Current Protocols in Microbiology · 2019 · 63 citations · 11 references
EngineeringMicrobial PathogensAspergillus FumigatusFungal Cell BiologyGeneticsMolecular BiologyClinical MycologyFungal Developmental BiologyGenome EngineeringMolecular DiagnosticsGene ReplacementFungal Cell FactoryFunctional GenomicsBioinformaticsFungal PathogenHigh‐throughput Gene ReplacementMolecular Diagnostic TechniquesSynthetic BiologyNull MutantsMicrobiologyMedicineGenome Editing
Aspergillus fumigatus is a human pathogen and the principal etiologic agent of invasive and chronic aspergillosis leading to several hundreds of thousands of deaths every year. Very few antifungals are available to treat infections caused by A. fumigatus, and resistance is developing to those we have. Our understanding of the molecular mechanisms that drive pathogenicity and drug resistance have been hampered by the lack of large mutant collections, which limits our ability to perform functional genomics analysis. Here we present a high-throughput gene knockout method that combines a highly reproducible fusion PCR method to enable generation of gene replacement cassettes with a multiwell format transformation procedure. This process can be used to generate 96 null mutants within 5 days by a single person at a cost of less than £18 ($24) per mutant and is being employed in our laboratory to generate a barcoded genome-wide knockout library in A. fumigatus. © 2019 The Authors.
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Thomas F. Patterson, George R. Thompson, David W. Denning et al. · Clinical Infectious Diseases · 2016 · 2.7K citations · Full text
Fusion PCR and gene targeting in Aspergillus nidulans
Edyta Szewczyk, Tania Nayak, C. Elizabeth Oakley et al. · Nature Protocols · 2006 · 779 citations