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Article

Exploring the Biocontrol Capability of Non-Mycotoxigenic Strains of Penicillium expansum

by
Belén Llobregat
,
Luis González-Candelas
and
Ana-Rosa Ballester
*
Instituto de Agroquímica y Tecnología de Alimentos (IATA), CSIC, Calle Catedrático Agustín Escardino 7, 46980 Paterna, Spain
*
Author to whom correspondence should be addressed.
Toxins 2024, 16(1), 52; https://doi.org/10.3390/toxins16010052
Submission received: 7 December 2023 / Revised: 9 January 2024 / Accepted: 14 January 2024 / Published: 17 January 2024
(This article belongs to the Special Issue Effect of Mycotoxin on Crop and Methods of Prevention and Degradation)

Abstract

Penicillium expansum is one the major postharvest pathogens of pome fruit during postharvest handling and storage. This fungus also produces patulin, which is a highly toxic mycotoxin that can contaminate infected fruits and their derived products and whose levels are regulated in many countries. In this study, we investigated the biocontrol potential of non-mycotoxigenic strains of Penicillium expansum against a mycotoxigenic strain. We analyzed the competitive behavior of two knockout mutants that were unable to produce patulin. The first mutant (∆patK) involved the deletion of the patK gene, which is the initial gene in patulin biosynthesis. The second mutant (∆veA) involved the deletion of veA, which is a global regulator of primary and secondary metabolism. At the phenotypic level, the ∆patK mutant exhibited similar phenotypic characteristics to the wild-type strain. In contrast, the ∆veA mutant displayed altered growth characteristics compared with the wild type, including reduced conidiation and abnormal conidiophores. Neither mutant produced patulin under the tested conditions. Under various stress conditions, the ∆veA mutants exhibited reduced growth and conidiation when exposed to stressors, including cell membrane stress, oxidative stress, osmotic stress, and different pH values. However, no significant changes were observed in the ∆patK mutant. In competitive growth experiments, the presence of non-mycotoxigenic strains reduced the population of the wild-type strain during in vitro growth. Furthermore, the addition of either of the non-mycotoxigenic strains resulted in a significant decrease in patulin levels. Overall, our results suggest the potential use of non-mycotoxigenic mutants, particularly ∆patK mutants, as biocontrol agents to reduce patulin contamination in food and feed.
Keywords: competition; mycotoxin; patulin; secondary metabolism; VELVET complex; knockout; biocontrol competition; mycotoxin; patulin; secondary metabolism; VELVET complex; knockout; biocontrol

Share and Cite

MDPI and ACS Style

Llobregat, B.; González-Candelas, L.; Ballester, A.-R. Exploring the Biocontrol Capability of Non-Mycotoxigenic Strains of Penicillium expansum. Toxins 2024, 16, 52. https://doi.org/10.3390/toxins16010052

AMA Style

Llobregat B, González-Candelas L, Ballester A-R. Exploring the Biocontrol Capability of Non-Mycotoxigenic Strains of Penicillium expansum. Toxins. 2024; 16(1):52. https://doi.org/10.3390/toxins16010052

Chicago/Turabian Style

Llobregat, Belén, Luis González-Candelas, and Ana-Rosa Ballester. 2024. "Exploring the Biocontrol Capability of Non-Mycotoxigenic Strains of Penicillium expansum" Toxins 16, no. 1: 52. https://doi.org/10.3390/toxins16010052

APA Style

Llobregat, B., González-Candelas, L., & Ballester, A.-R. (2024). Exploring the Biocontrol Capability of Non-Mycotoxigenic Strains of Penicillium expansum. Toxins, 16(1), 52. https://doi.org/10.3390/toxins16010052

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