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Gene expression bias between the subgenomes of allopolyploid hybrids is an emergent property of the kinetics of expression

An H. Pires J. Conant G (2024). Gene expression bias between the subgenomes of allopolyploid hybrids is an emergent property of the kinetics of expression. PLOS Computational Biology, 20(1), e1011803. https://doi.org/10.1371/journal.pcbi.1011803

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(5.0) 1 review
Authors
Hong An, J. Chris Pires, Gavin C. Conant
Journal
PLOS Computational Biology
First published
2024
Number of citations
12
Type
Journal Article

Abstract

Hybridization coupled to polyploidy, or allopolyploidy, has dramatically shaped the evolution of flowering plants, teleost fishes, and other lineages. Studies of recently formed allopolyploid plants have shown that the two subgenomes that merged to form that new allopolyploid do not generally express their genes equally. Instead, one of the two subgenomes expresses its paralogs more highly on average. Meanwhile, older allopolyploidy events tend to show biases in duplicate losses, with one of the two subgenomes retaining more genes than the other. Since reduced expression is a pathway to duplicate loss, understanding the origins of expression biases may help explain the origins of biased losses. Because we expect gene expression levels to experience stabilizing selection, our conceptual frameworks for how allopolyploid organisms form tend to assume that the new allopolyploid will show balanced expression between its subgenomes. It is then necessary to invoke phenomena such as differences in the suppression of repetitive elements to explain the observed expression imbalances. Here we show that, even for phenotypically identical diploid progenitors, the inherent kinetics of gene expression give rise to biases between the expression levels of the progenitor genes in the hybrid. Some of these biases are expected to be gene-specific and not give rise to global differences in progenitor gene expression. However, particularly in the case of allopolyploids formed from progenitors with different genome sizes, global expression biases favoring one subgenome are expected immediately on formation. Hence, expression biases are arguably the expectation upon allopolyploid formation rather than a phenomenon needing explanation. In the future, a deeper understanding of the kinetics of allopolyploidy may allow us to better understand both biases in duplicate losses and hybrid vigor.

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MagentaScalpel Aug 06, 2026

Pretty interesting, i like how simple the model formulations were. Gave me some food for thought for polyploidy, beyond the title the discussion mentions an advantage of having a large genome, where individual genes are less coupled to eachother in chromatin state, perhaps some situations of natural selection favour very precise gene expression control where one gene should'nt affect another. Cool stuff.