Faculty of Agriculture, Rare Sugar Research Center, and Gene Research Center, Kagawa University, Miki, Kagawa, 761-0795, Japan.
Planta. 2013 May;237(5):1379-91. doi: 10.1007/s00425-013-1853-9. Epub 2013 Feb 9.
We previously reported that a rare sugar D-allose, which is the D-glucose epimer at C3, inhibits the gibberellin-dependent responses such as elongation of the second leaf sheath and induction of α-amylase in embryo-less half seeds in rice (Fukumoto et al. 2011). D-Allose suppresses expressions of gibberellin-responsive genes downstream of SLR1 protein in the gibberellin-signaling through hexokinase (HXK)-dependent pathway. In this study, we discovered that D-allose induced expression of ABA-related genes including OsNCED1-3 and OsABA8ox1-3 in rice. Interestingly, D-allose also up-regulated expression of OsABF1, encoding a conserved bZIP transcription factor in ABA signaling, in rice. The D-allose-induced expression of OsABF1 was diminished by a hexokinase inhibitor, D-mannoheptulose (MNH). Consistently, D-allose also inhibited Arabidopsis growth, but failed to trigger growth retardation in the glucose-insensitive2 (gin2) mutant, which is a loss-of-function mutant of the glucose sensor AtHXK1. D-Allose activated AtABI5 expression in transgenic gin2 over-expressing wild-type AtHXK1 but not in gin2 over-expressing the catalytic mutant AtHXK1(S177A), indicating that the D-allose phosphorylation by HXK to D-allose 6-phosphate (A6P) is the first step for the up-regulation of AtABI5 gene expression as well as D-allose-induced growth inhibition. Moreover, overexpression of OsABF1 showed increased sensitivity to D-allose in rice. These findings indicated that the phosphorylation of D-allose at C6 by hexokinase is essential and OsABF1 is involved in the signal transduction for D-allose-induced growth inhibition.
我们之前报道过,一种稀有糖 D-allo 是 C3 位的 D-葡萄糖差向异构体,它可以抑制赤霉素依赖的反应,如水稻无胚半粒种子的第二叶鞘伸长和 α-淀粉酶的诱导(Fukumoto 等人,2011)。D-allo 通过依赖己糖激酶 (HXK) 的途径抑制 SLR1 蛋白下游赤霉素信号转导中赤霉素反应基因的表达。在这项研究中,我们发现 D-allo 诱导了水稻中 ABA 相关基因包括 OsNCED1-3 和 OsABA8ox1-3 的表达。有趣的是,D-allo 还上调了 OsABF1 的表达,OsABF1 编码 ABA 信号中保守的 bZIP 转录因子。在水稻中,己糖激酶抑制剂 D-甘露庚酮糖(MNH)减弱了 D-allo 诱导的 OsABF1 表达。一致地,D-allo 也抑制了拟南芥的生长,但在葡萄糖不敏感 2 (gin2)突变体中未能引发生长迟缓,gin2 是葡萄糖传感器 AtHXK1 的功能丧失突变体。D-allo 在过表达野生型 AtHXK1 的 gin2 转基因中激活了 AtABI5 的表达,但在过表达催化突变体 AtHXK1(S177A)的 gin2 中没有,这表明 HXK 对 D-allo 的磷酸化作用将 D-allo 转化为 D-allo 6-磷酸(A6P)是上调 AtABI5 基因表达以及 D-allo 诱导生长抑制的第一步。此外,OsABF1 的过表达使水稻对 D-allo 更敏感。这些发现表明,己糖激酶对 D-allo 在 C6 位的磷酸化作用是必需的,OsABF1 参与了 D-allo 诱导生长抑制的信号转导。