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Iwahashi H, et al.  (2007) Evaluation of toxicity of the mycotoxin citrinin using yeast ORF DNA microarray and Oligo DNA microarray. BMC Genomics 8:95

Abstract: ABSTRACT: BACKGROUND: Mycotoxins are fungal secondary metabolites commonly present in feed and food, and are widely regarded as hazardous contaminants. Citrinin, one of the very well known mycotoxins that was first isolated from Penicillium citrinum, is produced by more than 10 kinds of fungi, and is possibly spread all over the world. However, the information on the action mechanism of the toxin is limited. Thus, we investigated the citrinin-induced genomic response for evaluating its toxicity. RESULTS: Citrinin inhibited growth of yeast cells at a concentration higher than 100 ppm. We monitored the citrinin-induced mRNA expression profiles in yeast using the ORF DNA microarray and Oligo DNA microarray, and the expression profiles were compared with those of the other stress-inducing agents. Results obtained from both microarray experiments clustered together, but were different from those of the mycotoxin patulin. The oxidative stress response genes - AADs, FLR1, OYE3, GRE2, and MET17- were significantly induced. In the functional category, expression of genes involved in metabolism, cell rescue, defense and virulence, and energy were significantly activated. In the category of metabolism, genes involved in the glutathione synthesis pathway were activated, and in the category of cell rescue, defense and virulence, the ABC transporter genes were induced. To alleviate the induced stress, these cells might pump out the citrinin after modification with glutathione. While, the citrinin treatment did not induce the genes involved in the DNA repair. CONCLUSION: Results from both microarray studies suggest that citrinin treatment induced oxidative stress in yeast cells. The genotoxicity was less severe than the patulin, suggesting that citrinin is less toxic than patulin. The reproducibility of the expression profiles was much better with the Oligo DNA microarray. However, the Oligo DNA microarray did not completely overcome cross hybridization.

Status: Published Type: Journal Article PubMed ID: 17408496

Topics addressed in this paper

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Topics Topics not linked to Genes Genes linked to topics (#1 - 10 )
AAD10 AAD14 AAD15 AAD16 AAD3 AAD4 AAD6 ECM4 FLR1 FRM2
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Topics Genes linked to topics (#11 - 20 )
GRE2 GTT2 MET17 OYE3 PAU15 PDR5 RSB1 RTA1 SDL1 YKL070W
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Topics Genes linked to topics (#21 - 23 )
YLL056C YLR346C YML131W
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