Tanaka Noriko, Che Fang-Sik, Watanabe Naohide, Fujiwara Satsuki, Takayama Seiji, Isogai Akira
Graduate School of Biological Sciences, Nara Institute of Science and Technology, 8916-5, Takayama Ikoma, Nara 630-0101, Japan.
Mol Plant Microbe Interact. 2003 May;16(5):422-8. doi: 10.1094/MPMI.2003.16.5.422.
Acidovorax avenae causes a brown stripe disease in monocot plants. We recently reported that a rice-incompatible strain of A. avenae caused hypersensitive cell death in rice and that the flagellin of the incompatible strain was involved in this response. The incompatible strain induced the rapid generation of H2O2 accompanying hypersensitive cell death and the expression of defense genes such as PAL, Cht-1, PBZ1, and LOX, whereas the compatible strain did not. The purified incompatible flagellin also induced the expression of PAL, Cht-1, and PBZ1, but LOX expression was not induced by the incompatible flagellin. PAL and LOX enzymatic activities were increased by inoculation with the incompatible strain, whereas only PAL activity was increased by the incompatible flagellin. Interestingly, the flagellin-deficient incompatible strain lost the ability to generate H2O2 and induce hypersensitive cell death, but PAL, Cht-1, and PBZ1 expression still were induced by inoculation with the deficient strain, suggesting that induction of these genes is regulated not only by flagellin but also by some other signal. Thus, the incompatible flagellin of A. avenae is a specific elicitor in rice, but it is not the only factor capable of inducing the rice defense system.
燕麦嗜酸菌会在单子叶植物中引发褐条病。我们最近报道,一种与水稻不亲和的燕麦嗜酸菌菌株会在水稻中引发超敏细胞死亡,且该不亲和菌株的鞭毛蛋白参与了这一反应。不亲和菌株会伴随超敏细胞死亡诱导过氧化氢的快速产生以及防御基因如苯丙氨酸解氨酶(PAL)、几丁质酶-1(Cht-1)、病程相关蛋白1(PBZ1)和脂氧合酶(LOX)的表达,而亲和菌株则不会。纯化后的不亲和鞭毛蛋白也会诱导PAL、Cht-1和PBZ1的表达,但不亲和鞭毛蛋白不会诱导LOX的表达。接种不亲和菌株会增加PAL和LOX的酶活性,而不亲和鞭毛蛋白只会增加PAL的活性。有趣的是,缺乏鞭毛蛋白的不亲和菌株失去了产生过氧化氢和诱导超敏细胞死亡的能力,但接种该缺陷菌株仍会诱导PAL、Cht-1和PBZ1的表达,这表明这些基因的诱导不仅受鞭毛蛋白调控,还受其他一些信号调控。因此,燕麦嗜酸菌的不亲和鞭毛蛋白是水稻中的一种特异性激发子,但它不是唯一能够诱导水稻防御系统的因素。