Institute of Plant Physiology, Biological Research Center, Hungarian Academy of Sciences, P.O.B. 521, H-6701, Szeged, Hungary.
Photosynth Res. 1981 Mar;2(1):31-8. doi: 10.1007/BF00036163.
The effect of in vitro ageing on the ultrastructure, electron transport, thermoluminescence and flash-induced 515 nm absorbance change of isolated intact (type A) chloroplasts compared with non-intact (types B and C) chloroplasts was studied.When stored in the dark for 18 h at 5°C, the structural characteristics of intact and non-intact chloroplasts were only slightly altered. The most conspicuous difference between the two was in the coupling of the electron transport which was tighter and more stable in intact chloroplasts. Under dark-storage the activity of PS 2* decreased and the -20°C peak of thermoluminescence increased at the expense of the emission at +25°C. These changes were less pronounced in the intact chloroplasts. PS 1 activity and the flash-induced 515 nm absorbance change were not affected by dark-storage.When kept in the light (80 W m(-2) (400-700 nm) for 1 h at 5°C), the thylakoid system of chloroplasts rapidly became disorganized. Although the initial activity of electron transport was much higher in intact chloroplasts, after a short period of light-storage the linear electron transport and the electron transport around PS 2 decreased in both types of preparations to the same low level. These changes were accompanied by an overall decrease of the intensity of thermoluminescence. PS 1 was not inhibited by light-storage, while the flash-induced 515 nm absorbance change was virtually abolished both in preparations of intact and non-intact chloroplasts.The data show that in stored chloroplast preparations intactness cannot be estimated reliably either by the FeCy test or by inspection under the electron microscope. These tests should be cross-checked on the level and coupling of the electron transport.
研究了体外老化对完整(A型)叶绿体与不完整(B 型和 C 型)叶绿体的超微结构、电子传递、热致发光和闪光诱导的 515nm 吸光度变化的影响。当在 5°C 下黑暗中储存 18 小时时,完整和不完整叶绿体的结构特征仅略有改变。两者之间最明显的区别在于电子传递的偶联,完整叶绿体中的电子传递更紧密、更稳定。在暗储存下,PS2*的活性降低,-20°C 的热致发光峰增加,以牺牲+25°C 的发射为代价。这些变化在完整的叶绿体中不太明显。PS1 活性和闪光诱导的 515nm 吸光度变化不受暗储存的影响。当在光下(5°C 时 80 W m(-2)(400-700nm))保持 1 小时时,叶绿体的类囊体系统迅速变得混乱。尽管完整叶绿体中的电子传递初始活性要高得多,但在短时间的光储存后,两种类型的制剂中线性电子传递和 PS2 周围的电子传递都降低到相同的低水平。这些变化伴随着热致发光强度的整体下降。PS1 不受光储存的抑制,而闪光诱导的 515nm 吸光度变化在完整和不完整叶绿体制剂中几乎被完全消除。这些数据表明,在储存的叶绿体制剂中,完整性既不能通过 FeCy 测试可靠地估计,也不能通过电子显微镜检查来估计。这些测试应在电子传递的水平和偶联上进行交叉检查。