Technische Universität München, Weihenstephan Center of Life and Food Sciences, Freising, Germany.
Environ Pollut. 2010 Apr;158(4):1071-8. doi: 10.1016/j.envpol.2009.07.036. Epub 2009 Aug 13.
The effects of experimentally elevated O(3) on soil respiration rates, standing fine-root biomass, fine-root production and delta(13)C signature of newly produced fine roots were investigated in an adult European beech/Norway spruce forest in Germany during two subsequent years with contrasting rainfall patterns. During humid 2002, soil respiration rate was enhanced under elevated O(3) under beech and spruce, and was related to O(3)-stimulated fine-root production only in beech. During dry 2003, the stimulating effect of O(3) on soil respiration rate vanished under spruce, which was correlated with decreased fine-root production in spruce under drought, irrespective of the O(3) regime. delta(13)C signature of newly formed fine-roots was consistent with the differing g(s) of beech and spruce, and indicated stomatal limitation by O(3) in beech and by drought in spruce. Our study showed that drought can override the stimulating O(3) effects on fine-root dynamics and soil respiration in mature beech and spruce forests.
在德国的一个成年欧洲山毛榉/挪威云杉林,我们在随后的两年中,利用具有不同降雨模式的实验方法来研究大气 O₃浓度升高对土壤呼吸速率、立地细根生物量、细根生产和新生产细根的 δ¹³C 特征的影响。在湿润的 2002 年,大气 O₃浓度升高对山毛榉和云杉下的土壤呼吸速率具有促进作用,并且仅在山毛榉中与 O₃刺激细根生产有关。在干燥的 2003 年,O₃对土壤呼吸速率的刺激作用在云杉下消失,这与干旱条件下云杉细根生产减少有关,而与 O₃处理无关。新形成的细根的 δ¹³C 特征与山毛榉和云杉的不同 g(s)一致,并表明 O₃对山毛榉的气孔限制和干旱对云杉的气孔限制。我们的研究表明,干旱可以忽略成熟的山毛榉和云杉林细根动态和土壤呼吸对 O₃的刺激作用。