Woodrow I E, Mott K A
Botany Department, James Cook University of North Queensland, Townsville, Queensland 4811, Australia.
Plant Physiol. 1992 May;99(1):298-303. doi: 10.1104/pp.99.1.298.
The activation kinetics of ribulose 1,5-bisphosphate carboxylase/oxygenase (Rubisco) following an increase in photon flux density (PFD) were studied by analyzing CO(2) assimilation time courses in spinach leaves (Spinacia oleracea). When leaves were exposed to 45 minutes of darkness before illumination at 690 micromoles per square meter per second, Rubisco activation followed apparent first-order kinetics with a relaxation time of about 3.8 minutes. But when leaves were illuminated for 45 minutes at 160 micromoles per square meter per second prior to illumination at 690 micromoles per square meter per second the relaxation time for Rubisco activation was only 2.1 minutes. The kinetics of this change in relaxation times were investigated by exposing dark-adapted leaves to 160 micromoles per square meter per second for different periods before increasing the PFD to 690 micromoles per square meter per second. It was found that the apparent relaxation time for Rubisco activation changed from 3.8 to 2.1 minutes slowly, requiring at least 8 minutes for completion. This result indicates that at least two sequential, slow processes are involved in light-mediated activation of Rubisco in spinach leaves and that the relaxation times characterizing these two processes are about 4 and 2 minutes, respectively. The kinetics of the first process in the reverse direction and the dependence of the relaxation time for the second process on the magnitude of the increase in PFD were also determined. Evidence that the first slow process is activation of the enzyme Rubisco activase and that the second slow process is the catalytic activation of Rubisco by activase is discussed.
通过分析菠菜叶(菠菜)中的二氧化碳同化时间进程,研究了光子通量密度(PFD)增加后核酮糖1,5 - 二磷酸羧化酶/加氧酶(Rubisco)的激活动力学。当叶片在以每秒690微摩尔每平方米的光照强度照射前先暴露于45分钟黑暗中时,Rubisco激活遵循表观一级动力学,弛豫时间约为3.8分钟。但是当叶片在以每秒690微摩尔每平方米的光照强度照射前先以每秒160微摩尔每平方米的光照强度照射45分钟时,Rubisco激活的弛豫时间仅为2.1分钟。通过将暗适应的叶片在将PFD增加到每秒690微摩尔每平方米之前,先以每秒160微摩尔每平方米的光照强度照射不同时间段,来研究弛豫时间这种变化的动力学。发现Rubisco激活的表观弛豫时间从3.8分钟缓慢变化到2.1分钟,至少需要8分钟才能完成。该结果表明,菠菜叶中光介导的Rubisco激活至少涉及两个连续的缓慢过程,并且表征这两个过程的弛豫时间分别约为4分钟和2分钟。还确定了第一个过程在相反方向上的动力学以及第二个过程的弛豫时间对PFD增加幅度的依赖性。讨论了第一个缓慢过程是Rubisco活化酶的激活以及第二个缓慢过程是活化酶对Rubisco的催化激活的证据。