Department of Biology, Queen's University, Kingston, Ontario K7L 3N6, Canada.
Plant Physiol. 1980 Oct;66(4):628-31. doi: 10.1104/pp.66.4.628.
Detached leaves and whole plants of sunflower were supplied with butyl 2-hydroxy-3-butynoate (BHB), a competitive inactivator of glycolate oxidase, to evaluate the possibility of inhibiting photorespiration and increasing photosynthetic efficiency. In all treatments in vivo and in vitro, BHB inhibited glycolate oxidase. With partially purified glycolate oxidase from spinach leaves, the apparent K(i) for BHB was 13.2 micromolar.Low concentrations of BHB neither decreased photorespiration nor increased net photosynthesis. At higher concentrations, either a proportional decrease in photosynthesis and photorespiration or an inhibition of net photosynthesis greater than photorespiration was observed. CO(2) evolution in BHB-treated leaves was O(2)-sensitive and was derived from recent photosynthate. BHB inhibited photosynthesis in 2, 21, or 50% O(2) but the ratio of the rates of photosynthesis in these O(2) concentrations was the same as in control leaves. BHB treatment resulted in a stimulation of dark respiration.As photosynthesis, photorespiration, and dark respiration were all affected by BHB, the action of BHB on whole leaf metabolism appears to be complex. Substantial inhibition of photorespiration was accompanied by inhibition of photosynthesis and increases in photosynthesis were not observed.
将丁基 2-羟基-3-丁炔酸酯(BHB),一种甘氨酸氧化酶的竞争性失活剂,供给向日葵的离体叶片和整株植物,以评估抑制光呼吸和提高光合作用效率的可能性。在体内和体外的所有处理中,BHB 均抑制甘氨酸氧化酶。用菠菜叶片部分纯化的甘氨酸氧化酶,BHB 的表观 K(i)为 13.2 微摩尔。低浓度的 BHB 既不会降低光呼吸,也不会增加净光合作用。在较高浓度下,观察到光合作用和光呼吸的比例下降,或者净光合作用的抑制大于光呼吸。BHB 处理的叶片中 CO(2)的释放对 O(2)敏感,并且来自最近的光合产物。BHB 在 2%、21%或 50%O(2)下抑制光合作用,但这些 O(2)浓度下光合作用的速率比在对照叶片中的速率相同。BHB 处理导致暗呼吸的刺激。由于光合作用、光呼吸和暗呼吸均受 BHB 的影响,BHB 对整个叶片代谢的作用似乎很复杂。尽管光呼吸受到了显著抑制,但光合作用并未受到抑制,也未观察到光合作用的增加。