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Yeasts from Different Habitats and Their Potential as Biocontrol Agents

机译:来自不同栖息地的酵母及其作为生物防治剂的潜力

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Ever since plant diseases began causing losses in viticulture, the control of phytopathogenic fungi has become of vital interest for winemakers. The occurrence of novel pests, fungicide resistance, and changed consumer expectations have led to an enormous demand for novel plant protection strategies. As part of integrated protection measures, antagonistic microorganisms have been investigated to a large extent. Such microorganisms can be applied not only in conventional, but also in organic farming as biological control agents (BCA). Particularly, yeasts were found to be interesting candidates for the development of BCA. Many of these eukaryotic microorganisms are found as part of the phylloplane microflora. In this study, we assessed a set of 38 yeast isolates from different habitats, including the guts of termites, for inhibitory effects against some phytopathogenic fungi that have received less attention in earlier studies. The majority of yeasts were found to interfere with fungi infecting grapevine ( Eutypa lata , Botrytis cinerea , and Roesleria subterranea ), stone fruits ( Monilinia fructicola ), or rice ( Magnaporte oryzae ), as well in vitro and in model experiment on fruits. Although most yeast strains secreted glycoside hydrolases and proteases, attempts to demonstrate direct antagonistic activities of lytic enzymes failed. However, in culture filtrates of the termite yeast Papiliotrema odontotermitis OO5, a low molecular thermostable antagonistic factor was detected. Iron depletion as a BCA mechanism was confirmed for strains of Metschnikowia pulcherrima but not for other yeasts.
机译:自从植物病害开始在葡萄栽培中造成损失以来,控制植物病原真菌已成为酿酒师的重要兴趣。新型有害生物的出现,抗真菌剂的抗性以及消费者期望的变化,导致对新型植物保护策略的巨大需求。作为综合保护措施的一部分,已经广泛研究了拮抗微生物。这样的微生物不仅可以作为生物防治剂(BCA)应用于常规农业,而且可以应用于有机农业。特别地,发现酵母是BCA发展的有趣候选者。发现许多这些真核微生物是叶平面微生物群的一部分。在这项研究中,我们评估了一组来自不同栖息地(包括白蚁肠道)的38种酵母菌菌株对某些植物病原真菌的抑制作用,这些真菌在早期研究中受到的关注较少。发现大多数酵母菌均会干扰真菌感染葡萄(真菌(Eutypa lata),灰葡萄孢(Botrytis cinerea)和罗氏菌(Roesleria subterranea)),核果(Monilinia fructicola)或大米(Magnaporte oryzae),并在体外和水果的模型实验中产生干扰。尽管大多数酵母菌株分泌糖苷水解酶和蛋白酶,但是尝试证明裂解酶的直接拮抗活性的尝试失败了。但是,在白蚁酵母牙本质牙周炎OO5的培养滤液中,检测到低分子热稳定拮抗因子。已证实铁的去除是B.Metschnikowia pulcherrima菌株的BCA机制,而其他酵母则没有。

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