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Improved Methods for Treatment of Phytopathogenic Biofilms: Metallic Compounds as Anti-Bacterial Coatings and Fungicide Tank-Mix Partners

机译:处理植物病原性生物膜的改进方法:金属化合物作为抗细菌涂层和杀菌剂Tank-Mix合作伙伴

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摘要

Fungi and bacteria cause disease issues in cultivated plants world-wide. In most cases, the fungi and bacteria colonize plant tissues as biofilms, which can be very challenging to destroy or eradicate. In this experiment, we employed a novel (biofilm) approach to crop disease management by evaluating the efficacies of six fungicides, and four silver-based compounds, versus biofilms formed by fungi and bacteria, respectively. The aim was to identify combinations of fungicides and metallic cations that showed potential to improve the control of white mold (WM), caused by the ascomycete fungus Sclerotinia sclerotiorum, and to evaluate novel high valency silver compounds as seed coatings to prevent biofilm formation of four bacterial blight pathogens on dry bean seeds. Our results confirmed that mature fungal biofilms were recalcitrant to inactivation by fungicides. When metallic cations were added to the fungicides, their efficacies were improved. Some improvements were statistically significant, with one combination (fluazinam + Cu2+) showing a synergistic effect. Additionally, coatings with silver compounds could reduce bacterial blight biofilms on dry bean seeds and oxysilver nitrate was the most potent inhibitor of bacterial blight.
机译:真菌和细菌在全世界的栽培植物中引起疾病​​问题。在大多数情况下,真菌和细菌会以生物膜的形式定植在植物组织上,这对于销毁或根除生物具有很大的挑战性。在本实验中,我们通过评估六种杀菌剂和四种银基化合物相对于真菌和细菌形成的生物膜的功效,采用了一种新颖的(生物膜)方法来防治作物病害。目的是鉴定杀真菌剂和金属阳离子的组合,这些组合物显示出潜在的潜力来改善由子囊真菌菌核盘菌引起的白霉病(WM)的控制,并评估新型高价银化合物作为种子涂层,以防止四种生物膜的形成。干豆种子上的细菌性疫病病原体。我们的结果证实,成熟的真菌生物膜对杀真菌剂的失活具有顽固性。当金属阳离子添加到杀菌剂中时,它们的功效得到改善。某些改善在统计学上具有显着意义,其中一种组合(氟济南+ Cu 2 + )显示出协同作用。此外,用银化合物涂层可以减少干豆种子上的细菌枯萎生物膜,而硝酸氧化银是最有效的细菌枯萎抑制剂。

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