Adamiec Małgorzata, Drath Maria, Jackowski Grzegorz
Department of Plant Physiology, Faculty of Biology, Adam Mickiewicz University, Poznań, Poland.
Acta Biochim Pol. 2008;55(1):161-73. Epub 2008 Jan 30.
DNA microarray technology was applied to gain insight into the role of the redox state of PQ pool as a retrograde factor mediating differential expression of Arabidopsis nuclear genes during the acclimation to changing irradiance. DNA microarray chips containing probes corresponding to 24,000 Arabidopsis nuclear genes were screened with cRNA samples prepared from leaves of plants exposed for 5 h to low irradiance (control) vs. medium, high and excessive irradiances (MI, HI and EI, respectively). Six hundred and sixty three genes were differentially expressed as a result of an exposure to at least one elevated irradiance. Among 663 differentially expressed genes a total of 50 were reverted by DCMU--24 ones modulated at medium irradiance, 32 ones modulated at high irradiance and a single one modulated at excessive irradiance. We postulate that their expression is regulated by redox state of plastoquinone (PQ) pool. Thus the PQ-mediated redox regulation of expression of Arabidopsis nuclear genes is probably limited to the irradiance window representing non-stressing conditions. We found that the promoter regions of the PQ-regulated genes contained conserved elements, suggesting transcriptional control by a shared set of trans-acting factors which participate in signal transduction from the redox state of the PQ pool.
应用DNA微阵列技术来深入了解质体醌(PQ)库的氧化还原状态作为一种逆行因子在拟南芥适应光照变化过程中介导核基因差异表达的作用。用从暴露于低光照(对照)5小时的植物叶片中制备的cRNA样本,与暴露于中等、高和过强光照(分别为MI、HI和EI)5小时的植物叶片中制备的cRNA样本,对包含对应于24,000个拟南芥核基因的探针的DNA微阵列芯片进行筛选。由于暴露于至少一种增强光照,663个基因差异表达。在663个差异表达基因中,共有50个被敌草隆(DCMU)逆转——24个在中等光照下被调节,32个在高光照下被调节,1个在过强光照下被调节。我们推测它们的表达受质体醌(PQ)库的氧化还原状态调节。因此,PQ介导的拟南芥核基因表达的氧化还原调节可能仅限于代表非胁迫条件的光照窗口。我们发现PQ调节基因的启动子区域含有保守元件,这表明由一组共同的反式作用因子进行转录控制,这些因子参与来自PQ库氧化还原状态的信号转导。