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首页> 外文期刊>Frontiers in Plant Science >Burkholderia phytofirmans PsJN Confers Grapevine Resistance against Botrytis cinerea via a Direct Antimicrobial Effect Combined with a Better Resource Mobilization
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Burkholderia phytofirmans PsJN Confers Grapevine Resistance against Botrytis cinerea via a Direct Antimicrobial Effect Combined with a Better Resource Mobilization

机译: Burkholderia phytofirmans PsJN通过直接的抗菌作用与更好的资源调动相结合,赋予葡萄对灰葡萄孢的抗性

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Plant innate immunity serves as a surveillance system by providing the first line of powerful weapons to fight against pathogen attacks. Beneficial microorganisms and Microbial-Associated Molecular Patterns might act as signals to trigger this immunity. Burkholderia phytofirmans PsJN, a highly efficient plant beneficial endophytic bacterium, promotes growth in a wide variety of plants including grapevine. Further, the bacterium induces plant resistance against abiotic and biotic stresses. However, no study has deciphered triggered-mechanisms during the tripartite interaction between grapevine, B. phytofirmans PsJN and Botrytis cinerea . Herein, we showed that in contrast with classical rhizobacteria, which are restricted in the root system and act through ISR, B. phytofirmans PsJN is able to migrate until aerial part and forms at leaves surface a biofilm around B. cinerea mycelium to restrict the pathogen. Nevertheless, considering the endophytic level of PsJN in leaves, the plant protection efficacy of B. phytofirmans PsJN could not be explained solely by its direct antifungal effect. Deeper investigations showed a callose deposition, H_(2)O_(2)production and primed expression of PR1, PR2, PR5 , and JAZ only in bacterized-plantlets after pathogen challenge. The presence of PsJN modulated changes in leaf carbohydrate metabolism including gene expression, sugar levels, and chlorophyll fluorescence imaging after Botrytis challenge. Our findings indicated that protection induced by B. phytofirmans PsJN was multifaceted and relied on a direct antifungal effect, priming of defense mechanisms as well as the mobilization of carbon sources in grapevine leaf tissues.
机译:通过提供第一线强大的武器来对抗病原体的攻击,植物固有的免疫力可以作为监视系统。有益微生物和微生物相关分子模式可能充当触发这种免疫力的信号。伯克霍尔德氏菌植物PsJN是一种高效的植物有益内生细菌,可促进包括葡萄藤在内的多种植物的生长。此外,细菌诱导植物对非生物和生物胁迫的抗性。但是,尚无研究破译葡萄树,B。phytofirmans PsJN和灰葡萄孢之间的三方相互作用过程中的触发机制。在此,我们表明,与经典根瘤菌相比,其在根系统中受到限制并通过ISR发挥作用,而植物确诊细菌PsJN能够迁移直至地上部分并在叶片表面形成灰质芽孢杆菌菌丝体周围的生物膜以限制病原体。 。然而,考虑到叶片中PsJN的内生水平,不能仅通过其直接的抗真菌作用来解释B.phytofirmans PsJN的植物保护功效。更深入的研究表明,病原体攻击后,仅在细菌苗中出现了ose的沉积,H_(2)O_(2)的产生以及PR1,PR2,PR5和JAZ的初表达。葡萄孢菌攻击后,PsJN的存在调节了叶片碳水化合物代谢的变化,包括基因表达,糖水平和叶绿素荧光成像。我们的发现表明,由植物疫霉菌PsJN诱导的保护作用是多方面的,并依赖于直接的抗真菌作用,启动防御机制以及葡萄叶组织中碳源的动员。

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