Zhu Sai-Yong, Yu Xiang-Chun, Wang Xiao-Jing, Zhao Rui, Li Yan, Fan Ren-Chun, Shang Yi, Du Shu-Yuan, Wang Xiao-Fang, Wu Fu-Qing, Xu Yan-Hong, Zhang Xiao-Yan, Zhang Da-Peng
China State Key Laboratory of Plant Physiology and Biochemistry, College of Biological Sciences, China Agricultural University, 100094 Beijing, China.
Plant Cell. 2007 Oct;19(10):3019-36. doi: 10.1105/tpc.107.050666. Epub 2007 Oct 5.
Many biochemical approaches show functions of calcium-dependent protein kinases (CDPKs) in abscisic acid (ABA) signal transduction, but molecular genetic evidence linking defined CDPK genes with ABA-regulated biological functions at the whole-plant level has been lacking. Here, we report that ABA stimulated two homologous CDPKs in Arabidopsis thaliana, CPK4 and CPK11. Loss-of-function mutations of CPK4 and CPK11 resulted in pleiotropic ABA-insensitive phenotypes in seed germination, seedling growth, and stomatal movement and led to salt insensitivity in seed germination and decreased tolerance of seedlings to salt stress. Double mutants of the two CDPK genes had stronger ABA- and salt-responsive phenotypes than the single mutants. CPK4- or CPK11-overexpressing plants generally showed inverse ABA-related phenotypes relative to those of the loss-of-function mutants. Expression levels of many ABA-responsive genes were altered in the loss-of-function mutants and overexpression lines. The CPK4 and CPK11 kinases both phosphorylated two ABA-responsive transcription factors, ABF1 and ABF4, in vitro, suggesting that the two kinases may regulate ABA signaling through these transcription factors. These data provide in planta genetic evidence for the involvement of CDPK/calcium in ABA signaling at the whole-plant level and show that CPK4 and CPK11 are two important positive regulators in CDPK/calcium-mediated ABA signaling pathways.
许多生化方法显示了钙依赖蛋白激酶(CDPKs)在脱落酸(ABA)信号转导中的功能,但在全株水平上,将特定的CDPK基因与ABA调控的生物学功能联系起来的分子遗传学证据一直缺乏。在此,我们报道ABA可激活拟南芥中的两个同源CDPKs,即CPK4和CPK11。CPK4和CPK11的功能缺失突变导致种子萌发、幼苗生长和气孔运动中出现多效性ABA不敏感表型,并导致种子萌发时对盐不敏感以及幼苗对盐胁迫的耐受性降低。这两个CDPK基因的双突变体比单突变体具有更强的ABA和盐响应表型。与功能缺失突变体相比,过表达CPK4或CPK11的植株通常表现出相反的ABA相关表型。许多ABA响应基因的表达水平在功能缺失突变体和过表达株系中发生了改变。CPK4和CPK11激酶在体外均能磷酸化两个ABA响应转录因子ABF1和ABF4,这表明这两种激酶可能通过这些转录因子调控ABA信号转导。这些数据为全株水平上CDPK/钙参与ABA信号转导提供了植物体内的遗传学证据,并表明CPK4和CPK11是CDPK/钙介导的ABA信号通路中的两个重要正向调节因子。