Ariizumi Tohru, Steber Camille M
Department of Crop and Soil Science, Washington State University, Pullman, Washington 99164-6420, USA.
Plant Cell. 2007 Mar;19(3):791-804. doi: 10.1105/tpc.106.048009. Epub 2007 Mar 23.
We explore the roles of gibberellin (GA) signaling genes SLEEPY1 (SLY1) and RGA-LIKE2 (RGL2) in regulation of seed germination in Arabidopsis thaliana, a plant in which the hormone GA is required for seed germination. Seed germination failure in the GA biosynthesis mutant ga1-3 is rescued by GA and by mutations in the DELLA gene RGL2, suggesting that RGL2 represses seed germination. RGL2 protein disappears before wild-type seed germination, consistent with the model that GA stimulates germination by causing the SCF(SLY1) E3 ubiquitin ligase complex to trigger ubiquitination and destruction of RGL2. Unlike ga1-3, the GA-insensitive sly1 mutants show variable seed dormancy. Seed lots with high seed dormancy after-ripened slowly, with stronger alleles requiring more time. We expected that if RGL2 negatively controls seed germination, sly1 mutant seeds that germinate well should accumulate lower RGL2 levels than those failing to germinate. Surprisingly, RGL2 accumulated at high levels even in after-ripened sly1 mutant seeds with 100% germination, suggesting that RGL2 disappearance is not a prerequisite for seed germination in the sly1 background. Without GA, several GA-induced genes show increased accumulation in sly1 seeds compared with ga1-3. It is possible that the RGL2 repressor of seed germination is inactivated by after-ripening of sly1 mutant seeds.
我们探究了赤霉素(GA)信号基因SLEEPY1(SLY1)和RGA-LIKE2(RGL2)在拟南芥种子萌发调控中的作用,拟南芥这种植物的种子萌发需要激素GA。GA生物合成突变体ga1-3的种子萌发失败可通过GA以及DELLA基因RGL2的突变来挽救,这表明RGL2抑制种子萌发。在野生型种子萌发之前,RGL2蛋白消失,这与GA通过促使SCF(SLY1)E3泛素连接酶复合体触发RGL2的泛素化和降解来刺激萌发的模型一致。与ga1-3不同,GA不敏感的sly1突变体表现出可变的种子休眠。具有高种子休眠的种子批次后熟缓慢,等位基因越强,所需时间越长。我们预期,如果RGL2负调控种子萌发,那么萌发良好的sly1突变体种子积累的RGL2水平应低于未萌发的种子。令人惊讶的是,即使在100%萌发的后熟sly1突变体种子中,RGL2也高水平积累,这表明在sly1背景下,RGL2的消失不是种子萌发的先决条件。在没有GA的情况下,与ga1-3相比,几个GA诱导基因在sly1种子中的积累增加。有可能种子萌发的RGL2阻遏物通过sly1突变体种子的后熟而失活。