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The premise of genetic analysis is that a causal link exists between phenotypic and allelic variation. Yet it has long been documented that mutant phenotypes are not a simple result of a single DNA lesion, but rather are due to interactions…

基因组学 · 定量生物学 2014-06-04 Chris H. Chandler , Sudarshan Chari , Ian Dworkin

Natural selection at one site shapes patterns of genetic variation at linked sites. Quantifying the effects of 'linked selection' on levels of genetic diversity is key to making reliable inference about demography, building a null model in…

Epistasis refers to the phenomenon in which phenotypic consequences caused by mutation of one gene depend on one or more mutations at another gene. Epistasis is critical for understanding many genetic and evolutionary processes, including…

分子网络 · 定量生物学 2014-11-25 Lin Xu , Brandon Barker , Zhenglong Gu

In addition to natural selection, adaptive evolution requires genetic variation to proceed. Yet the G-matrix may have limited 'genetic degrees of freedom', with certain combinations of trait values unavailable to evolution. Such limitations…

种群与进化 · 定量生物学 2013-01-22 Ian Dworkin , David Tack , Jarrod Hadfield

Drosophila melanogaster, a small dipteran of African origin, represents one of the best-studied model organisms. Early work in this system has uniquely shed light on the basic principles of genetics and resulted in a versatile collection of…

种群与进化 · 定量生物学 2018-10-12 Annabelle Haudry , Stefan Laurent , Martin Kapun

Epistasis occurs when the effect of a mutation depends on its carrier's genetic background. Despite increasing evidence that epistasis for fitness is common, its role during evolution is contentious. Fitness landscapes, mappings of genotype…

种群与进化 · 定量生物学 2022-06-13 Claudia Bank

Genetic interactions can strongly influence the fitness effects of individual mutations, yet the impact of these epistatic interactions on evolutionary dynamics remains poorly understood. Here we investigate the evolutionary role of…

种群与进化 · 定量生物学 2014-11-14 Benjamin H. Good , Michael M. Desai

Epistasis describes the phenomenon that mutations at different loci do not have independent effects with regard to certain phenotypes. Understanding the global epistatic landscape is vital for many genetic and evolutionary theories. Current…

分子网络 · 定量生物学 2015-02-11 Brandon Barker , Lin Xu , Zhenglong Gu

Biochemical and regulatory interactions central to biological networks are expected to cause extensive genetic interactions or epistasis affecting the heritability of complex traits and the distribution of genotypes in populations. However,…

种群与进化 · 定量生物学 2009-12-15 Richard A. Neher , Boris I. Shraiman

Chromosomal inversions are structural mutations resulting in the reversal of the gene order along the corresponding genomic region. Due to their influence on recombination patterns, they can have a major influence on genetic variation and…

种群与进化 · 定量生物学 2024-12-04 Martin Kapun

In many species, genomic data have revealed pervasive adaptive evolution indicated by the fixation of beneficial alleles. However, when selection pressures are highly variable along a species range or through time adaptive alleles may…

种群与进化 · 定量生物学 2014-11-10 Alan O. Bergland , Emily L. Behrman , Katherine R. O'Brien , Paul S. Schmidt , Dmitri A. Petrov

Epistatic interactions between mutations add substantial complexity to adaptive landscapes, and are often thought of as detrimental to our ability to predict evolution. Yet, patterns of global epistasis, in which the fitness effect of a…

Recent studies have consistently inferred high rates of adaptive molecular evolution between Drosophila species. At the same time, the Drosophila genome evolves under different rates of recombination, which results in partial genetic…

种群与进化 · 定量生物学 2014-09-09 Stephan Schiffels , Michael Lässig , Ville Mustonen

The contribution to an organism's phenotype from one genetic locus may depend upon the status of other loci. Such epistatic interactions among loci are now recognized as fundamental to shaping the process of adaptation in evolving…

种群与进化 · 定量生物学 2012-12-18 Jeremy A. Draghi , Joshua B. Plotkin

Darwinian evolution is driven by random mutations, genetic recombination (gene shuffling) and selection that favors genotypes with high fitness. For systems where each genotype can be represented as a bitstring of length $L$, an overview of…

种群与进化 · 定量生物学 2023-04-11 Kristina Crona , Joachim Krug , Malvika Srivastava

The relationship between the shape of a fitness landscape and the underlying gene interactions, or epistasis, has been extensively studied in the two-locus case. Gene interactions among multiple loci are usually reduced to two-way…

种群与进化 · 定量生物学 2007-05-23 Niko Beerenwinkel , Lior Pachter , Bernd Sturmfels

The interconnected processes of protein folding, mutations, epistasis, and evolution have all been the subject of extensive analysis throughout the years due to their significance for structural and evolutionary biology. The origin…

种群与进化 · 定量生物学 2024-04-08 Jorge A. Vila

Genetic interactions pervade every aspect of biology, from evolutionary theory where they determine the accessibility of evolutionary paths, to medicine where they contribute to complex genetic diseases. Until very recently, studies on…

基因组学 · 定量生物学 2014-01-20 Andrea Velenich , Jeff Gore

Cryptic genetic sequences have attenuated effects on phenotypes. In the classic view, relaxed selection allows cryptic genetic diversity to build up across individuals in a population, providing alleles that may later contribute to…

种群与进化 · 定量生物学 2013-05-23 Etienne Rajon , Joanna Masel

Gene expression levels are important molecular quantitative traits that link genotypes to molecular functions and fitness. In Drosophila, population-genetic studies in recent years have revealed substantial adaptive evolution at the genomic…

种群与进化 · 定量生物学 2015-04-06 Armita Nourmohammad , Joachim Rambeau , Torsten Held , Johannes Berg , Michael Lassig
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