Katz VA, Thulke OU, Conrath U
University of Kaiserslautern, Department of Biology, P.O. Box 3049, D-67653 Kaiserslautern, Germany.
Plant Physiol. 1998 Aug;117(4):1333-9. doi: 10.1104/pp.117.4.1333.
Systemic acquired resistance is an important component of the disease-resistance arsenal of plants, and is associated with an enhanced potency for activating local defense responses upon pathogen attack. Here we demonstrate that pretreatment with benzothiadiazole (BTH), a synthetic activator of acquired resistance in plants, augmented the sensitivity for low-dose elicitation of coumarin phytoalexin secretion by cultured parsley (Petroselinum crispum L.) cells. Enhanced coumarin secretion was associated with potentiated activation of genes encoding Phe ammonia-lyase (PAL). The augmentation of PAL gene induction was proportional to the length of pretreatment with BTH, indicating time-dependent priming of the cells. In contrast to the PAL genes, those for anionic peroxidase were directly induced by BTH in the absence of elicitor, thus confirming a dual role for BTH in the activation of plant defenses. Strikingly, the ability of various chemicals to enhance plant disease resistance correlated with their capability to potentiate parsley PAL gene elicitation, emphasizing an important role for defense response potentiation in acquired plant disease resistance.
系统获得性抗性是植物抗病武器库的重要组成部分,与病原体攻击时激活局部防御反应的增强能力相关。在此,我们证明用苯并噻二唑(BTH)预处理,一种植物获得性抗性的合成激活剂,增强了培养的欧芹(Petroselinum crispum L.)细胞对低剂量诱导香豆素植保素分泌的敏感性。香豆素分泌增强与编码苯丙氨酸解氨酶(PAL)的基因的增强激活相关。PAL基因诱导的增强与用BTH预处理的时间长度成比例,表明细胞的时间依赖性启动。与PAL基因相反,阴离子过氧化物酶的基因在没有激发子的情况下直接被BTH诱导,从而证实了BTH在植物防御激活中的双重作用。引人注目的是,各种化学物质增强植物抗病性的能力与其增强欧芹PAL基因诱导的能力相关,强调了防御反应增强在植物获得性抗病性中的重要作用。