<div><p>Genotype-phenotype (GP) maps specify how the random mutations that change genotypes generate variation by altering phenotypes, which, in turn, can trigger selection. Many GP maps share the following general properties: 1) The total number of genotypes is much larger than the number of selectable phenotypes; 2) Neutral exploration changes the variation that is accessible to the population; 3) The distribution of phenotype frequencies , with the number of genotypes mapping onto phenotype , is highly biased: the majority of genotypes map to only a small minority of the phenotypes. Here we explore how these properties affect the evolutionary dynamics of haploid Wright-Fisher models that are coupled to a random GP map or to a more comp...
A fundamental aim of post-genomic 21st century biology is to understand the genotype-phenotype map (...
The large degree of phenotypic fluctuation among isogenic cells highlighted by recent studies on sto...
<div> <div> <div> <p>Understanding the genetic basis of phenotypic adaptation to changing environmen...
Genotype-phenotype (GP) maps specify how the random mutations that change genotypes generate variati...
Genotype-phenotype (GP) maps specify how the random mutations that change genotypes generate variati...
The mapping between biological genotypes and phenotypes plays an important role in evolution, and un...
Mutational neighbourhoods in genotype-phenotype (GP) maps are widely believed to be more likely to s...
Among the most fundamental features shared by all organisms is the mapping of information encoded in...
One of the most fundamental and least understood elements of evolution is the mapping between genoty...
Genetic spaces are often described in terms of fitness landscapes or genotype-to-phenotype maps, whe...
Genetic spaces are often described in terms of fitness landscapes or genotype-to-phenotype maps, whe...
<p>We present results for the three GP maps: A) RNA20, B) <i>S</i><sub>3,8</sub> and C) HP5x5. We pi...
Evolutionary dynamics arise from the interplay of mutation and selection. Fundamentally, these two p...
The evolution of gene regulatory networks (GRNs) is of great relevance for both evolutionary and syn...
The accumulation of beneficial mutations on competing genetic backgrounds in rapidly adapting popula...
A fundamental aim of post-genomic 21st century biology is to understand the genotype-phenotype map (...
The large degree of phenotypic fluctuation among isogenic cells highlighted by recent studies on sto...
<div> <div> <div> <p>Understanding the genetic basis of phenotypic adaptation to changing environmen...
Genotype-phenotype (GP) maps specify how the random mutations that change genotypes generate variati...
Genotype-phenotype (GP) maps specify how the random mutations that change genotypes generate variati...
The mapping between biological genotypes and phenotypes plays an important role in evolution, and un...
Mutational neighbourhoods in genotype-phenotype (GP) maps are widely believed to be more likely to s...
Among the most fundamental features shared by all organisms is the mapping of information encoded in...
One of the most fundamental and least understood elements of evolution is the mapping between genoty...
Genetic spaces are often described in terms of fitness landscapes or genotype-to-phenotype maps, whe...
Genetic spaces are often described in terms of fitness landscapes or genotype-to-phenotype maps, whe...
<p>We present results for the three GP maps: A) RNA20, B) <i>S</i><sub>3,8</sub> and C) HP5x5. We pi...
Evolutionary dynamics arise from the interplay of mutation and selection. Fundamentally, these two p...
The evolution of gene regulatory networks (GRNs) is of great relevance for both evolutionary and syn...
The accumulation of beneficial mutations on competing genetic backgrounds in rapidly adapting popula...
A fundamental aim of post-genomic 21st century biology is to understand the genotype-phenotype map (...
The large degree of phenotypic fluctuation among isogenic cells highlighted by recent studies on sto...
<div> <div> <div> <p>Understanding the genetic basis of phenotypic adaptation to changing environmen...