López-Juez E, Jarvis R P, Takeuchi A, Page A M, Chory J
Plant Biology Laboratory, Howard Hughes Medical Institute, USA.
Plant Physiol. 1998 Nov;118(3):803-15. doi: 10.1104/pp.118.3.803.
We searched for new components that are involved in the positive regulation of nuclear gene expression by light by extending a screen for Arabidopsis cue (chlorophyll a/b-binding [CAB] protein-underexpressed) mutants (H.-M. Li, K. Culligan, R.A. Dixon, J. Chory [1995] Plant Cell 7: 1599-1610). cue mutants display reduced expression of the CAB3 gene, which encodes light-harvesting chlorophyll protein, the main chloroplast antenna. The new mutants can be divided into (a) phytochrome-deficient mutants (hy1 and phyB), (b) virescent or delayed-greening mutants (cue3, cue6, and cue8), and (c) uniformly pale mutants (cue4 and cue9). For each of the mutants, the reduction in CAB expression correlates with the visible phenotype, defective chloroplast development, and reduced abundance of the light-harvesting chlorophyll protein. Levels of protochlorophyllide oxidoreductase (POR) were reduced to varying degrees in etiolated mutant seedlings. In the dark, whereas the virescent mutants displayed reduced CAB expression and the lowest levels of POR protein, the other mutants expressed CAB and accumulated POR at near wild-type levels. All of the mutants, with the exception of cue6, were compromised in their ability to derepress CAB expression in response to phytochrome activation. Based on these results, we propose that the previously postulated plastid-derived signal is closely involved in the pathway through which phytochrome regulates the expression of nuclear genes encoding plastid proteins.
我们通过扩展对拟南芥cue(叶绿素a/b结合[CAB]蛋白表达不足)突变体的筛选(H.-M. 李、K. 卡利根、R.A. 迪克森、J. 乔里[1995]《植物细胞》7: 1599 - 1610),寻找参与光对核基因表达正调控的新组分。cue突变体表现出CAB3基因表达降低,该基因编码捕光叶绿素蛋白,即主要的叶绿体天线蛋白。新突变体可分为:(a) 光敏色素缺陷型突变体(hy1和phyB),(b) 黄化或延迟变绿突变体(cue3、cue6和cue8),以及(c) 整体苍白突变体(cue4和cue9)。对于每个突变体,CAB表达的降低与可见表型、叶绿体发育缺陷以及捕光叶绿素蛋白丰度降低相关。在黄化的突变体幼苗中,原叶绿素酸氧化还原酶(POR)水平不同程度降低。在黑暗中,黄化突变体表现出CAB表达降低且POR蛋白水平最低,而其他突变体CAB表达正常且POR积累水平接近野生型。除cue6外,所有突变体响应光敏色素激活去抑制CAB表达的能力均受损。基于这些结果,我们提出先前假定的质体衍生信号密切参与光敏色素调节编码质体蛋白的核基因表达的途径。