Takahashi Y, Matsumoto H, Goldschmidt-Clermont M, Rochaix J D
Graduate School of Natural Science and Technology, Okayama, Japan.
Plant Mol Biol. 1994 Mar;24(5):779-88. doi: 10.1007/BF00029859.
Using particle gun-mediated chloroplast transformation we have disrupted the psbK gene of Chlamydomonas reinhardtii with an aadA expression cassette that confers resistance to spectinomycin. The transformants are unable to grow photoautotrophically, but they grow normally in acetate-containing medium. They are deficient in photosystem II activity as measured by fluorescence transients and O2 evolution and they accumulate less than 10% of wild-type levels of photosystem II as measured by immunochemical means. Pulse-labeling experiments indicate that the photosystem II complex is synthesized normally in the transformants. These results differ from those obtained previously with similar cyanobacterial psbK mutants that were still capable of photoautotrophic growth (Ikeuchi et al., J. Biol. Chem. 266 (1991) 1111-1115). In C. reinhardtii the psbK product is required for the stable assembly and/or stability of the photosystem II complex and essential for photoautotrophic growth. The data also suggest that the stability requirements of the photosynthetic complexes differ considerably between C. reinhardtii and cyanobacteria.
利用粒子枪介导的叶绿体转化,我们用赋予壮观霉素抗性的aadA表达盒破坏了莱茵衣藻的psbK基因。转化体无法进行光合自养生长,但在含乙酸盐的培养基中能正常生长。通过荧光瞬变和氧气释放测量,它们的光系统II活性不足,通过免疫化学方法测量,它们积累的光系统II不到野生型水平的10%。脉冲标记实验表明,光系统II复合体在转化体中正常合成。这些结果与之前用类似的蓝藻psbK突变体获得的结果不同,那些突变体仍然能够进行光合自养生长(池内等人,《生物化学杂志》266 (1991) 1111 - 1115)。在莱茵衣藻中,psbK产物是光系统II复合体稳定组装和/或稳定性所必需的,也是光合自养生长所必需的。数据还表明,莱茵衣藻和蓝藻之间光合复合体的稳定性要求有很大差异。