The causes of epistasis

Причины эпистаза
J. Arjan G. M. de Visser, Tim F. Cooper, Santiago F. Elena
2011-10-05

epistasisfitness landscapesgenetic robustness and evolvabilitygenotype-phenotype mapmetabolic networks
Since Bateson's discovery that genes can suppress the phenotypic effects of other genes, gene interactions-called epistasis-have been the topic of a vast research effort. Systems and developmental biologists study epistasis to understand the genotype-phenotype map, whereas evolutionary biologists recognize the fundamental importance of epistasis for evolution. Depending on its form, epistasis may lead to divergence and speciation, provide evolutionary benefits to sex and affect the robustness and evolvability of organisms. That epistasis can itself be shaped by evolution has only recently been realized. Here, we review the empirical pattern of epistasis, and some of the factors that may affect the form and extent of epistasis. Based on their divergent consequences, we distinguish between interactions with or without mean effect, and those affecting the magnitude of fitness effects or their sign. Empirical work has begun to quantify epistasis in multiple dimensions in the context of metabolic and fitness landscape models. We discuss possible proximate causes (such as protein function and metabolic networks) and ultimate factors (including mutation, recombination, and the importance of natural selection and genetic drift). We conclude that, in general, pleiotropy is an important prerequisite for epistasis, and that epistasis may evolve as an adaptive or intrinsic consequence of changes in genetic robustness and evolvability.
1
Empirical studies increasingly quantify epistasis across multiple dimensions using metabolic and fitness landscape models.
2
Epistasis encompasses diverse gene interactions that can alter phenotypic effects, fitness-effect magnitudes, or the signs of fitness effects.
3
Epistasis influences major evolutionary outcomes, including divergence and speciation, the benefits of sex, and organismal robustness and evolvability.
4
Pleiotropy is generally an important prerequisite for epistasis, which may evolve adaptively or arise intrinsically from changes in genetic robustness and evolvability.
5
Proximate causes of epistasis include protein function and metabolic network structure, while mutation, recombination, selection, and drift act as ultimate determinants.

epistasis (gene interactions) in biological systems

the proximate and ultimate causes, forms, evolutionary consequences, and evolution of epistasis

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2011-10-05
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J. Arjan G. M. de Visser
Tim F. Cooper
Santiago F. Elena
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