Université de Toulouse, UPS, UMR CNRS 5546, Surfaces Cellulaires et Signalisation chez les Végétaux, BP 42617, 31326 Castanet-Tolosan, France.
Plant Cell Physiol. 2010 Dec;51(12):1975-87. doi: 10.1093/pcp/pcq155. Epub 2010 Oct 14.
Plants overcome water deficit conditions by combining molecular, biochemical and morphological changes. At the molecular level, many stress-responsive genes have been isolated, but knowledge of their physiological functions remains fragmentary. Here, we report data for RD20, a stress-inducible Arabidopsis gene that belongs to the caleosin family. As for other caleosins, we showed that RD20 localized to oil bodies. Although caleosins are thought to play a role in the degradation of lipids during seed germination, induction of RD20 by dehydration, salt stress and ABA suggests that RD20 might be involved in processes other than germination. Using plants carrying the promoter RD20::uidA construct, we show that RD20 is expressed in leaves, guard cells and flowers, but not in root or in mature seeds. Water deficit triggers a transient increase in RD20 expression in leaves that appeared predominantly dependent on ABA signaling. To assess the biological significance of these data, a functional analysis using rd20 knock-out and overexpressing complemented lines cultivated either in standard or in water deficit conditions was performed. The rd20 knock-out plants present a higher transpiration rate that correlates with enhanced stomatal opening and a reduced tolerance to drought as compared with the wild type. These results support a role for RD20 in drought tolerance through stomatal control under water deficit conditions.
植物通过结合分子、生化和形态变化来克服水分亏缺条件。在分子水平上,已经分离出许多对胁迫响应的基因,但对它们的生理功能的了解仍然是零散的。在这里,我们报告了一个属于钙调素家族的拟南芥应激诱导基因 RD20 的数据。与其他钙调素一样,我们表明 RD20 定位于油体。虽然钙调素被认为在种子萌发过程中发挥了降解脂质的作用,但 RD20 受到脱水、盐胁迫和 ABA 的诱导表明,RD20 可能参与了除萌发以外的过程。使用携带 RD20::uidA 启动子构建体的植物,我们表明 RD20 在叶片、保卫细胞和花朵中表达,但不在根或成熟种子中表达。水分亏缺会引发叶片中 RD20 表达的短暂增加,这种增加似乎主要依赖于 ABA 信号。为了评估这些数据的生物学意义,我们对 rd20 敲除和过表达互补系进行了功能分析,这些互补系在标准条件或水分亏缺条件下进行了培养。与野生型相比,rd20 敲除植物的蒸腾速率更高,这与气孔开度增加和耐旱性降低有关。这些结果支持 RD20 通过在水分亏缺条件下控制气孔来参与耐旱性。