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- W2040011040 abstract "Background Since the dawn of genetics, additive and dominant gene action in diploids have been defined by comparison of heterozygote and homozygote phenotypes. However, these definitions provide little insight into the underlying intralocus allelic functional dependency and thus cannot serve directly as a mediator between genetics theory and regulatory biology, a link that is sorely needed. Methodology/Principal Findings We provide such a link by distinguishing between positive, negative and zero allele interaction at the genotype level. First, these distinctions disclose that a biallelic locus can display 18 qualitatively different allele interaction sign motifs (triplets of +, – and 0). Second, we show that for a single locus, Mendelian dominance is not related to heterozygote allele interaction alone, but is actually a function of the degrees of allele interaction in all the three genotypes. Third, we demonstrate how the allele interaction in each genotype is directly quantifiable in gene regulatory models, and that there is a unique, one-to-one correspondence between the sign of autoregulatory feedback loops and the sign of the allele interactions. Conclusion/Significance The concept of allele interaction refines single locus genetics substantially, and it provides a direct link between classical models of gene action and gene regulatory biology. Together with available empirical data, our results indicate that allele interaction can be exploited experimentally to identify and explain intricate intra- and inter-locus feedback relationships in eukaryotes." @default.
- W2040011040 created "2016-06-24" @default.
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- W2040011040 date "2010-02-23" @default.
- W2040011040 modified "2023-10-16" @default.
- W2040011040 title "Allele Interaction – Single Locus Genetics Meets Regulatory Biology" @default.
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- W2040011040 doi "https://doi.org/10.1371/journal.pone.0009379" @default.
- W2040011040 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/2826424" @default.
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