Patterson D T, Bunce J A, Alberte R S, Van Volkenburgh E
Department of Botany, Duke University, Durham, North Carolina 27706.
Plant Physiol. 1977 Mar;59(3):384-7. doi: 10.1104/pp.59.3.384.
In situ and light-saturated net photosynthetic rates per unit leaf area were greater in cotton (Gossypium hirsutum L.) plants grown in pots in the field than in similar plants from a phytotron growth chamber. Light-saturated stomatal resistances did not differ in leaves of similar age and exposure on field and chamber plants; lower photosynthetic rates in chamber leaves were associated with greater mesophyll resistance. Differences in net photosynthetic rates were related to differences in leaf thickness. When the photosynthetic rates were expressed per unit of mesophyll volume or per unit chlorophyll differences between field and chamber plants were much less than when rates were expressed per unit leaf area. Characterization of the chloroplast lamellar proteins showed that the field leaves had smaller photosynthetic units than the chamber leaves. Since the field leaves also contained more chlorophyll per unit area, this resulted in a much larger number of photosynthetic units per unit area in the field leaves.
在田间花盆中种植的棉花(陆地棉)植株,其单位叶面积的原位和光饱和净光合速率高于来自人工气候箱生长室的类似植株。田间和室内植株上年龄和受光情况相似的叶片,其光饱和气孔阻力并无差异;室内叶片较低的光合速率与更大的叶肉阻力有关。净光合速率的差异与叶片厚度的差异有关。当光合速率以单位叶肉体积或单位叶绿素表示时,田间和室内植株之间的差异远小于以单位叶面积表示时的差异。叶绿体片层蛋白的特征表明,田间叶片的光合单位比室内叶片小。由于田间叶片每单位面积还含有更多叶绿素,这使得田间叶片每单位面积的光合单位数量更多。