
doi: 10.1093/bbb/zbaa080
pmid: 33624784
ABSTRACT There are only a few combinations of antifungal drugs with known resistance marker genes in the Aspergillus species; therefore, the transformation of their wild-type strains is limited. In this study, to develop the novel dominant selectable marker for itraconazole, a fungal cell membrane synthesis inhibitor, we focused on Aspergillus luchuensis cyp51A (Alcyp51A), which encodes a 14-α-sterol demethylase related to the steroid synthesis pathway. We found that the G52R mutation in AlCyp51A and the replacement of the native promoter with a high-expression promoter contributed to itraconazole resistance in Aspergillus oryzae, designated as itraconazole resistant gene (itrA). The random integration in the A. luchuensis genome of the itrA marker cassette gene also allowed for transformation using itraconazole. Therefore, we succeed in developing a novel itraconazole resistance marker as a dominant selectable marker for transformation in A. oryzae and A. luchuensis.
Genetic Markers, Antifungal Agents, Aspergillus, Drug Resistance, Fungal, Aspergillus oryzae, Genes, Fungal, Itraconazole
Genetic Markers, Antifungal Agents, Aspergillus, Drug Resistance, Fungal, Aspergillus oryzae, Genes, Fungal, Itraconazole
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