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Probenazole-Induced Accumulation of Salicylic Acid Confers Resistance to Magnaporthe grisea in Adult Rice Plants

机译:吡喃唑诱导的水杨酸积累赋予成年稻植物抗稻瘟病菌的抗性。

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摘要

Probenazole (PBZ) is the active ingredient of Oryzemate, an agrochemical which is used for the protection of rice plants from Magnaporthe grisea (blast fungus). While PBZ was reported to function upstream of salicylic acid (SA) in Arabidopsis, little is known about the mechanism of PBZ-induced resistance in rice. The role of SA in blast fungus resistance is also unclear. The recommended application period for Oryzemate is just before the Japanese rainy season, at which time rice plants in the field have reached the 8-leaf stage with adult traits. Thus, the involvement of SA in PBZ-induced resistance was studied in compatible and incompatible blast fungus–rice interactions at two developmentally different leaf morphology stages. Pre-treatment of inoculated fourth leaves of young wild-type rice plants at the 4-leaf stage with PBZ did not influence the development of whitish expanding lesions (ELs) in the susceptible interaction without the accumulation of SA and pathogenesis-related (PR) proteins. However, PBZ pre-treatment increased accumulation of SA and PR proteins in the eighth leaves of adult plants at the 8-leaf stage, resulting in the formation of hypersensitive reaction (HR) lesions (HRLs). Exogenous SA induced resistance in adult but not young plants. SA concentrations in blast fungus-inoculated young leaves were essentially the same in compatible and incompatible interactions, suggesting that PBZ-induced resistance in rice is age-dependently regulated via SA accumulation.
机译:吡喃唑(PBZ)是一种农药Oryzemate的活性成分,用于保护水稻免受稻瘟病(稻瘟病菌)侵害。虽然据报道PBZ在拟南芥中是水杨酸(SA)上游的功能,但人们对PBZ诱导的水稻抗性的机理了解甚少。 SA在稻瘟病菌抗性中的作用也不清楚。推荐的Oryzemate施用期是在日本雨季来临之前,那时田间的水稻植株已达到具有成年性状的八叶期。因此,在两个发育不同的叶片形态阶段,在相容和不相容的稻瘟病菌-水稻相互作用中研究了SA与PBZ诱导的抗性的关系。在没有SA积累和病因相关(PR)的情况下,用PBZ预处理四叶期野生型水稻幼株的第四片接种叶不会影响发白的扩大病变(ELs)的发展。蛋白质。但是,PBZ预处理增加了成年植物在八叶期第八叶中SA和PR蛋白的积累,导致形成了超敏反应(HR)损伤(HRL)。外源SA在成年植物中诱导抗性,但不诱导年轻植物。稻瘟病菌接种的幼叶中的SA浓度在相容和不相容相互作用中基本相同,这表明PBZ诱导的水稻抗性受SA积累的年龄依赖性调节。

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  • 来源
    《Plant and Cell Physiology》 |2007年第7期|915-924|共10页
  • 作者单位

    National Institute of Agrobiological Sciences 2-1-2 Kannondai Tsukuba Ibaraki 305-8602 Japan;

    Miyagi Prefectural Agriculture and Horticulture Research Center Natori Miyagi 981-1243 Japan;

    Program for Promotion of Basic Activities for Innovative Bioscience (PROBRAIN) Minato-ku Tokyo 105-0001 Japan;

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