Department of Molecular Ecology, Max Planck Institute for Chemical Ecology, Hans-Knöll-Strasse 8, D-07745, Jena, Germany.
Plant J. 2013 Feb;73(4):591-606. doi: 10.1111/tpj.12058. Epub 2012 Dec 10.
Hormones play pivotal roles in regulating plant development, growth, and stress responses, and cross-talk among different hormones fine-tunes various aspects of plant physiology. Jasmonic acid (JA) is important for plant defense against herbivores and necrotic fungi and also regulates flower development; in addition, Arabidopsis mutants over-producing JA usually have stunted stems and wound-induced jasmonates suppress Arabidopsis growth, suggesting that JA is also involved in stem elongation. Gibberellins (GAs) promote stem and leaf growth and modulate seed germination, flowering time, and the development of flowers, fruits, and seeds. However, little is known about the interaction between the JA and GA pathways. Two calcium-dependent protein kinases, CDPK4 and CDPK5, are important suppressors of JA accumulation in a wild tobacco species, Nicotiana attenuata. The stems of N. attenuata silenced in CDPK4 and CDPK5 (irCDPK4/5 plants) had dramatically increased levels of JA and exhibited stunted elongation and had very high contents of secondary metabolites. Genetic analysis indicated that the high JA levels in irCDPK4/5 stems accounted for the suppressed stem elongation and the accumulation of secondary metabolites. Supplementation of GA(3) to irCDPK4/5 plants largely restored normal stem growth to wild-type levels. Measures of GA levels indicated that over-accumulation of JA in irCDPK4/5 stems inhibited the biosynthesis of GAs. Finally, we show that JA antagonizes GA biosynthesis by strongly inhibiting the transcript accumulation of GA20ox and possibly GA13ox, the key genes in GA production, demonstrating that high JA levels antagonize GA biosynthesis in stems.
激素在调节植物发育、生长和应激反应方面发挥着关键作用,不同激素之间的交流精细地调节着植物生理学的各个方面。茉莉酸(JA)对植物抵御草食动物和坏死真菌的防御至关重要,也调节花的发育;此外,过量产生 JA 的拟南芥突变体通常具有矮化的茎,而诱导的茉莉酸抑制拟南芥的生长,这表明 JA 也参与茎伸长。赤霉素(GAs)促进茎和叶的生长,并调节种子萌发、开花时间以及花、果实和种子的发育。然而,人们对 JA 和 GA 途径之间的相互作用知之甚少。两种钙依赖性蛋白激酶,CDPK4 和 CDPK5,是野生烟草 Nicotiana attenuata 中 JA 积累的重要抑制剂。沉默 CDPK4 和 CDPK5 的 N. attenuata 的茎(irCDPK4/5 植物)中 JA 水平显著升高,表现出矮化伸长,并且具有非常高的次生代谢物含量。遗传分析表明,irCDPK4/5 茎中高 JA 水平导致抑制茎伸长和次生代谢物的积累。向 irCDPK4/5 植物补充 GA(3) 可使茎的正常生长在很大程度上恢复到野生型水平。GA 水平的测量表明,irCDPK4/5 茎中 JA 的过度积累抑制了 GAs 的生物合成。最后,我们表明 JA 通过强烈抑制 GA 生物合成的关键基因 GA20ox 和可能的 GA13ox 的转录积累来拮抗 GA 生物合成,证明高 JA 水平在茎中拮抗 GA 生物合成。