El Bissati K, Kirilovsky D
Unité Mixte de Recherche 8543, Centre National de la Recherche Scientifique, Ecole Normale Supérieure, 46 rue d'Ulm, 75230 Paris, France.
Plant Physiol. 2001 Apr;125(4):1988-2000. doi: 10.1104/pp.125.4.1988.
We investigated the influence of light of different wavelengths on the expression of the psbA gene, which encodes the D1 protein of the photosystem II and the psaE gene, which encodes the subunit Psa-E of the photosystem I, in Synechocystis sp PCC 6803. In an attempt to differentiate between a light-sensory and a redox-sensory signaling processes, the effect of orange, blue, and far-red light was studied in the wild-type and in a phycobilisome-less mutant. Transferring wild-type cells from one type of illumination to another induced changes in the redox state of the electron transport chain and in psbA and psaE expression. Blue and far-red lights (which are preferentially absorbed by the photosystem I) induced an accumulation of psbA transcripts and a decrease of the psaE mRNA level. In contrast, orange light (which is preferentially absorbed by the photosystem II) induced a large accumulation of psaE transcripts and a decrease of psbA mRNA level. Transferring mutant cells from blue to orange light (or vice versa) had no effect either on the redox state of the electron transport chain or on the levels of psbA and psaE mRNAs. Thus, light quality seems to regulate expression of these genes via a redox sensory mechanism in Synechocystis sp PCC 6803 cells. Our data suggest that the redox state of one of the electron carriers between the plastoquinone pool and the photosystem I has opposite influences on psbA and psaE expression. Its reduction induces accumulation of psaE transcripts, and its oxidation induces accumulation of psbA mRNAs.
我们研究了不同波长的光对集胞藻PCC 6803中编码光系统II的D1蛋白的psbA基因和编码光系统I的亚基Psa-E的psaE基因表达的影响。为了区分光感应信号传导过程和氧化还原感应信号传导过程,我们研究了野生型和无藻胆体突变体中橙色光、蓝光和远红光的作用。将野生型细胞从一种光照条件转移到另一种光照条件会引起电子传递链氧化还原状态以及psbA和psaE表达的变化。蓝光和远红光(优先被光系统I吸收)会导致psbA转录本积累以及psaE mRNA水平下降。相反,橙色光(优先被光系统II吸收)会导致psaE转录本大量积累以及psbA mRNA水平下降。将突变体细胞从蓝光转移到橙色光(或反之亦然)对电子传递链的氧化还原状态以及psbA和psaE mRNA水平均无影响。因此,在集胞藻PCC 6803细胞中,光质似乎通过氧化还原感应机制调节这些基因的表达。我们的数据表明,质体醌库和光系统I之间的电子载体之一的氧化还原状态对psbA和psaE表达具有相反的影响。其还原会导致psaE转录本积累,其氧化会导致psbA mRNA积累。