和光合量子产额2003年在希腊北部进行。在5月,7月和9月进行了组织采样,并定期进行了野外测量。 2003年生长季节的气候条件属于研究区域的典型范围。与氮和碳有关的参数显示出不同的季节性过程。在所有组织中,五月份的TSNN最高,而天冬酰胺(Asn)则是最丰富的化合物。此后,TSNN在所有组织中均显着下降,其浓度和组成在7月和9月均保持不变。在这两个月中,谷氨酸(Glu)占主导地位,嫩枝和树干的韧皮部分泌物中的γ-氨基丁酸(GABA)占主导地位,木质部树液中的精氨酸(Arg)占主导地位,在此期间氨基酸含量较低,相当于到9月仅为0.8μmol N ml(-1)。在五月份检测到最高的总叶N和C含量,并且在生长季节开始时养分丰富和叶面δ(13)C签名增加是由于迁移过程。在整个生长季节中,δ(18)O,量子产率和叶水势的特征仅略有变化。尽管与典型的中欧山毛榉森林相比,研究地点的夏季降水量要低得多,但在所研究的山毛榉树中未检测到生理设备的强烈干旱反应。这表明了有效的内部调节机制,可以在相对干燥的地中海气候下不断确保良好的生理状态。

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