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DNA Repair in Haploid Context

Journal

Publisher

MDPI
DOI: 10.3390/ijms222212418

Keywords

DNA repair; haploid; diploid; gametes; Saccharomyces cerevisiae; Schizosaccharomyces pombe

Funding

  1. Natural Sciences and Engineering Research Council of Canada [06089]

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Understanding DNA repair pathways is crucial for maintaining genetic integrity, especially in haploid and diploid organisms, where differences in repair capacity may lead to distinct transgenerational outcomes.
DNA repair is a well-covered topic as alteration of genetic integrity underlies many pathological conditions and important transgenerational consequences. Surprisingly, the ploidy status is rarely considered although the presence of homologous chromosomes dramatically impacts the repair capacities of cells. This is especially important for the haploid gametes as they must transfer genetic information to the offspring. An understanding of the different mechanisms monitoring genetic integrity in this context is, therefore, essential as differences in repair pathways exist that differentiate the gamete's role in transgenerational inheritance. Hence, the oocyte must have the most reliable repair capacity while sperm, produced in large numbers and from many differentiation steps, are expected to carry de novo variations. This review describes the main DNA repair pathways with a special emphasis on ploidy. Differences between Saccharomyces cerevisiae and Schizosaccharomyces pombe are especially useful to this aim as they can maintain a diploid and haploid life cycle respectively.

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