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Interactive effects of elevated CO2 and soil fertility on isoprene emissions from Quercus robur

机译:CO2和土壤肥力升高对栎类异戊二烯排放的相互作用的影响

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摘要

The effects of global change on the emission rates of isoprene from plants are not clear. A factor that can influence the response of isoprene emission to elevated CO2 concentrations is the availability of nutrients. Isoprene emission rate under standard conditions (leaf temperature: 30degreesC, photosynthetically active radiation (PAR): 1000 mumol photons m(-2) s(-1)), photosynthesis, photosynthetic capacity, and leaf nitrogen (N) content were measured in Quercus robur grown in well-ventilated greenhouses at ambient and elevated CO2 (ambient plus 300 ppm) and two different soil fertilities. The results show that elevated CO2 enhanced photosynthesis but leaf respiration rates were not affected by either the CO2 or nutrient treatments. Isoprene emission rates and photosynthetic capacity were found to decrease with elevated CO2, but an increase in nutrient availability had the converse effect. Leaf N content was significantly greater with increased nutrient availability, but unaffected by CO2. Isoprene emission rates measured under these conditions were strongly correlated with photosynthetic capacity across the range of different treatments. This suggests that the effects of CO2 and nutrient levels on allocation of carbon to isoprene production and emission under near-saturating light largely depend on the effects on photosynthetic electron transport capacity.
机译:全球变化对植物异戊二烯排放速率的影响尚不清楚。营养素的可用性是影响异戊二烯排放对二氧化碳浓度升高的响应的一个因素。在Quercus中测量标准条件下(叶温度:30°C,光合有效辐射(PAR):1000μmol光子m(-2)s(-1))的异戊二烯发射率,光合作用,光合能力和叶氮(N)含量生长在通风良好的温室中,环境温度和二氧化碳浓度升高(环境加300 ppm)和两种不同土壤肥力的玉米。结果表明,升高的CO2增强了光合作用,但叶片呼吸速率不受CO2或营养处理的影响。发现异戊二烯的排放速率和光合能力随着二氧化碳浓度的升高而降低,但是养分利用率的增加却具有相反的作用。叶片氮含量随着养分利用率的增加而显着增加,但不受二氧化碳的影响。在这些条件下测得的异戊二烯排放速率与不同处理范围内的光合作用能力密切相关。这表明在近饱和光下,CO2和养分水平对碳分配给异戊二烯生产和排放的影响很大程度上取决于对光合作用电子传输能力的影响。

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