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同时测量氧气浓度对叶片中水蒸气和二氧化碳交换的影响。

Simultaneous measurements on the effect of oxygen concentration on water vapor and carbon dioxide exchange in leaves.

机构信息

Department of Plant Biology, Carnegie Institution of Washington, Standford, California.

出版信息

Planta. 1969 Jun;88(2):187-91. doi: 10.1007/BF01391125.

Abstract

Transpiration rate was unaffected by O2 concentration in the range 1-80% when illuminated leaves ofAtriplex patula andA. rosea were kept at low CO2 concentrations. Moreover, the marked increase in the rate of light-saturated photosynthesis that takes place in many plant species when O2 concentration is reduced from 21% to a few percent was not accompanied by any change in transpiration rate inA. patula andSolanum dulcamara. The results indicate that higher plant photosynthesis in normal air and saturating light is not determined by physical barriers to gas diffusion alone but that it is markedly limited by biochemical processes.

摘要

当用低浓度二氧化碳处理藜科的滨藜和玫瑰滨藜的照光叶片时,蒸腾速率不受 1-80%范围内的氧浓度的影响。此外,当氧浓度从 21%降低到几个百分点时,许多植物物种的饱和光下光合作用速率显著增加,但滨藜和茄属植物的蒸腾速率并没有变化。结果表明,正常空气中高等植物的光合作用和饱和光不是由气体扩散的物理障碍单独决定的,而是明显受到生化过程的限制。

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