首页> 外文期刊>Acta Physiologiae Plantarum >The influence of chilling on photosynthesis and activities of some enzymes of sucrose metabolism in Lycopersicon esculentum mill
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The influence of chilling on photosynthesis and activities of some enzymes of sucrose metabolism in Lycopersicon esculentum mill

机译:低温对番茄番茄叶片光合作用和蔗糖代谢某些酶活性的影响

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摘要

The effects of chilling stress on leaf photosynthesis and sucrose metabolism were investigated in tomato plants (Lycopersicon esculentum Mill. cultivar Marmande). Twenty-one-day-old seedlings were grown in a growth chamber at 25/23 deg C (dayight) (control) and at 10/8 deg C (dayight) (chilled) for 7 days. The most evident effect of chilling was the marked reduction of plant growth and of CO_2 assimilation as measured after 7 days, the latter being associated with a decrease in stomatal closure and an increase in Ci. The inhibition in photosynthetic rate was also related to an impairment of photochemistry of photosystem II (PSII), as seen from the slight, but significant change in the ratio of F_y/F_m. The capacity of chilled leaves to maintain higher qp values with respect to the controls suggests that some protection mechanism prevented excess reduction of PSII acceptors. The results of the determination of starch and soluble sugar content could show that chilling impaired sucrose translocation. The activity of leaf invertase increased significantly in chilled plants, while that of other sucrose-metabolizing enzymes was not affected by growing temperature. Furthermore, the increase in invertase (neutral and acid) activity, which is typical of senescent tissue characterized by reduced growth, seems to confirm that tomato is a plant which is not a plant genetically adapted to low temperatures.
机译:研究了番茄(Lycopersicon esculentum Mill。cultivar Marmande)对低温胁迫对叶片光合作用和蔗糖代谢的影响。在生长室中于25/23摄氏度(昼/夜)(对照)和10/8摄氏度(昼/夜)(冷藏)中生长二十一天大的幼苗7天。冷藏最明显的效果是7天后测得的植物生长和CO_2同化显着降低,后者与气孔关闭的减少和Ci的增加有关。从F_y / F_m比的微小但显着的变化可以看出,光合速率的抑制还与光系统II(PSII)的光化学损伤有关。相对于对照,冷藏叶片保持较高qp值的能力表明某些保护机制阻止了PSII受体的过度减少。淀粉和可溶性糖含量的测定结果表明,冷却会损害蔗糖的转运。在冷藏植物中,叶片转化酶的活性显着增加,而其他蔗糖代谢酶的活性不受生长温度的影响。此外,以生长减少为特征的衰老组织中典型的转化酶(中性和酸性)活性的增加似乎证实了番茄不是植物,其不是遗传适应低温的植物。

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