Directional epistasis is common in morphological divergence
Направленный эпистаз широко распространён при морфологической дивергенции
2024-02-23
SCID: 54.1/wh8tkcnz
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additive genetic variancedirectional epistasisevolvabilityline-cross experimentsmorphological divergence
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Abstract (AI)
Epistasis is often portrayed as unimportant in evolution. While random patterns of epistasis may have limited effects on the response to selection, systematic directional epistasis can have substantial effects on evolutionary dynamics. Directional epistasis occurs when allele substitutions that change a trait also modify the effects of allele substitution at other loci in a systematic direction. In this case, trait evolution may induce correlated changes in allelic effects and additive genetic variance (evolvability) that modify further evolution. Although theory thus suggests a potentially important role for directional epistasis in evolution, we still lack empirical evidence about its prevalence and magnitude. Using a new framework to estimate systematic patterns of epistasis from line-crosses experiments, we quantify its effects on 197 size-related traits from diverging natural populations in 24 animal and 17 plant species. We show that directional epistasis is common and tends to become stronger with increasing morphological divergence. In animals, most traits displayed negative directionality toward larger size, suggesting that epistatic constraints reducing evolvability toward larger size. Dominance was also common but did not systematically alter the effects of epistasis.
Key Findings
1
A new line-cross framework estimates systematic directional epistasis across morphological traits.
2
Directional epistasis is common across 197 size-related traits from diverging populations of 24 animal and 17 plant species.
3
Dominance is common but does not systematically modify epistatic effects.
4
In animals, most traits show negative directionality toward larger size, implying epistatic constraints on evolvability toward larger body size.
5
The strength of directional epistasis generally increases with morphological divergence.
Research Object
Size-related morphological traits and their underlying genetic architectures in diverging natural populations of 24 animal and 17 plant species
Research Subject
The prevalence, magnitude, directionality, and evolutionary effects of epistasis, including its influence on allelic effects, additive genetic variance (evolvability), and morphological divergence
Publication Details
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2024-02-23
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