Kochubey S M, Bondarenko O Yu, Shevchenko V V
Institute of Plant Physiology and Genetics, National Academy of Sciences of Ukraine, Kyiv 03022, Ukraine.
Biochemistry (Mosc). 2007 Sep;72(9):1021-6. doi: 10.1134/s0006297907090155.
Heavy fragments were isolated from pea chloroplasts using digitonin treatment and differential centrifugation. The particles were characterized by a significantly lowered chlorophyll a/b ratio, contents of photosystem I (PS I) proteins and ATPase, as well as of amount of P700. The content of photosystem II (PS II) proteins decreased insignificantly, whereas that of proteins of the light-harvesting complex II did not change. The absorption and low-temperature fluorescence spectra were indicative of a decreased content of PS I. Electron microscopy of ultrathin sections of heavy fragment preparations identified them as grana with reduced content of thylakoids. The diameter of these particles was practically the same as within chloroplasts. Comparison of various characteristics of the fragments and chloroplasts from which the fragments were isolated allowed us to define a high degree of preservation of marginal regions in thylakoids present in the heavy fragment particles. Analysis of the results shows that the procedure of fragmentation produces grana with high extent of thylakoid integrity. The phenomenon of reduction of the thylakoid content in grana, occurring as our heavy fragments, is considered in the frame of our previous hypothesis concerning the peculiarities of grana organization in the transversal direction.
通过洋地黄皂苷处理和差速离心从豌豆叶绿体中分离出重片段。这些颗粒的特征是叶绿素a/b比值显著降低,光系统I(PS I)蛋白、ATP酶以及P700的含量降低。光系统II(PS II)蛋白的含量下降不明显,而捕光复合体II蛋白的含量没有变化。吸收光谱和低温荧光光谱表明PS I的含量降低。对重片段制剂超薄切片的电子显微镜观察表明它们是类囊体含量减少的基粒。这些颗粒的直径与叶绿体内的直径基本相同。对片段以及分离出这些片段的叶绿体的各种特征进行比较,使我们能够确定重片段颗粒中类囊体边缘区域的高度保存情况。结果分析表明,破碎过程产生了具有高度类囊体完整性的基粒。作为我们的重片段出现的基粒中类囊体含量减少的现象,是在我们之前关于基粒在横向组织特性的假设框架内进行考虑的。