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1.
Braz J Microbiol ; 44(1): 89-95, 2013 May 31.
Article in English | MEDLINE | ID: mdl-24159288

ABSTRACT

Ear rots caused by Fusarium spp. are among the main fungal diseases that contribute to poor quality and the contamination of maize grains with mycotoxins. This study aimed to determine the visual incidence of fungal-damaged kernels (FDKs), the incidence of two main Gibberella (a teleomorph of Fusarium) complexes (G. fujikuroi and G. zeae) associated with maize using a seed health blotter test, and the fumonisin levels, using high performance liquid chromatography, in samples of maize grains grown across 23 municipalities during the 2008/09 and 2009/10 growing seasons. Additionally, 104 strains that were representative of all of the analysed samples were identified to species using PCR assays. The mean FDK was seven per cent, and only six of the samples had levels greater than six per cent. Fusarium spp. of the G. fujikuroi complex were present in 96% of the samples, and G. zeae was present in 18% of the samples (5/27). The mean incidence of G. fujikuroi was 58%, and the incidence of G. zeae varied from 2 to 6%. FB1 was found in 58.6%, FB2 in 37.9%, and both toxins in 37.9% of the samples. The FB1 and FB2 levels were below the quantification limits for 41.3% of the samples, and the mean FB1 levels (0.66 µg/g) were higher than the mean FB2 levels (0.42 µg/g). The PCR identification separated the 104 isolates into three of the G. fujikuroi complex: F. verticillioides (76%), F. subglutinans (4%) and F. proliferatum (2%); and G. zeae (anamorph = F. graminearum) (18%). Our results confirmed the dominance of F. verticillioides, similar to other regions of Brazil, but they differed due to the relatively higher incidence of F. graminearum. Total fumonisin levels were below the maximum limit determined by current Brazilian regulations.

2.
J Food Prot ; 76(6): 1051-5, 2013 Jun.
Article in English | MEDLINE | ID: mdl-23726204

ABSTRACT

Aspergillus flavus, a haploid organism found worldwide in a variety of crops, including maize, cottonseed, almond, pistachio, and peanut, causes substantial and recurrent worldwide economic liabilities. This filamentous fungus produces aflatoxins (AFLs) B1 and B2, which are among the most carcinogenic compounds from nature, acutely hepatotoxic and immunosuppressive. Recent efforts to reduce AFL contamination in crops have focused on the use of nonaflatoxigenic A. flavus strains as biological control agents. Such agents are applied to soil to competitively exclude native AFL strains from crops and thereby reduce AFL contamination. Because the possibility of genetic recombination in A. flavus could influence the stability of biocontrol strains with the production of novel AFL phenotypes, this article assesses the diversity of vegetative compatibility reactions in isolates of A. flavus to identify heterokaryon self-incompatible (HSI) strains among nonaflatoxigenic isolates, which would be used as biological controls of AFL contamination in crops. Nitrate nonutilizing (nit) mutants were recovered from 25 A. flavus isolates, and based on vegetative complementation between nit mutants and on the microscopic examination of the number of hyphal fusions, five nonaflatoxigenic (6, 7, 9 to 11) and two nontoxigenic (8 and 12) isolates of A. flavus were phenotypically characterized as HSI. Because the number of hyphal fusions is reduced in HSI strains, impairing both heterokaryon formation and the genetic exchanges with aflatoxigenic strains, the HSI isolates characterized here, especially isolates 8 and 12, are potential agents for reducing AFL contamination in crops.


Subject(s)
Aflatoxins/analysis , Aspergillus flavus/physiology , Food Contamination/prevention & control , Food Microbiology , Aflatoxins/biosynthesis , Aflatoxins/genetics , Arachis/microbiology , Aspergillus flavus/genetics , Aspergillus flavus/metabolism , Genetic Variation , Recombination, Genetic , Zea mays/microbiology
3.
Article in English | MEDLINE | ID: mdl-24785720

ABSTRACT

To estimate daily intake of aflatoxins from peanut products consumed by the population of Paraná State (Brazil), 100 samples of peanut products were collected between July 2006 and April 2007. Aflatoxins were determined by an HPLC method with fluorescence detection. There was a 50% occurrence of aflatoxins (B1, B2, G1 and G2) in concentrations ranging from 0.5 to 113 ng g(-1), with 13 samples with levels above 20 ng g(-1). Intake was calculated for average and high adult consumers of peanut products and it was compared with provisional maximum tolerable daily intake (PMTDI). The estimated probable daily intake (PDI) for aflatoxin B1 (AFB1) varied from 0.6 to 10.4 ng kg(-1) bw day(-1), exceeding the PMTDI of 0.4 ng kg(-1) bw day(-1) for carriers of hepatitis B virus.


