ArticleApplied microbiology and biotechnology2025
The roles of NHEJ and TLS pathways in genomic alterations and phenotypic evolution in the yeast Yarrowia lipolytica.
Article in Applied microbiology and biotechnology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 2 papers.
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2 citing papers in PubMed.
- Fungal DNA damage repair: from model to driver of virulence and AMR.Bioscience reports · 2026Review
- Discovery of Bacillamide-Acylhydrazone Hybrids as Novel Fungicide Lead Compounds.Journal of fungi (Basel, Switzerland) · 2026Article
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9 authors.
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Abstract
Non-homologous end joining (NHEJ) is a DNA repair pathway that directly ligates broken DNA ends without the need for a homologous template, whereas translesion synthesis (TLS) is a DNA damage tolerance mechanism in which specialized DNA polymerases bypass lesions on the template strand. Although both pathways play critical roles in maintaining genome integrity across organisms, they inherently introduce mutations. Here, we investigate how these two pathways contribute to spontaneous and genotoxic stress-induced genomic alterations in the yeast Yarrowia lipolytica. A NHEJ-deficient mutant (ku70) and three TLS-deficient mutants (rev1, rev3, and rad30) are subjected to mutation accumulation experiments, followed by whole-genome sequencing. Our results show that the deletion of KU70 has no significant effect on the rates of spontaneous single-nucleotide variations (SNVs), small insertions and deletions, or chromosomal rearrangements, while the deletion of REV1 and REV3 leads to significant reductions in spontaneous SNV rates. These findings indicate that TLS but not the NHEJ pathway is a major contributor to spontaneous mutagenesis in Y. lipolytica. Moreover, exposure to 0.02% methyl methanesulfonate and 80 J/m
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