首页> 美国卫生研究院文献>Microbial Biotechnology >The antagonistic strain Bacillus subtilis UMAF6639 also confers protection to melon plants against cucurbit powdery mildew by activation of jasmonate-and salicylic acid-dependent defence responses
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The antagonistic strain Bacillus subtilis UMAF6639 also confers protection to melon plants against cucurbit powdery mildew by activation of jasmonate-and salicylic acid-dependent defence responses

机译:拮抗枯草芽孢杆菌UMAF6639还可以通过激活依赖于茉莉酸和水杨酸的防御反应来保护瓜类植物免受葫芦科白粉病的侵害

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摘要

Biological control of plant diseases has gained acceptance in recent years. Bacillus subtilis UMAF6639 is an antagonistic strain specifically selected for the efficient control of the cucurbit powdery mildew fungus Podosphaera fusca, which is a major threat to cucurbits worldwide. The antagonistic activity relies on the production of the antifungal compounds iturin and fengycin. In a previous study, we found that UMAF6639 was able to induce systemic resistance (ISR) in melon and provide additional protection against powdery mildew. In the present work, we further investigated in detail this second mechanism of biocontrol by UMAF6639. First, we examined the signalling pathways elicited by UMAF6639 in melon plants, as well as the defence mechanisms activated in response to P. fusca. Second, we analysed the role of the lipopeptides produced by UMAF6639 as potential determinants for ISR activation. Our results demonstrated that UMAF6639 confers protection against cucurbit powdery mildew by activation of jasmonate- and salicylic acid-dependent defence responses, which include the production of reactive oxygen species and cell wall reinforcement. We also showed that surfactin lipopeptide is a major determinant for stimulation of the immune response. These results reinforce the biotechnological potential of UMAF6639 as a biological control agent.
机译:近年来,植物病害的生物防治得到了认可。枯草芽孢杆菌UMAF6639是一种拮抗菌株,专门用于有效控制葫芦白粉病真菌Podosphaera fusca,这是全世界葫芦的主要威胁。拮抗活性取决于抗真菌化合物iturin和fengycin的产生。在先前的研究中,我们发现UMAF6639能够诱导甜瓜的系统抗性(ISR)并提供针对白粉病的附加保护。在目前的工作中,我们进一步详细研究了UMAF6639的第二种生物控制机制。首先,我们研究了UMAF6639在瓜类植物中引发的信号传导途径,以及对P. fusca的激活防御机制。其次,我们分析了UMAF6639产生的脂肽作为ISR激活的潜在决定因素的作用。我们的结果表明,UMAF6639通过激活依赖于茉莉酸和水杨酸的防御反应(包括活性氧的产生和细胞壁的增强)赋予针对葫芦科白粉病的保护。我们还表明表面活性素脂肽是刺激免疫反应的主要决定因素。这些结果增强了UMAF6639作为生物防治剂的生物技术潜力。

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