Lee Hyi-Seung, Lee Tae-Hoon, Lee Ji Hye, Chae Choong-Sik, Chung Soon-Chun, Shin Dong-Sun, Shin Jongheon, Oh Ki-Bong
Marine Natural Products Laboratory, Korea Ocean Research and Development Institute, Ansan P.O. Box 29, Seoul 425-600, South Korea.
J Agric Food Chem. 2007 Aug 22;55(17):6923-8. doi: 10.1021/jf071125r. Epub 2007 Jul 26.
Magnaporthe grisea is a fungal pathogen of rice that forms appressoria that penetrate the outer cuticle of the rice plant. Data from recent studies indicate that M. grisea isocitrate lyase (ICL), a key enzyme in the glyoxylate cycle, is highly expressed during appressorium-mediated plant infection. Bromophenols isolated from the red alga Odonthalia corymbifera exhibited potent ICL inhibitory activity and blocked appressoria formation by M. grisea in a concentration-dependent manner. In addition, these compounds protected the rice plants from infection by M. grisea. Rice plants infected with wild-type M. grisea Guy 11 exhibited significantly lower disease severity with bromophenol treatment than without, and the treatment effect was comparable to the behavior of the Deltaicl knockout mutant I-10. The protective effect of bromophenols and their strong inhibition of appressorium formation on rice plants suggest that ICL inhibitors may be promising candidates for crop protection, particularly to protect rice plants against M. grisea.
稻瘟病菌是水稻的一种真菌病原体,它会形成附着胞穿透水稻植株的外表皮。近期研究数据表明,乙醛酸循环中的关键酶——稻瘟病菌异柠檬酸裂解酶(ICL),在附着胞介导的植物感染过程中高表达。从红藻伞状鹿角菜中分离出的溴酚表现出强大的ICL抑制活性,并以浓度依赖的方式阻止稻瘟病菌形成附着胞。此外,这些化合物保护水稻植株免受稻瘟病菌的感染。用溴酚处理感染野生型稻瘟病菌Guy 11的水稻植株,其病情严重程度显著低于未处理的植株,且处理效果与Δicl基因敲除突变体I-10的表现相当。溴酚对水稻植株的保护作用及其对附着胞形成的强烈抑制作用表明,ICL抑制剂可能是作物保护的有前景的候选物,特别是用于保护水稻植株免受稻瘟病菌侵害。