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Interaction Effect between Elevated CO2 and Fertilization on Biomass Gas Exchange and C/N Ratio of European Beech (Fagus sylvatica L.)

机译:CO2浓度升高与施肥对欧洲山毛榉生物量气体交换和C / N比的交互作用

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摘要

The effects of elevated CO2 and interaction effects between elevated CO2 and nutrient supplies on growth and the C/N ratio of European beech (Fagus sylvatica L.) saplings were studied. One-year-old beech saplings were grown in a greenhouse at ambient (385 ppm) and elevated CO2 (770 ppm/950 ppm), with or without fertilization for two growing seasons. In this study, emphasis is placed on the combined fertilization including phosphorus, potassium and nitrogen with two level of elevated CO2. The fertilized plants grown under elevated CO2 had the highest net leaf photosynthesis rate (Ac). The saplings grown under elevated CO2 had a significantly lower stomatal conductance (gs) than saplings grown under ambient air. No interaction effect was found between elevated CO2 and fertilization on Ac. A interaction effect between CO2 and fertilization, as well as between date and fertilization and between date and CO2 was detected on gs. Leaf chlorophyll content index (CCI) and leaf nitrogen content were strongly positively correlated to each other and both of them decreased under elevated CO2. At the end of both growing seasons, stem dry weight was greater under elevated CO2 and root dry weight was not affected by different treatments. No interaction effect was detected between elevated CO2 and nutrient supplies on the dry weight of different plant tissues (stems and roots). However, elevated CO2 caused a significant decrease in the nitrogen content of plant tissues. Nitrogen reduction in the leaves under elevated CO2 was about 10% and distinctly higher than in the stem and root. The interaction effect of elevated CO2 and fertilization on C/N ratio in plants tissues was significant. The results led to the conclusion that photosynthesis and the C/N ratio increased while stomatal conductance and leaf nitrogen content decreased under elevated CO2 and nutrient-limited conditions. In general, under nutrient-limited conditions, the plant responses to elevated CO2 were decreased.
机译:研究了CO 2浓度升高以及CO 2和养分供应增加之间的相互作用对欧洲山毛榉树苗的生长和C / N比的影响。一岁的山毛榉树苗在温室中生长,环境温度为(385 ppm),二氧化碳含量较高(770 ppm / 950 ppm),有或没有施肥两个生长季节。在这项研究中,重点放在结合施肥,包括磷,钾和氮,且二氧化碳水平升高两个水平。在升高的CO 2下生长的受精植物具有最高的净叶片光合作用速率(Ac)。在较高的CO2下生长的树苗的气孔导度(gs)明显低于在环境空气下生长的树苗。没有发现二氧化碳浓度升高和施肥对Ac的相互作用。在gs上检测到了CO2与施肥之间,日期与施肥之间以及日期与CO2之间的相互作用。叶片的叶绿素含量指数(CCI)和叶片的氮含量之间呈极显着的正相关,并且在二氧化碳浓度升高的情况下,两者均下降。在两个生长季节结束时,在二氧化碳升高的情况下,茎干重均较大,并且根部干重不受不同处理的影响。在不同植物组织(茎和根)的干重上,未发现二氧化碳浓度升高和养分供应之间的相互作用。然而,升高的CO 2导致植物组织中的氮含量显着降低。在二氧化碳浓度升高的情况下,叶片中的氮减少量约为10%,明显高于茎和根中的。 CO 2浓度升高和施肥对植物组织碳氮比的交互作用显着。结果得出结论:在升高的CO2和营养限制条件下,光合作用和C / N比增加,而气孔导度和叶片氮含量降低。通常,在养分有限的条件下,植物对CO 2 升高的反应降低。

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