Subject(s)
Aflatoxins/analysis , Arachis/chemistry , Diet , Environmental Exposure , Food Contamination/analysis , Brazil , Chromatography, High Pressure Liquid , Quality Control , Spectrometry, Fluorescence , Surveys and Questionnaires
4.
J Food Prot ; 73(9): 1684-7, 2010 Sep.
Article in English | MEDLINE | ID: mdl-20828476

ABSTRACT

In this study we examined the hygienic and sanitary quality of pasteurized cow's milk in the state of Paraná, Brazil, by determining the presence of coliforms and occurrence of antimicrobial residues. A total of 260 milk samples were collected from commercial establishments in different regions of the state. Coliform populations were estimated by the multiple-tube test, and antimicrobial residues were detected by enzyme-linked immunosorbent assay. Overall, 105 samples (40.4%) were unsuitable for consumption according to Brazilian legal standards. Among the coliforms, Escherichia coli and Klebsiella pneumoniae were respectively identified in 77.05 and 36.07% of the samples. The highest rates of resistance to antimicrobial agents were observed for ampicillin (19.2%), cephalothin (18.9%), and tetracycline (17.1%). Antimicrobial residues were detected in 80 samples (30.8%). Forty-eight samples (18.5%) were positive for tetracycline, 29 (17.4%) for neomycin, 9 (3.5%) for beta-lactams, 6 (2.3%) for gentamicin, 4 (1.5%) for chloramphenicol, and 1 (0.4%) for streptomycin-dihydrostreptomycin. The results demonstrate a high prevalence of coliforms and also a high occurrence of antimicrobial residues in pasteurized cow's milk from Paraná, Brazil.


Subject(s)
Drug Residues/analysis , Drug Resistance, Bacterial , Enterobacteriaceae/drug effects , Food Contamination/analysis , Milk/microbiology , Animals , Brazil , Cattle , Consumer Product Safety , Drug Resistance, Multiple, Bacterial , Food Preservation , Humans , Hygiene , Milk/standards , Prevalence
5.
J Food Prot ; 72(4): 911-4, 2009 Apr.
Article in English | MEDLINE | ID: mdl-19435250

ABSTRACT

Milk containing antimicrobial residues presents a health risk to the human population. The objective of this study was to use an enzyme-immunoassay technique to determine the occurrence of antimicrobial residues in 151 samples of pasteurized milk sold in cities of the State of Paraná, Brazil, from March 2005 to April 2006. Fifty-nine (41.3%) of the 151 samples contained antimicrobial residues. Residues of neomycin, streptomycin, and/or dihydrostreptomycin and chloramphenicol were found in three, two, and four, respectively. None of the samples with neomycin residues had levels above the maximum residue limit (MRL) permitted in this country, which is 500 microg/kg. Only one sample had a higher level of streptomycin-dihydrostreptomycin (260 microg/kg) than the MRL (200 microg/kg). The four samples positive for chloramphenicol had levels above the zero tolerance level. In the qualitative analysis, 41 of 151 samples contained tetracyclines (tetracycline, chlortetracycline, and/or oxytetracycline), 4 of 82 samples contained gentamicin, and 5 of 151 samples contained beta-lactams (amoxicillin, ampicillin, ceftiofur, cephapirin, and/or penicillin G). It was not possible to determine whether the levels of the antimicrobials found in the qualitative analyses (tetracyclines, gentamicin, and beta-lactams) were above the MRLs because the detection limits were below the MRLs in Brazil. In nine samples, two or more antimicrobial residues were found. The results demonstrate the need for monitoring various antimicrobial residues in pasteurized milk to ensure safety, quality, and integrity and to protect the health of the Brazilian population.


Subject(s)
Anti-Bacterial Agents/analysis , Drug Residues/analysis , Milk/chemistry , Animals , Brazil , Cattle , Food Analysis , Hot Temperature , Immunoenzyme Techniques
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