Canada Department of Agriculture, Research Branch, Research Station, Delhi, Ontario, Canada.
Plant Physiol. 1967 May;42(5):691-6. doi: 10.1104/pp.42.5.691.
Ozone was found to inhibit oxidative phosphorylation and oxygen uptake in mitochondria of tobacco leaves (Nicotiana tabacum, L. var. White Gold). The inhibition appeared to occur at both substrate and electron-transport chain levels. The inhibition increased with the length of exposure to ozone, however, the phosphorylative system was more sensitive to ozone than the respiratory system. With mitochondria from detached leaves after being treated with ozone at 1 ppm for 1 hour, uncoupling of phosphorylation was demonstrated without any detectable change in the rate of respiration in the early stage of ozone effect. Inhibition of phosphorylation by ozone was also demonstrated in isolated mitochondria without apparent change in optical density of the mitochondrial suspension at 520 mmu. Therefore, mitochondrial swelling appears not to be a necessary first step for ozone-induced uncoupling of phosphorylation. The evidence suggests that inhibition of oxidative phosphorylation in mitochondria may be a primary effect of ozone in tobacco leaves.Sucrose and glucose, when fed to the detached tobacco leaves before ozone treatment, tended to raise the phosphorylative activity of mitochondria. Mannitol and lactose were less effective.
臭氧被发现抑制了烟草叶片(Nicotiana tabacum,L. var. White Gold)线粒体中的氧化磷酸化和氧气摄取。这种抑制似乎发生在底物和电子传递链水平上。随着暴露于臭氧的时间延长,抑制作用增加,但磷酸化系统比呼吸系统对臭氧更敏感。在用 1 ppm 臭氧处理 1 小时后的离体叶片线粒体中,在臭氧作用的早期阶段,未观察到呼吸速率有任何可检测到的变化,但证明了磷酸化的解偶联。在没有明显改变线粒体悬浮液在 520nm 吸光度的情况下,也证明了臭氧对磷酸化的抑制作用在分离的线粒体中存在。因此,线粒体肿胀似乎不是臭氧诱导磷酸化解偶联的必要第一步。有证据表明,线粒体氧化磷酸化的抑制可能是臭氧对烟草叶片的主要作用。在臭氧处理前将蔗糖和葡萄糖供给离体烟草叶片,往往会提高线粒体的磷酸化活性。甘露醇和乳糖的效果则不那么明显。