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Diurnal Trends in Net Photosynthetic Rate and Carbohydrate Levels of Soybean Leaves

机译:大豆叶片净光合速率和碳水化合物水平的日变化趋势

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摘要

A study was made of diurnal trends in net photosynthetic rate and carbohydrate levels of unifoliolate leaves of soybean (Glycine max L. Merrill) under constant environmental conditions (50,000-lux light intensity, 24.5 C air temperature, 60% relative humidity, and 300 microliters of CO2 per liter of air).Net photosynthetic rate remained relatively constant between 4 and 10 hours after the lights were turned on but then gradually declined to 85% of this rate by the end of the 16-hour photoperiod. The decline in net photosynthetic rate was due to increases in both stomatal diffusion resistance and residual resistance to CO2.The decline in net photosynthetic rate began when the rate of starch accumulation began to decline rapidly. At this time, there also appeared to be an increase in soluble carbohydrate level. The results suggest that when a high starch level was reached, further starch synthesis was impaired, leading to an increase in soluble carbohydrate level and, consequently, a reduction in net photosynthetic rate.
机译:研究了在恒定环境条件(50,000 lux光照强度,24.5 C空气温度,60%相对湿度和300微升)的恒定环境条件下,大豆(Glycine max L. Merrill)的单叶片叶子的净光合速率和碳水化合物水平的日变化趋势。 (每升空气中的二氧化碳当量)。净光合速率在打开灯后4到10个小时之间保持相对恒定,但在16个小时的光周期结束时逐渐下降到该速率的85%。净光合速率的下降是由于气孔扩散阻力和对CO2的残留抗性增加所致。净光合速率的下降始于淀粉积累速率开始迅速下降。此时,可溶性碳水化合物的含量也似乎增加了。结果表明,当达到高淀粉水平时,进一步的淀粉合成受到损害,从而导致可溶性碳水化合物水平增加,因此净光合速率降低。

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