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Study on Photosynthesis of Different Position Leaves of Cucumber in Solar-Greenhouse

机译:日光温室黄瓜不同叶片光合作用的研究

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The photosynthetic rate (Pn) and carboxylation efficiency (CE) were observed to be the highest in mid-position leaves of cucumber in solar-greenhouse, second in upper and middle-lower position leaves, and lowest in lower-position leaves. The saturation light of the mid-position leaves was also the highest, while the photo compensation points of the upper, middle and lower position leaves decreased as the leaf-position descended. During the growth period, the Pn of most leaves enhanced as PFD increased. Pn curves of diurnal variation in different position leaves had single-peak which appeared at 12:00 a. m. As the plant density increased, the PFD of different layer leaves decreased, especially of the lower position leaves. The effect of plant density on the Pn of the upper-position leaves was not visible, but on the light compensation points was obvious. As to lower position leaves, the Pn and saturation light decreased as the plant density increased, but the light compensation points were not obviously affected. Cucumber leaves had certain capacity of adaptation and adjustment to light intensity which expressed as the lower the PFD, the higher the apparent quantum yield (AQY). So the AQY increased as the leaf position descended and plant density increased.
机译:观察到光合速率(Pn)和羧化效率(CE)在日光温室黄瓜的中位叶片中最高,在上,中下位置叶片中次之,而在低位叶片中最低。中位叶片的饱和光也最高,而上,中,下位叶片的光补偿点随着叶位下降而降低。在生育期间,大多数叶片的Pn随PFD增加而增强。不同位置叶片日变化的Pn曲线为单峰,出现在12:00 a。米随着植物密度的增加,不同层叶片的PFD下降,尤其是较低位置叶片的PFD下降。植物密度对上部叶片的Pn的影响不明显,但对光补偿点的影响却很明显。对于较低位置的叶片,Pn和饱和光随植物密度的增加而降低,但光补偿点并未受到明显影响。黄瓜叶片具有一定的适应和调节光强度的能力,表现为PFD越低,表观量子产率(AQY)越高。因此,随着叶片位置的下降和植物密度的增加,AQY也随之增加。

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