Varotto C, Pesaresi P, Meurer J, Oelmüller R, Steiner-Lange S, Salamini F, Leister D
Zentrum zur Identifikation von Genfunktionen durch Insertionsmutagenese bei Arabidopsis thaliana (ZIGIA), Max-Planck-Institut für Züchtungsforschung, Carl von Linné Weg 10, 50829 Köln, Germany.
Plant J. 2000 Apr;22(2):115-24. doi: 10.1046/j.1365-313x.2000.00717.x.
The psae1-1 mutant of Arabidopsis was identified on the basis of a decrease in the effective quantum yield of photosystem II, among a collection of plants subjected to transposon tagging with the Enhancer element. The steady-state redox level and the rate of re-oxidation of P700 are significantly altered in psae1-1 mutants. The responsible mutation was localised to psaE1, one of two Arabidopsis genes that encode subunit E of photosystem I. An additional mutant allele, psae1-2, was identified by reverse genetics. In wild-type plants, the psaE1 transcript is expressed at a higher level than psaE2 mRNA. In the mutants, however, the E1 transcript was barely detectable, and was expressed only in small groups of wild-type cells resulting from somatic reversions. As a consequence, the amount of PsaE protein present in the mutant is significantly reduced. Concomitantly, the levels of other stromal photosystem I subunits (PsaC and PsaD) are also affected. Mutant plants showed a marked increase in light sensitivity and photoinhibition. Additional effects of the psae1 mutation include light green pigmentation, an increase in chlorophyll fluorescence and a decrease of approximately 50% in growth rate under greenhouse conditions.
拟南芥的psae1-1突变体是在一组用增强子元件进行转座子标签标记的植物中,根据光系统II有效量子产率的降低而鉴定出来的。psae1-1突变体中P700的稳态氧化还原水平和再氧化速率发生了显著改变。导致该突变的基因定位于psaE1,它是拟南芥中两个编码光系统I亚基E的基因之一。通过反向遗传学鉴定出了另一个突变等位基因psae1-2。在野生型植物中,psaE1转录本的表达水平高于psaE2 mRNA。然而,在突变体中,E1转录本几乎检测不到,仅在体细胞回复产生的小群野生型细胞中表达。因此,突变体中PsaE蛋白的含量显著降低。同时,其他基质光系统I亚基(PsaC和PsaD)的水平也受到影响。突变体植物对光的敏感性和光抑制明显增加。psae1突变的其他影响包括浅绿色色素沉着、叶绿素荧光增加以及在温室条件下生长速率降低约50%。