Roux E, Faludi-dániel A
Biochim Biophys Acta. 1977 Jul 7;461(1):25-30. doi: 10.1016/0005-2728(77)90066-4.
The 515 nm absorbance change was studied in mesophyll and bundle sheath chloroplasts of maize, which contain different amounts of grana. The amplitude of the 515 nm signal (induced by 3 micro seconds flashes repeated at 4 s intervals) has shown a correlation with the granum content of the samples. However, upon addition of N-methylphenazonium methosulphate the 515 nm signal became independent of the amount of grana: in agranal thylakoids a large pool of silent Photosystem I was activated and, as a result, the amplitude of the 515 nm signal of agranal chloroplasts increased to the level exhibited by granal chloroplasts. These data show that the 515 nm absorbance change is not limited to small closed vesicles like grana, but in the presence of suitable electron donors single lamellae of bundle sheath chloroplasts can also be active.
对玉米叶肉和维管束鞘叶绿体中515nm吸光度变化进行了研究,这些叶绿体含有不同数量的基粒。515nm信号的幅度(由以4秒间隔重复的3微秒闪光诱导)与样品的基粒含量相关。然而,加入甲基硫酸新诺明后,515nm信号变得与基粒数量无关:在无基粒类囊体中,大量沉默的光系统I被激活,结果,无基粒叶绿体的515nm信号幅度增加到基粒叶绿体所显示的水平。这些数据表明,515nm吸光度变化并不局限于像基粒这样的小封闭囊泡,而是在存在合适电子供体的情况下,维管束鞘叶绿体的单条类囊体也可以具有活性。