4.3 Article

Screening of antagonistic yeast strains for postharvest control of Penicillium expansum causing blue mold decay in table grape

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FUNGAL BIOLOGY
卷 127, 期 3, 页码 901-908

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ELSEVIER SCI LTD
DOI: 10.1016/j.funbio.2023.01.003

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Antagonistic yeasts; Biological control; Table grape; Penicillium expansum

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Blue mold decay caused by Penicillium expansum is a major postharvest disease of grapes, resulting in significant economic losses. This study aimed to identify potential yeast strains for biological control of blue mold on table grapes. Six yeast strains (Coniochaeta euphorbiae, Auerobasidium mangrovei, Tranzscheliella sp., Geotrichum candidum, Basidioascus persicus, and Cryptococcus podzolicus) showed significant inhibitory activity against P. expansum and G. candidum was the most efficient biocontrol agent.
Blue mold decay caused by Penicillium expansum is one of the most important postharvest diseases of grapes, leading to considerable economic losses. Regarding the increasing demand for pesticide-free foods, this study aimed to find potential yeast strains for biological control of blue mold on table grapes. A total of 50 yeast strains were screened for antagonistic activity against P. expansum using the dual culture method and six strains significantly inhibited the fungal growth. All six yeast strains (Coniochaeta euphorbiae, Auerobasidium mangrovei, Tranzscheliella sp., Geotrichum candidum, Basidioascus persicus, and Cryptococcus podzolicus) reduced the fungal growth (29.6-85.0%) and the decay degree of wounded grape berries inoculated with P. expansum while G. candidum was found to be the most efficient biocontrol agent. On the basis of antagonistic activity, the strains were further characterized by in vitro assays involving inhibition of conidial germination, production of volatile compounds, iron competition, production of hydrolytic enzymes, biofilm-forming capacity, and exhibited three or more putative mechanisms. To our knowledge, the yeasts are reported for the first time as potential biocontrol agents against the blue mold of grapes but more study is required to evaluate their efficiency related to field application.(c) 2023 British Mycological Society. Published by Elsevier Ltd. All rights reserved.

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