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Physiological Characteristics of Photosynthesis and Respiration in Stems of Populus tremuloides Michx.

机译:杨树干茎的光合作用和呼吸生理特性

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摘要

The physiological responses of 6- to 8-year-old aspen (Populus tremuloides Michx.) stems to temperature, light, and CO2 concentration were investigated in the field throughout the year using infrared CO2 analysis. Light response studies showed that the rate of gross photosynthesis was linear from 0 to 400 ft-c (0 to 1.6 mw/cm2 of 400-700 nm) with light saturation being reached between 800 to 1400 ft-c (3.2 to 5.6 mw/cm2 of 400-700 nm). At this light intensity, the respiratory CO2 loss was reduced to 10 to 15% of dark rates. Net photosynthetic CO2 uptake was not observed even at intensities as high as 3400 ft-c (13.6 mw/cm2 of 400-700 nm). The light response curve was similar for both winter and summer stems.During summer months, the respiratory and photosynthetic rates of the aspen stem increased with temperature at a near constant rate between 5 and 35 C. For winter stems, the gross photosynthetic rate increased in a pattern similar to the dark respiratory rate as the temperature rose from 3 to 17 C. Below 0 C and above 17 C, however, the gross photosynthetic rate fell off in relation to the respiratory rate so that the per cent of CO2 reassimilated decreased from 75% to less than 50%. Measurable bark photosynthetic activity was not observed below —3 C.The gross photosynthetic rate of stems was not affected when the gas passing through the cuvette contained concentrations of CO2 ranging from 0 to 580 μl CO2/l air.
机译:全年使用红外CO2分析研究了6至8岁的白杨(Populus tremuloides Michx。)茎对温度,光和CO2浓度的生理响应。光响应研究表明,总光合作用速率在0至400 ft-c(400至700 nm的0至1.6 mw / cm 2 )之间呈线性关系,光饱和度在800至1400 ft之间-c(400-700 nm的3.2至5.6 mw / cm 2 )。在这种光照强度下,呼吸系统的CO2损失减少到黑暗率的10%至15%。即使在高达3400 ft-c(400-700 nm的13.6 mw / cm 2 )强度下也未观察到净光合作用CO2吸收。冬季和夏季茎的光响应曲线相似。在夏季,白杨茎的呼吸和光合速率随温度升高而升高,且保持在5至35°C之间。在冬季,茎的总光合速率提高。当温度从3升高到17 C时,这种模式类似于黑暗的呼吸速率。但是,低于0 C和高于17 C时,总光合速率相对于呼吸速率下降,因此重新吸收的CO2百分比从75%至少于50%。在-3℃以下未观察到可测量的树皮光合作用活性。当通过比色杯的气体所含CO2浓度为0至580μlCO2 / l空气时,茎的总光合速率不受影响。

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