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Yeasts and Bacterial Consortia from Kefir Grains Are Effective Biocontrol Agents of Postharvest Diseases of Fruits

机译:开菲尔谷物中的酵母和细菌财团是水果采后病害的有效生物防治剂

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摘要

Fungal pathogens in fruits and vegetables cause significant losses during handling, transportation, and storage. Biological control with microbial antagonists replacing the use of chemical fungicides is a major approach in postharvest disease control, and several products based on single antagonists have been developed but have limitations related to reduced and inconsistent performance under commercial conditions. One possible approach to enhance the biocontrol efficacy is to broaden the spectrum of the antagonistic action by employing compatible microbial consortia. Here, we explore commercial kefir grains, a natural probiotic microbial consortium, by culture-dependent and metagenomic approaches and observed a rich diversity of co-existing yeasts and bacterial population. We report effective inhibition of the postharvest pathogen on apple by using the grains in its fresh commercial and milk-activated forms. We observed few candidate bacteria and yeasts from the kefir grains that grew together over successive enrichment cycles, and these mixed fermentation cultures showed enhanced biocontrol activities as compared to the fresh commercial or milk-activated grains. We also report several individual species of bacteria and yeasts with biocontrol activities against rots on apple and grapefruit. These species with antagonistic properties could be further exploited to develop a synthetic consortium to achieve enhanced antagonistic effects against a wide range of postharvest pathogens.
机译:水果和蔬菜中的真菌病原体在处理,运输和存储期间会造成重大损失。用微生物拮抗剂代替化学杀真菌剂进行生物控制是收获后疾病控制的一种主要方法,已经开发了几种基于单一拮抗剂的产品,但在商业条件下其性能降低和不一致具有局限性。增强生物防治效力的一种可能方法是通过采用相容的微生物聚生体来扩大拮抗作用的范围。在这里,我们通过培养依赖性和宏基因组学方法探索商业牛乳气酒(一种天然益生菌微生物联盟),并观察到多种共存酵母和细菌种群的多样性。我们报告通过使用其新鲜的商业和牛奶活化形式的谷物对苹果收获后病原体的有效抑制作用。我们观察到从开菲尔谷物中选出的候选细菌和酵母很少,它们在连续的富集循环中一起生长,与新鲜的商业谷物或牛奶活化谷物相比,这些混合发酵培养物显示出增强的生物防治活性。我们还报告了几种单独的细菌和酵母菌,它们对苹果和葡萄柚的腐烂具有生物防治作用。这些具有拮抗特性的物种可进一步用于开发合成财团,以实现对多种采后病原体的增强拮抗作用。

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