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http://hdl.handle.net/11189/10597| Title: | The use of specific non-saccharomyces yeasts as sustainable biocontrol solutions against botrytis cinerea on apples and strawberries | Authors: | Gomomo, Zukisani Fanadzo, Morris Mewa Ngongang, Maxwell Chidi, Boredi Silas Hoff, Justin Wallace van der Rijst, Marieta Mokwena, Lucky Mathabatha Evodia Setati Setati, Mathabatha du Plessis, Heinrich |
Keywords: | Mould spoilage;Synthetic chemicals;Pre- and post-harvest control;Growth inhibition;Hydrolytic enzymes | Issue Date: | 2025 | Publisher: | MDPI | Source: | Gomomo, Z. et al. 2025. The use of specific non-saccharomyces yeasts as sustainable biocontrol solutions against botrytis cinerea on apples and strawberries. Journal of Fungi, 11(1): 1-21. [https://doi.org/10.3390/jof11010026] | Journal: | Journal of Fungi | Abstract: | Apples and strawberries hold significant commercial and nutritional value but face pre- and post-harvest spoilage due to infections by Botrytis cinerea. While spoilage is conventionally managed using synthetic chemicals, there is a growing interest in utilising yeasts as biological control agents. This study aimed to assess the antifungal potential of non-Saccharomyces yeasts Suhomyces pyralidae, Meyerozyma guilliermondii, Pichia kluyveri, Zygoascus hellenicus, and Aureobasidium melanogenum against three B. cinerea strains (B05.10, IWBT-FF1, and PPRI 30807) on agar plates and in post-harvest trials on apples and strawberries. Aureobasidium melanogenum exhibited a broad range of extracellular enzyme production and inhibition rates of 55%, 52%, and 40% against the strains. In volatile organic compound (VOC) assays, P. kluyveri and S. pyralidae achieved 79% and 56% inhibition, respectively, with VOCs like isobutanol, isoamyl alcohol, 2-phenylethanol, isoamyl acetate, and 2-phenethyl acetate identified. In post-harvest trials, S. pyralidae was most effective on apples, with inhibition rates up to of 64%. The commercial fungicide Captan and S. pyralidae and P. kluyveri achieved 100% inhibition against the B. cinerea strains B05.10 and IWBT-FF1 on strawberries. These findings highlight the potential of the selected yeast species as biological control agents against B. cinerea, warranting further research into their application in commercial fruit protection. | URI: | http://hdl.handle.net/11189/10597 | ISSN: | 2309-608X (Online) | DOI: | https://doi.org/10.3390/jof11010026 |
| Appears in Collections: | Appsc - Journal Articles (DHET subsidised) |
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| File | Description | Size | Format | |
|---|---|---|---|---|
| The_Use_of_Specific.pdf | 2.61 MB | Adobe PDF | View/Open |
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