Faculty of Agriculture, Gene Research Center, and Rare Sugar Research Center, Kagawa University, Miki, Kagawa 761-0795, Japan.
J Plant Physiol. 2011 Oct 15;168(15):1852-7. doi: 10.1016/j.jplph.2011.04.003. Epub 2011 May 23.
We examined rice responses to a rare sugar, d-psicose. Rice growth was inhibited by d-psicose but not by common sugars. Microarray analysis revealed that d-psicose treatment caused an upregulation of many defense-related genes in rice, and dose-dependent upregulation of these genes was confirmed by quantitative reverse-transcription polymerase chain reaction. The level of upregulation of defense-related genes by d-psicose was low compared with that by d-allose, which is another rare sugar known to confer induction of resistance to rice bacterial blight in rice. Treatment with d-psicose conferred resistance to bacterial blight in rice in a dose-dependent manner, and the results indicate that d-psicose might be a candidate plant activator for reducing disease development in rice.
我们研究了大米对罕见糖 d-阿洛酮糖的反应。d-阿洛酮糖抑制了大米的生长,但常见的糖却没有。微阵列分析显示,d-阿洛酮糖处理导致水稻中许多防御相关基因的上调,通过定量逆转录聚合酶链反应证实了这些基因的剂量依赖性上调。与另一种已知能诱导水稻细菌性条斑病抗性的稀有糖 d-阿卓糖相比,d-阿洛酮糖上调防御相关基因的水平较低。d-阿洛酮糖以剂量依赖的方式赋予水稻对细菌性条斑病的抗性,结果表明 d-阿洛酮糖可能是一种候选植物激活剂,可减少水稻疾病的发生。