Hokken, M.W.J.; Coolen, J.P.M.; Steenbreker, H.; Zoll, J.; Baltussen, T.J.H.; Verweij, P.E.; Melchers, W.J.G.
The Transcriptome Response to Azole Compounds in Aspergillus fumigatus Shows Differential Gene Expression across Pathways Essential for Azole Resistance and Cell Survival. J. Fungi 2023, 9, 807.
https://doi.org/10.3390/jof9080807
AMA Style
Hokken MWJ, Coolen JPM, Steenbreker H, Zoll J, Baltussen TJH, Verweij PE, Melchers WJG.
The Transcriptome Response to Azole Compounds in Aspergillus fumigatus Shows Differential Gene Expression across Pathways Essential for Azole Resistance and Cell Survival. Journal of Fungi. 2023; 9(8):807.
https://doi.org/10.3390/jof9080807
Chicago/Turabian Style
Hokken, Margriet W. J., Jordy P. M. Coolen, Hilbert Steenbreker, Jan Zoll, Tim J. H. Baltussen, Paul E. Verweij, and Willem J. G. Melchers.
2023. "The Transcriptome Response to Azole Compounds in Aspergillus fumigatus Shows Differential Gene Expression across Pathways Essential for Azole Resistance and Cell Survival" Journal of Fungi 9, no. 8: 807.
https://doi.org/10.3390/jof9080807
APA Style
Hokken, M. W. J., Coolen, J. P. M., Steenbreker, H., Zoll, J., Baltussen, T. J. H., Verweij, P. E., & Melchers, W. J. G.
(2023). The Transcriptome Response to Azole Compounds in Aspergillus fumigatus Shows Differential Gene Expression across Pathways Essential for Azole Resistance and Cell Survival. Journal of Fungi, 9(8), 807.
https://doi.org/10.3390/jof9080807