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首页> 外文期刊>Физиология растений >Fusarium sambucinum Isolate FS-94 Induces Resistance against Fusarium Wit of Tomato via Activation and Priming of a Salicylic Acid-Dependent Signaling System1
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Fusarium sambucinum Isolate FS-94 Induces Resistance against Fusarium Wit of Tomato via Activation and Priming of a Salicylic Acid-Dependent Signaling System1

机译:镰孢镰刀菌分离物FS-94通过水杨酸依赖性信号传导系统的激活和引发诱导对番茄镰刀菌的抗性1

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The wheat rhizosphere-inhabiting nonpathogenic Fusarium sambucinum isolate FS-94 protected tomato from Fusarium wilt (F. oxysporum f. sp. lycopersici) in laboratory experiments. Seed soaking or immersion of seedling roots in a FS-94 spore suspension prior to inoculation with the pathogen delayed the appearance of wilt symptoms and significantly reduced disease severity in plants of a susceptible tomato cultivar. Quantification of fungal ergosterol in infected tomato showed that protection against wilt agent was related to limitation of the pathogen growth in plants exposed to FS-94. Incubation of tomato seedlings in a FS-94 spore suspension for 48 or 72 h led to plant protection and increased the salicylic acid (SA) concentration in their roots, suggesting that this isolate was involved in a plant-mediated mode of action and induced resistance. Soaking tomato seeds in the spore suspension did not induce SA accumulation in seedling roots, but nevertheless resulted in a significant reduction in wiltseverity when the seedlings were challenged with the pathogen. In response to pathogen attack, the SA content in susceptible seedlings grown from FS-94-treated seeds started to increase within 1 day and remained elevated for 72 h. This suggests that F. sambucinum isolate FS-94 primed a SA-dependent signaling system in tomato.
机译:在实验室实验中,居住在小麦根际上的非致病性镰孢镰刀菌分离物FS-94保护番茄免受枯萎镰刀菌(F. oxysporum f。sp。lycopersici)的侵害。在病原体接种之前,将种子浸种或浸泡在FS-94孢子悬液中可延缓枯萎症状的出现,并显着降低易感番茄品种的植物的病害严重程度。定量分析感染番茄中的真菌麦角甾醇表明,针对枯萎病的保护作用与限制暴露于FS-94的植物中病原体的生长有关。在FS-94孢子悬浮液中孵育番茄幼苗48或72 h可导致植物保护并增加其根中的水杨酸(SA)浓度,表明该分离株与植物介导的作用方式和诱导的抗性有关。将番茄种子浸泡在孢子悬液中不会诱导SA在苗根中积累,但是当病原体对苗进行攻击时,却导致野生菌数量显着降低。响应病原体侵害,由FS-94处理的种子生长的易感幼苗中的SA含量在1天内开始增加,并在72小时内保持升高。这表明桑树镰刀菌分离物FS-94在番茄中引发了SA依赖性信号传导系统。

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