Tichý M, Lupínková L, Sicora C, Vass I, Kuviková S, Prásil O, Komenda Josef
Institute of Physical Biology, University of South Bohemia, 373 33 Nové, Hrady, Czech Republic.
Biochim Biophys Acta. 2003 Aug 18;1605(1-3):55-66. doi: 10.1016/s0005-2728(03)00064-1.
Synechocystis PCC 6803 mutants expressing either the "low light" (D1:1) or the "high light" (D1:2) form of the Photosystem II (PSII) D1 protein from Synechococcus PCC 7942 were constructed and characterized with respect to properties of PSII and sensitivity to visible and UV-B radiation. The AI and AIII mutants (containing only the D1:1 and D1:2 forms, respectively) exhibited very similar PSII characteristics as the control strain and they differed only in the accelerated decay kinetics of flash-induced variable fluorescence measured in the presence of DCMU. However, the mutants showed increased sensitivity to photodamage induced by visible and UV-B radiation, with higher loss of PSII activity in the AI than in the AIII strain. Thus, the difference between strains containing D1:1 and D1:2 found previously in Synechococcus 7942 is maintained after transfer of corresponding psbA genes into Synechocystis 6803 and is directly related to the coding region of these genes. The higher light sensitivity of the AI mutant is caused partly by the higher rate of photodamage and partly by the less efficient PSII repair.
构建了集胞藻PCC 6803突变体,其表达来自聚球藻PCC 7942的光系统II(PSII)D1蛋白的“低光”(D1:1)或“高光”(D1:2)形式,并就PSII的特性以及对可见光和UV-B辐射的敏感性进行了表征。AI和AIII突变体(分别仅含有D1:1和D1:2形式)表现出与对照菌株非常相似的PSII特性,并且它们仅在存在敌草隆(DCMU)时测量的闪光诱导可变荧光的加速衰减动力学方面有所不同。然而,这些突变体对可见光和UV-B辐射诱导的光损伤表现出更高的敏感性,AI菌株中PSII活性的损失高于AIII菌株。因此,先前在聚球藻7942中发现的含有D1:1和D1:2的菌株之间的差异在将相应的psbA基因转移到集胞藻6803后得以保持,并且与这些基因的编码区域直接相关。AI突变体较高的光敏感性部分是由较高的光损伤速率引起的,部分是由效率较低的PSII修复引起的。