Mooney H A, Küppers M, Koch G, Gorham J, Chu C, Winner W E
Department of Biological Sciences, Stanford University, 94305, Stanford, CA, USA.
Lehrstuhl für Pflanzenökologie, Universität Bayreuth, Postfach 3008, D-8580, Bayreuth, Federal Republic of Germany.
Oecologia. 1988 May;75(4):502-506. doi: 10.1007/BF00776411.
Exposure of plants to SO reduced their photosynthetic performance due tio reductions in carboxylating capacity. Although the reduced carbon gain resulted in a lower growth rate of SO-exposed plants over that of controls, their loss of potential growth was minimized because of proportional increases in allocation to new leaf material.
植物暴露于二氧化硫会由于羧化能力降低而使其光合性能下降。尽管碳同化减少导致暴露于二氧化硫的植物生长速率低于对照植物,但由于分配到新叶材料的比例增加,它们潜在生长的损失被最小化。