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New epiphytic yeasts able to reduce grey mold disease on apples

机译:能够减轻苹果灰霉病的新型附生酵母

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Botrytis cinerea, the causal agent of grey mould, is a predominant agent causing extensive postharvest and quality losses of apples in Tunisia and worldwide. Efforts to manage this disease have met with limited success. For this reason, the use of microorganism preparations to control fungal diseases as an alternative to fungicides became an urgent need. From a total of 60 epiphytic yeasts, 10 were assessed in vitro against B. cinerea and selected isolates showing antagonism were evaluated for their ability to suppress the grey mould in vivo. On Petri plates, the most promising strains (three strains of Aureobasidium pullulans, one Cryptococcus flavescens, and one Citeromyces matritensis) showed a zone of inhibition against the pathogen fungus not exceeding 10 mm. In vivo, these isolates showed a remarkable antifungal activity since they significantly reduced disease severity on apples from 63% to 95% compared to the control. In conclusion, the work has demonstrated that the three strains, L7 of Aureobasidium pullulans, L2 of Citeromyces matritensis, and L10 of Cryptococcus flavescens, were highly effective and can be used as potential biocontrol agents in controlling the post-harvest decay of apples caused by B. cinerea.
机译:灰霉病的病原体灰葡萄孢是导致突尼斯乃至全世界苹果大量收获后和品质下降的主要诱因。控制这种疾病的努力取得了有限的成功。因此,迫切需要使用微生物制剂来控制真菌疾病以替代杀真菌剂。从总共60种附生酵母中,体外评估了10株针对灰葡萄孢的酵母,并评估了显示拮抗作用的所选分离株在体内抑制灰霉病的能力。在培养皿上,最有希望的菌株(三种菌株的金黄色葡萄球菌,一株隐球菌和一株Citeromyces matritensis)表现出对病原真菌的抑制作用区域不超过10 mm。在体内,这些分离物显示出显着的抗真菌活性,因为与对照相比,它们将苹果的病害严重程度从63%降低到了95%。综上所述,该研究表明三种菌株,即金黄色葡萄球菌L7,Citeromyces matritensis L2和黄隐隐球菌L10,均能有效地控制由于苹果引起的苹果收获后腐烂的潜在生物防治剂。灰葡萄孢。

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