Galbiati Massimo, Simoni Laura, Pavesi Giulio, Cominelli Eleonora, Francia Priscilla, Vavasseur Alain, Nelson Timothy, Bevan Michael, Tonelli Chiara
Dipartimento di Scienze Biomolecolari e Biotecnologie, Università degli Studi di Milano, Via Celoria 26, 20 133 Milano, Italy.
Plant J. 2008 Mar;53(5):750-62. doi: 10.1111/j.1365-313X.2007.03371.x. Epub 2007 Nov 23.
We employed a gene trap approach to identify genes expressed in stomatal guard cells of Arabidopsis thaliana. We examined patterns of reporter gene expression in approximately 20,000 gene trap lines, and recovered five lines with exclusive or preferential expression in stomata. The screen yielded two insertions in annotated genes, encoding the CYTOCHROME P450 86A2 (CYP86A2) mono-oxygenase, and the PLEIOTROPIC DRUG RESISTANCE 3 (AtPDR3) transporter. Expression of the trapped genes in guard cells was confirmed by RT-PCR experiments in purified stomata. Examination of homozygous mutant lines revealed that abscisic acid (ABA)-induced stomatal closure was impaired in the atpdr3 mutant. In three lines, insertions occurred outside transcribed units. Expression analysis of the genes surrounding the trapping inserts identified two genes selectively expressed in guard cells, corresponding to a PP2C PROTEIN PHOSPHATASE and an unknown expressed protein gene. Statistical analyses of the chromosomal regions tagged by the gene trap insertions revealed an over-represented [A/T]AAAG motif, previously described as an essential cis-active element for gene expression in stomata. The lines described in this work identify novel genes involved in the modulation of stomatal activity, provide useful markers for the study of developmental pathways in guard cells, and are a valuable source of guard cell-specific promoters.
我们采用基因捕获方法来鉴定拟南芥气孔保卫细胞中表达的基因。我们检测了约20000个基因捕获系中报告基因的表达模式,并筛选出5个在气孔中特异性或优先表达的株系。该筛选在注释基因中产生了两个插入事件,分别编码细胞色素P450 86A2(CYP86A2)单加氧酶和多药耐药蛋白3(AtPDR3)转运蛋白。通过在纯化的气孔中进行RT-PCR实验,证实了捕获基因在保卫细胞中的表达。对纯合突变体株系的检测表明,atpdr3突变体中脱落酸(ABA)诱导的气孔关闭受到损害。在三个株系中,插入发生在转录单元之外。对捕获插入位点周围基因的表达分析鉴定出两个在保卫细胞中选择性表达的基因,分别对应一个PP2C蛋白磷酸酶和一个未知的表达蛋白基因。对基因捕获插入所标记的染色体区域进行统计分析,发现一个过度富集的[A/T]AAAG基序,该基序先前被描述为气孔中基因表达的必需顺式作用元件。本文所述的株系鉴定出了参与气孔活动调节的新基因,为保卫细胞发育途径的研究提供了有用的标记,并且是保卫细胞特异性启动子的宝贵来源。