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Selection of an Endophytic Streptomyces sp. Strain DEF09 From Wheat Roots as a Biocontrol Agent Against Fusarium graminearum

机译:内生链霉菌种的选择。小麦根的DEF09菌株作为抗禾谷镰刀菌的生物防治剂

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摘要

Selection of biological control agents (BCA) profits from an integrated study of the tripartite interactions occurring among the BCA, the plant and the pathogen. The environment plays a crucial role in the efficacy of BCA, therefore, the selection process shall utmost mimic naturally occurring conditions. To identify effective biocontrol strains against Fusarium graminearum, the major cause of Fusarium head blight (FHB) in wheat and deoxynivalenol (DON) accumulation in grains, a workflow consisting of in vitro and in vivo assays was set up. Twenty-one Streptomyces strains, 16 of which were endophytes of different plants, were analyzed. In vitro and in vivo tests characterized their plant growth promoting (PGP) traits. Biocontrol activity against F. graminearum was firstly assessed with a dual culture assay. An in vivo germination blotter assay measured Fusarium foot rot and root rot symptoms (FFR-FRR) reduction as well as growth parameters of the plant treated with the Streptomyces strains. A selected subset of Streptomyces spp. strains was then assessed in a growth chamber measuring FFR symptoms and growth parameters of the wheat plant. The approach led to the identification of an effective Streptomyces sp. strain, DEF09, able to inhibit FHB on wheat in controlled conditions by blocking the spread of the pathogen at the infection site. The results were further confirmed in field conditions on both bread and durum wheat, where DEF09 decreased disease severity up to 60%. This work confirms that FRR and FFR pathosystems can be used to identify BCA effective against FHB.
机译:生物控制剂(BCA)的选择得益于对BCA,植物和病原体之间发生的三方相互作用的综合研究。环境在BCA的功效中起着至关重要的作用,因此,选择过程应尽可能模仿自然条件。为了鉴定抗镰刀镰刀菌(小麦镰刀菌枯萎病(FHB)和谷物中脱氧雪茄烯醇(DON)积累的主要原因)的有效生物防治菌株,建立了由体外和体内试验组成的工作流程。分析了二十一种链霉菌菌株,其中的十六种是不同植物的内生菌。体外和体内试验表征了它们的植物生长促进(PGP)特性。首先用双重培养测定法评估了对禾谷镰刀菌的生物防治活性。体内发芽印迹测定法测定了镰刀菌足腐病和根腐病症状(FFR-FRR)的减少以及用链霉菌菌株处理过的植物的生长参数。链霉菌属的选定子集。然后在生长室中评估菌株,测量小麦植物的FFR症状和生长参数。该方法导致鉴定出有效的链霉菌。 DEF09菌株能够通过控制病原体在感染部位的传播而在受控条件下抑制小麦的FHB。在面包和硬质小麦上的田间条件都进一步证实了这一结果,其中DEF09将疾病严重程度降低了60%。这项工作证实了FRR和FFR病理系统可用于鉴定对FHB有效的BCA。

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