Faculty of Agriculture, Rare Sugar Research Center and Gene Research Center, Kagawa University, Miki, Kagawa, 761-0795, Japan.
Planta. 2011 Dec;234(6):1083-95. doi: 10.1007/s00425-011-1463-3. Epub 2011 Jun 30.
One of the rare sugars, D-allose, which is the epimer of D-glucose at C3, has an inhibitory effect on rice growth, but the molecular mechanisms of the growth inhibition by D-allose were unknown. The growth inhibition caused by D-allose was prevented by treatment with hexokinase inhibitors, D-mannoheptulose and N-acetyl-D-glucosamine. Furthermore, the Arabidopsis glucose-insensitive2 (gin2) mutant, which is a loss-of-function mutant of the glucose sensor AtHXK1, showed a D-allose-insensitive phenotype. D-Allose strongly inhibited the gibberellin-dependent responses such as elongation of the second leaf sheath and induction of α-amylase in embryo-less half rice seeds. The growth of the slender rice1 (slr1) mutant, which exhibits a constitutive gibberellin-responsive phenotype, was also inhibited by D-allose, and the growth inhibition of the slr1 mutant by D-allose was also prevented by D-mannoheptulose treatment. The expressions of gibberellin-responsive genes were down-regulated by D-allose treatment, and the down-regulations of gibberellin-responsive genes were also prevented by D-mannoheptulose treatment. These findings reveal that D-allose inhibits the gibberellin-signaling through a hexokinase-dependent pathway.
一种稀有糖,D-allo 果糖,是 C3 位差向异构的 D-葡萄糖,对水稻生长有抑制作用,但 D-allo 果糖抑制生长的分子机制尚不清楚。用己糖激酶抑制剂 D-甘露庚酮糖和 N-乙酰-D-葡萄糖胺处理可以防止 D-allo 果糖引起的生长抑制。此外,葡萄糖不敏感 2 突变体(gin2)是葡萄糖传感器 AtHXK1 的功能丧失突变体,表现出对 D-allo 果糖不敏感的表型。D-allo 果糖强烈抑制赤霉素依赖性反应,如第二叶鞘伸长和无胚半粒水稻种子中α-淀粉酶的诱导。细长稻 1 突变体(slr1)表现出组成型赤霉素应答表型,其生长也被 D-allo 果糖抑制,用 D-甘露庚酮糖处理也可以防止 D-allo 果糖对 slr1 突变体的生长抑制。D-allo 果糖处理下调赤霉素应答基因的表达,D-甘露庚酮糖处理也可以防止赤霉素应答基因的下调。这些发现表明,D-allo 果糖通过己糖激酶依赖途径抑制赤霉素信号转导。