Literature DB >> 31200120

Quantitative proteomic profiling of ochratoxin A repression in Penicillium nordicum by protective cultures.

Josué Delgado1, Félix Núñez2, Miguel A Asensio2, Rebecca A Owens3.   

Abstract

Dry-cured meat products are usually contaminated with moulds during ripening. Although fungal development contributes to the desired sensory characteristics, some moulds, such as Penicillium nordicum are able to produce ochratoxin A (OTA) on meat products. Therefore, strategies to prevent OTA contamination in ripened meat products are required. Microorganisms isolated from these meat products can be adequate as biocontrol agents, given that no negative sensory impact is expected. The PgAFP antifungal protein-producer Penicillium chrysogenum (Pc) and Debaryomyces hansenii (Dh) have been shown to successfully inhibit toxigenic moulds. However, scarce information about the mechanism of action of these biocontrol agents on toxigenic mould inhibition is available. Comparative proteomic analysis is a powerful tool to investigate the physiological response of microorganisms to stimuli. Proteomic analysis was carried out on P. nordicum co-cultured with Pc, Dh, PgAFP, and their combinations on a dry-cured ham-based medium. Additionally, OTA production by P. nordicum in the different cultures was measured. The individual inoculation of Pc or Dh repressed OTA production by P. nordicum by 5 and 3.15 fold, respectively. A total of 2844 unique P. nordicum proteins were identified by proteomic analysis. The impact of the biocontrol agents on the proteome of P. nordicum was higher for Pc-containing cultures, followed by Dh-containing treatments. PgAFP alone had minimal impact on the proteome of P. nordicum. Proteomic analyses indicated Pc repressed P. nordicum OTA production through nutrient competition, potentially reducing glucose availability. Data also suggest that Dh and Pc inhibited P. nordicum through cell wall integrity impairment. Both Pc and Dh seem to hamper P. nordicum secondary metabolism (SM) as indicated by lower levels of MAP kinases and SM-associated proteins found in the co-inoculated P. nordicum. This work paves the way to use antifungal agents in the most efficient way to prevent OTA formation in meat products.
Copyright © 2019 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Debaryomyces hansenii; Ochratoxin; Penicillium chrysogenum; PgAFP; Protective cultures; Proteomics

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Substances:

Year:  2019        PMID: 31200120     DOI: 10.1016/j.ijfoodmicro.2019.108243

Source DB:  PubMed          Journal:  Int J Food Microbiol        ISSN: 0168-1605            Impact factor:   5.277


  4 in total

Review 1.  Omics Approaches Applied to Penicillium chrysogenum and Penicillin Production: Revealing the Secrets of Improved Productivity.

Authors:  Carlos García-Estrada; Juan F Martín; Laura Cueto; Carlos Barreiro
Journal:  Genes (Basel)       Date:  2020-06-26       Impact factor: 4.096

2.  Comparative Genomic and Proteomic Analyses of Three Widespread Phytophthora Species: Phytophthora chlamydospora, Phytophthora gonapodyides and Phytophthora pseudosyringae.

Authors:  Jamie McGowan; Richard O'Hanlon; Rebecca A Owens; David A Fitzpatrick
Journal:  Microorganisms       Date:  2020-04-30

3.  Efficacy of the Combined Protective Cultures of Penicillium chrysogenum and Debaryomyces hansenii for the Control of Ochratoxin A Hazards in Dry-Cured Ham.

Authors:  Eva Cebrián; Mar Rodríguez; Belén Peromingo; Elena Bermúdez; Félix Núñez
Journal:  Toxins (Basel)       Date:  2019-12-05       Impact factor: 4.546

Review 4.  Indigenous Microbiota to Leverage Traditional Dry Sausage Production.

Authors:  Noelia Zulema Palavecino Prpich; Germán Edgardo Camprubí; María Elisa Cayré; Marcela Paola Castro
Journal:  Int J Food Sci       Date:  2021-01-30
  4 in total

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