Fusarium verticillioides is a primary corn pathogen and fumonisin producer which is associated with toxic effects in humans and animals. The traditional methods for detection of fungal contamination based on morphological characteristics are time-consuming and show low sensitivity and specificity. Therefore, the objective of this study was to develop a PCR-ELISA based on the FUM21 gene for F. verticillioides detection. The DNA of the F. verticillioides, Fusarium sp., Aspergillus sp. and Penicillium sp. isolates was analyzed by conventional PCR and PCR-ELISA to determine the specificity. The PCR-ELISA was specific to F. verticillioides isolates, showed a 2.5 pg detection limit and was 100-fold more sensitive than conventional PCR. In corn samples inoculated with F. verticillioides conidia, the detection limit of the PCR-ELISA was 1 × 10 conidia/g and was also 100-fold more sensitive than conventional PCR. Naturally contaminated corn samples were analyzed by PCR-ELISA based on the FUM21 gene and PCR-ELISA absorbance values correlated positively (p < 0.05) with Fusarium sp. counts (CFU/g). These results suggest that the PCR-ELISA developed in this study can be useful for F. verticillioides detection in corn samples.
Paracoccidioides brasiliensis is the etiological agent of paracoccidioidomycosis, a systemic mycosis that affects mainly rural workers in Brazil and other Latin American countries. The participation of domestic and wild animal species in the ecoepidemiology of paracoccidioidomycosis is not well understood. The objective of this study was to evaluate P. brasiliensis infection in dairy goats. The humoral immune response to the gp43 antigen, the main antigen used for paracoccidioidomycosis serodiagnosis and seroepidemiology, was evaluated in two goats immunized with inactivated P. brasiliensis yeast cells. Both animals produced antibodies against the P. brasiliensis gp43 antigen, detected by ELISA, 2 weeks after immunization. A total of 202 goat serum samples were analyzed by ELISA and the immunodiffusion test using P. brasiliensis gp43 and exoantigen as antigens. The seropositivity observed by ELISA was 26.2 % although no reactivity was detected by immunodiffusion. The animals over 18 months of age showed significantly higher positivity (40 %) than animals aged 6-18 months (14.8 %) and 0-6 months (2.6 %). Taking into account that cross-reactivity may occur with other pathogens, the serum samples were also analyzed by ELISA using Histoplasma capsulatum exoantigen as antigen and the positivity observed was 14.3 %. The low correlation (0.267) observed between reactivity to P. brasiliensis gp43 and H. capsulatum exoantigen suggests co-infection rather than cross-reactivity. This is the first report showing serological evidence of P. brasiliensis infection in goats and reinforces that domestic animals are useful epidemiological markers of paracoccidioidomycosis.
No abstract
Fumonisins are a group of toxic secondary metabolites that are produced by Fusarium verticillioides which are associated with poultry health hazard and great economic losses. The objective of the present study was to develop an immunological method to detect F. verticillioides in poultry feed samples. An indirect competitive enzyme-linked immunosorbent assay (ic-ELISA) based on a polyclonal antibody against 67 kDa protein of the F. verticillioides 97K exoantigen was developed to detect this fungus. Antibody anti-67 kDa protein showed cross-reactivity against F. graminearum (2–7%) and F. sporotrichioides (10%), but no or low cross-reactivity against Aspergillus sp. and Penicillium sp. exoantigens. The detection limit for the 67 kDa protein of F. verticillioides was 29 ng/mL. Eighty-one poultry feed samples were analyzed for Fusarium sp. count, 67 kDa protein of F. verticillioides and fumonisin concentrations. Eighty of the 81 feed samples (98.6%) showed Fusarium sp. contamination (mean 6.2 x 104 CFU/g). Mean 67 kDa protein and fumonisin concentration in the poultry feed samples was 21.0 µg/g and 1.02 µg/g, respectively. The concentration of 67 kDa protein, as determined by ic-ELISA correlated positively (p < 0.05) with fumonisin levels (r = 0.76). These results suggest that this ic-ELISA has potential to detect F. verticillioides and predict fumonisin contamination in poultry feed samples.
Os produtos agrícolas, devido à sua alta qualidade nutricional, constituem um substrato suscetível à contaminação por fungos toxigênicos 1. Essa contaminação, além de reduzir a produtividade e a qualidade dos grãos, acarretando perdas econômicas, podem causar efeitos tóxicos em seres humanos e animais devido à produção de metabólitos secundários tóxicos,
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