A Survey on Distribution and Toxigenicity of Aspergillus Section Flavi in Poultry Feeds
Overview
Nutritional Sciences
Affiliations
Thirty-five samples of poultry feeds and corresponding raw materials (maize, soybean and meat meal) from a processing plant were analyzed to evaluate the distribution and toxigenicity of Aspergillus section Flavi isolates. Mycological analysis of the samples indicated the presence of five fungal genera (Aspergillus, Penicillium, Fusarium, Cladosporium, and Eurotium). Aspergillus flavus was the predominant species being present in 48.5% of the analyzed samples. Ninety-one isolates belonging to Aspergillus section Flavi were isolated; ninety were identified as A. flavus and only one as A. parasiticus. Fifty-seven isolates were capable of producing sclerotia, 41 were identified as L-type strains and 16 as type S. Fifty-seven percent of the isolates produced AFB₁ levels ranging from 0.05 μg/kg to 27.7 μg/kg whereas 86.8% produced CPA from 1.5 μg/kg to 137.8 μg/kg. L-strains produced from 0.05 to 14.8 μg/kg of aflatoxin and type S produced levels from 0.05 to 1.65 μg/kg. No significant differences in CPA production among S- and L-strains were observed. Sclerotial isolates produced AFB₁ levels ranging between 0.05 and 27.7 μg/kg and CPA levels from 3.8 to 47.3 μg/kg. More than half of the A. flavus isolates were able to produce AFB and CPA simultaneously. Twenty percent of the 35 samples were contaminated with aflatoxin B₁ whereas 34.3% were contaminated with CPA. The high rate of CPA producing isolates represents a potential risk of contamination with this toxin in poultry feeds.
Moura-Mendes J, Cazal-Martinez C, Rojas C, Ferreira F, Perez-Estigarribia P, Dias N Microorganisms. 2023; 11(8).
PMID: 37630439 PMC: 10458825. DOI: 10.3390/microorganisms11081879.
Habibi A, Afzali D Curr Microbiol. 2021; 78(10):3674-3685.
PMID: 34398304 DOI: 10.1007/s00284-021-02620-8.
Occurrence and toxigenic potential of section on wheat and sorghum silages in Uruguay.
Del Palacio A, Pan D Mycology. 2020; 11(2):147-157.
PMID: 32923022 PMC: 7448941. DOI: 10.1080/21501203.2020.1752321.
Effect of benomyl and diazinon on acquired azole resistance in and expression of and genes.
Akbari Dana M, Jamal Hashemi S, Daei Ghazvini R, Khodavesi S, Modiri M, Nazemi L Curr Med Mycol. 2019; 5(2):27-32.
PMID: 31321335 PMC: 6626713. DOI: 10.18502/cmm.5.2.1158.
Liu J, Sun L, Zhang N, Zhang J, Guo J, Li C Biomed Res Int. 2016; 2016:7232858.
PMID: 27294129 PMC: 4886045. DOI: 10.1155/2016/7232858.