The idea that those genes of an organism that are expressed in the haploid stage are under more efficient natural selection than those genes expressed exclusively in the diploid stage is referred to as the “masking theory”.7 This theory implies that purifying selection is more efficient in the haploid stage of the life cycle where fitness effects are more fully expressed than in the diploid stage of the life cycle. Evidence supporting the masking theory has been reported in the single-celled yeast Saccharomyces cerevisiae.8 Further evidence of strong purifying selection in haploid tissue-specific genes, in support of the masking theory, has been reported for the plant, Scots Pine.9
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Cervantes S, Kesälahti R, Kumpula TA, Mattila TM, Helanterä H, Pyhäjärvi T (August 2023). "Strong Purifying Selection in Haploid Tissue-Specific Genes of Scots Pine Supports the Masking Theory". Mol Biol Evol. 40 (8). doi:10.1093/molbev/msad183. PMC 10457172. PMID 37565532. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10457172 ↩
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