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Inhibition of Xanthomonas fragariae Causative Agent of Angular Leaf Spot of Strawberry through Iron Deprivation

机译:通过铁剥夺抑制草莓角叶斑病病原菌Xanthomonas fragariae

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摘要

In commercial production settings, few options exist to prevent or treat angular leaf spot (ALS) of strawberry, a disease of economic importance and caused by the bacterial pathogen Xanthomonas fragariae. In the process of isolating and identifying X. fragariae bacteria from symptomatic plants, we observed growth inhibition of X. fragariae by bacterial isolates from the same leaf macerates. Identified as species of Pseudomonas and Rhizobium, these isolates were confirmed to suppress growth of X. fragariae in agar overlay plates and in microtiter plate cultures, as did our reference strain Pseudomonas putida KT2440. Screening of a transposon mutant library of KT2440 revealed that disruption of the biosynthetic pathway for the siderophore pyoverdine resulted in complete loss of X. fragariae antagonism, suggesting iron competition as a mode of action. Antagonism could be replicated on plate and in culture by addition of purified pyoverdine or by addition of the chelating agents tannic acid and dipyridyl, while supplementing the medium with iron negated the inhibitory effects of pyoverdine, tannic acid and dipyridyl. When co-inoculated with tannic acid onto strawberry plants, X. fragariae’s ability to cause foliar symptoms was greatly reduced, suggesting a possible opportunity for iron-based management of ALS. We discuss our findings in the context of ‘nutritional immunity,’ the idea that plant hosts restrict pathogen access to iron, either directly, or indirectly through their associated microbiota.
机译:在商业化生产环境中,几乎没有选择来预防或治疗草莓的角状叶斑病(ALS),这是一种具有重要经济意义的疾病,是由细菌病原体草莓角腐病菌(Xanthomonas fragariae)引起的。在从有症状的植物中分离和鉴定草莓角斑病菌的过程中,我们观察到来自相同叶片浸出物中的细菌分离物对草莓角斑病菌的生长抑制作用。与我们的参考菌株恶臭假单胞菌KT2440一样,这些分离物被鉴定为假单胞菌和根瘤菌的物种,可抑制琼脂覆盖平板和微量滴定板培养物中的草莓角斑病菌的生长。 KT2440转座子突变体文库的筛选显示,铁载体pyoverdine的生物合成途径的破坏导致草莓角斑病菌拮抗作用的完全丧失,表明铁竞争是一种作用方式。拮抗作用可通过添加纯化的吡啶酮或通过添加螯合剂鞣酸和双吡啶而在平板上和培养物中复制,而向培养基中补充铁则消除了吡啶酮,鞣酸和二吡啶的抑制作用。与单宁酸一起接种到草莓植株上后,草莓角斑病菌引起叶状症状的能力大大降低,这提示以铁为基础的ALS处理可能存在机会。我们在“营养免疫”的背景下讨论了我们的发现,即植物宿主直接或通过其相关微生物群限制病原体接触铁的想法。

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