Hettenhausen Christian, Yang Da-Hai, Baldwin Ian T, Wu Jianqiang
Department of Molecular Ecology; Max Planck Institute for Chemical Ecology; Jena, Germany.
Plant Signal Behav. 2013 Jan;8(1):e22784. doi: 10.4161/psb.22784. Epub 2012 Dec 6.
Calcium-dependent protein kinases (CDPKs) modulate plant development and growth and are important regulators of biotic and abiotic stress responses. Recently it was found that simultaneously silencing Nicotiana attenuata NaCDPK4 and NaCDPK5 (IRcdpk4/5 plants) results in accumulation of exceptionally high JA levels after wounding or simulated herbivory treatments, which in turn induced high levels of defense metabolites that slowed the growth of Manduca sexta, a specialist insect herbivore. To investigate the mechanism by which NaCDPK4 and NaCDPK5 regulate JA accumulation, we analyzed the transcript levels of all important enzymes involved in JA biosynthesis, but these genes showed no differences between wild-type and IRcdpk4/5 plants. Moreover, the dynamics of JA were similar between these plants, excluding the possibility of decreased degradation rates in IRcdpk4/5 plants. To gain insight into the mechanism by which NaCDPK4 and NaCDPK5 regulate JA biosynthesis, free fatty acids, including C18:3, and (9S,13S)-12-oxo-phytodienoic acid (OPDA), two important precursors of JA were quantified at different times before and after wounding and simulated herbivore feeding treatments. We show that after these treatments, IRcdpk4/5 plants have decreased levels of C18:3, but have enhanced OPDA and JA levels, suggesting that NaCDPK4 and NaCDPK5 have a role in the early steps of JA biosynthesis. The possible role of NaCDPK4 and NaCDPK5 regulating AOS and AOC enzymatic activity is discussed.
钙依赖蛋白激酶(CDPKs)调控植物的发育与生长,是生物和非生物胁迫应答的重要调节因子。最近发现,同时沉默烟草(Nicotiana attenuata)中的NaCDPK4和NaCDPK5(IRcdpk4/5植株)会导致在受伤或模拟食草动物取食处理后积累异常高的茉莉酸(JA)水平,这反过来又诱导了高水平的防御代谢产物,减缓了烟草天蛾(Manduca sexta)这种专一性食草昆虫的生长。为了研究NaCDPK4和NaCDPK5调控JA积累的机制,我们分析了JA生物合成过程中所有重要酶的转录水平,但这些基因在野生型和IRcdpk4/5植株之间没有差异。此外,这些植株之间JA的动态变化相似,排除了IRcdpk4/5植株中降解速率降低的可能性。为了深入了解NaCDPK4和NaCDPK5调控JA生物合成的机制,我们对包括C18:3在内的游离脂肪酸以及(9S,13S)-12-氧代植物二烯酸(OPDA)这两种JA的重要前体在受伤和模拟食草动物取食处理前后的不同时间进行了定量分析。我们发现,经过这些处理后,IRcdpk4/5植株中C18:3的水平降低,但OPDA和JA的水平升高,这表明NaCDPK4和NaCDPK5在JA生物合成的早期步骤中发挥作用。本文还讨论了NaCDPK4和NaCDPK5调控AOS和AOC酶活性的可能作用。