Many agricultural products are susceptible to contamination by aflatoxin-producing species from Aspergillus section Flavi. The objectives of this study were to determine the occurrence of Aspergillus section Flavi in four agricultural products, such as pistachio, walnut, hazelnut, and dried fruits, collected from market and retail shops in various areas of Kerman County and obtain information on the relationships between isolation source and ability to produce sclerotia and potential for aflatoxin production. Aspergillus species were identified based on morphological characteristics as well as subsequent sequencing of the parts of the β-tubulin and calmodulin genes. From 207 isolated strains, the following species were identified: A. flavus, A. tamarii A. nomius, A. parasiticus, A. arachidicola, A. caelatus, A. pseudotamarii, and A. leporis. To the best of our knowledge, this is the first report of A. pseudotamarii and A. arachidicola with the potential to produce aflatoxins from dried apricots and hazelnuts, respectively. Sclerotial type was significantly different between isolates from different isolation sources. From 192 tested isolates, 38% were aflatoxin producer from which 5% were scored as strong aflatoxin producers and 33% as average aflatoxin producers. A significant difference in the population of aflatoxin-producing strains across the isolation sources was observed which may reflect host adaptation and thereby different vulnerabilities to aflatoxin-producing species among the examined products.
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http://dx.doi.org/10.1007/s00284-021-02620-8 | DOI Listing |
Toxicon
January 2025
Laboratory of Biochemistry and Molecular Biology of Centre Béninois de la Recherche Scientifique et de l'Innovation (CBRSI) 03BP2262 Cotonou, Benin; National Agricultural University, Porto-Novo, Benin. Electronic address:
Filamentous fungi are recognized for their significance in food processing and antibiotic production, as well as their capacity to produce mycotoxins. Numerous secondary metabolites have been investigated, and their occurrence in foodstuffs, both in the field and during the storage of agricultural products, poses a substantial health risk to consumers. Several fungal species capable of producing mycotoxins have been documented.
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February 2025
Natural Resources Institute of University of Greenwich, Central Avenue, Chatham Maritime, Chatham, Kent, ME4 4TB, UK.
Fungal Biol
December 2024
Department of Sustainable Crop Production, Università Cattolica del Sacro Cuore, 29122, Piacenza, Italy. Electronic address:
Apples and apple-derived products can be contaminated with patulin and, to a lesser extent, aflatoxin B1 and fumonisins. Fruits were collected from Golden Delicious and Imperatore trees in three orchards in Veneto, Northern Italy, and analysed for the presence of fungi and mycotoxins. Sampling and analyses were also carried out from storage bins to final puree tanks along the apple-puree production chain.
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November 2024
Pathology and Mycotoxin Unit, IITA, Ibadan, Nigeria.
Background: Aflatoxin contamination by section Flavi fungi poses a significant threat to food security and public health in sub-Saharan Africa (SSA). Maize, groundnut, and sorghum are staple crops frequently contaminated with aflatoxins, sometimes at dangerous levels. Despite its detrimental effects, many farmers in SSA lack access to effective tools for mitigating aflatoxin contamination.
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