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Characterization of antagonistic yeasts for biocontrol applications on apples or in soil by quantitative analyses of synthetic yeast communities

机译:通过对合成酵母菌群落进行定量分析表征在苹果或土壤中用于生物防治的拮抗酵母菌的特性

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摘要

Antagonistic yeasts suppress plant pathogenic fungi by various mechanisms, but their biocontrol efficacy also depends on the ability to compete and persist in the environment. The goal of the work presented here was to quantify the composition of synthetic yeast communities in order to determine the competitiveness of different species and identify promising candidates for plant protection. For this purpose, colony counting of distinct species and matrix‐assisted laser desorption ionization time‐of‐flight mass spectrometry (MALDI‐TOF MS; MALDI biotyping) were used to distinguish different yeast species and to quantify the composition of a synthetic community of six yeasts (Aureobasidium pullulans, Candida subhashii, Cyberlindnera sargentensis, Hanseniaspora sp., Metschnikowia pulcherrima and Pichia kluyveri) over time, on apples and in soil, and in different growth media. These studies revealed important characteristics that predispose the different species for particular applications. For example, the competitiveness and antagonistic activity of C. subhashii was strongly increased in the presence of N‐acetylglucosamin as the sole carbon source, M. pulcherrima and A. pullulans were the strongest competitors on apple, and C. sargentensis competed the best in soil microcosms. Based on these laboratory studies, M. pulcherrima and A. pullulans are promising candidates for biocontrol applications against fungal phyllosphere diseases, while C. sargentensis may hold potential for use against soilborne fungal pathogens. These results document the potential of MALDI‐TOF MS for the quantitative analysis of synthetic yeast communities and highlight the value of studying microorganisms with relevant functions in moderately complex, synthetic communities and natural substrates rather than as individual isolates.
机译:拮抗酵母通过多种机制抑制植物病原真菌,但它们的生物防治功效还取决于在环境中竞争和持久存在的能力。此处提出的工作目标是量化合成酵母群落的组成,以确定不同物种的竞争力并确定有希望的植物保护候选对象。为此,使用不同物种的菌落计数和基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS; MALDI生物分型)来区分不同的酵母物种并量化由六个组成的合成群落的组成随着时间的推移,在苹果和土壤中以及在不同生长培养基中的酵母菌(Aureobasidium pullulans,H。Candida subhashii,Cyber​​lindnera sargentensis,Hanseniaspora sp。,Metschnikowia pulcherrima和Pichia kluyveri)都会随时间变化。这些研究揭示了重要的特征,这些特征使不同的物种容易出现在特定的应用中。例如,在存在N-乙酰氨基葡萄糖作为唯一碳源的情况下,Subhashii的竞争能力和拮抗活性大大增强,M。pulcherrima和A. Pullulans是苹果上最强的竞争者,而C. sargentensis在土壤微观世界。基于这些实验室研究,M。pulcherrima和A. Pullulans是有望用于防治真菌性叶环疾病的候选生物,而sargentensis C.可能具有抗土壤传播的真菌病原体的潜力。这些结果证明了MALDI-TOF MS在合成酵母菌群落定量分析中的潜力,并突出了研究在中等复杂的合成菌群和天然底物中而不是作为单独分离株的具有相关功能的微生物的价值。

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