<div class="csl-bib-body">
<div class="csl-entry">Schmal, M., Kramer, L. T. S., Mach, R. L., Mach-Aigner, A., & Zimmermann, C. (2025). Providing a toolbox for genomic engineering of Trichoderma aggressivum. <i>Microbiology Spectrum</i>, <i>13</i>(9), Article e0096625. https://doi.org/10.1128/spectrum.00966-25</div>
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dc.identifier.issn
2165-0497
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/221640
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dc.description.abstract
Fungi belonging to the genus of Trichoderma have a long history of infecting crops of edible fungi and reducing the yield. Trichoderma aggressivum is the main causal agent of green mold disease in Agaricus bisporus. Despite its infamous role as a persistent and aggressive contamination in A. bisporus crops, T. aggressivum can also be used as a biocontrol agent or as a promoter of plant growth. In order to work efficiently with T. aggressivum on a molecular biology level, a transformation protocol is required. This study provides a detailed protocol on how to perform a transformation in T. aggressivum using plasmid DNA for ectopic integration. In addition, a Cas9-RNP-based approach has been established for genome editing. We performed two transformations to confirm the usability of the hph gene as well as the pyr4 gene from Trichoderma reesei as selection markers. First, we integrated the hph gene ectopically and determined the overall transformation efficiency. In the second transformation experiment, we disrupted the ornithine-5′ phosphate decarboxylase gene of T. aggressivum by using the CRISPR-Cas9 approach. In total, four candidates showed the expected uridine auxotrophy and resistance to 5-FOA. Additionally, the genomic locus around the CRISPR target sites was sequenced to determine the exact circumstances around the gene disruption. To complete the genetic toolbox for T. aggressivum, the pyr4 gene of T. reesei was tested as a suitable selection marker in one of the generated uridine auxotrophic strains.
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dc.description.sponsorship
FWF - Österr. Wissenschaftsfonds
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dc.language.iso
en
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dc.publisher
AMER SOC MICROBIOLOGY
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dc.relation.ispartof
Microbiology Spectrum
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dc.subject
CRISPR-Cas Systems
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dc.subject
Genome, Fungal
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dc.subject
Transformation, Genetic
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dc.subject
Hypocreales
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dc.subject
Agaricus
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dc.subject
Plasmids
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dc.subject
Fungal Proteins
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dc.subject
Plant Diseases
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dc.subject
Genomics
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dc.subject
Trichoderma
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dc.subject
auxotrophy
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dc.subject
genome editing
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dc.subject
marker
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dc.subject
transformation
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dc.subject
Gene Editing
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dc.subject
Trichoderma
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dc.subject
Genetic Engineering
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dc.title
Providing a toolbox for genomic engineering of Trichoderma aggressivum