Identifying the genomic changes that control morphological variation and understanding how they generate diversity is a major goal of evolutionary biology. In Heliconius butterflies, a small number of genes control the development of diverse wing color patterns. Here, we used full genome sequencing of individuals across the Heliconius erato radiation and closely related species to characterize genomic variation associated with wing pattern diversity. We show that variation around color pattern genes is highly modular, with narrow genomic intervals associated with specific differences in color and pattern. This modular architecture explains the diversity of color patterns and provides a flexible mechanism for rapid morphological diversificat...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
An important goal in evolutionary biology is to understand the genetic changes underlying novel morp...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
Identifying the genomic changes that control morphological variation and understanding how they gene...
Identifying the genomic changes that control morphological variation and understanding how they gene...
Identifying the genomic changes that control morphological variation and understanding how they gene...
Identifying the genomic changes that control morphological variation and understanding how they gene...
Identifying the genomic changes that control morphological variation and understanding how they gene...
Identifying the genomic changes that control morphological variation and understanding how they gene...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
International audienceAn important goal in evolutionary biology is to understand the genetic changes...
Evolutionary Developmental Biology aims for a mechanistic understanding of phenotypic diversity, and...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
International audienceAn important goal in evolutionary biology is to understand the genetic changes...
International audienceAn important goal in evolutionary biology is to understand the genetic changes...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
An important goal in evolutionary biology is to understand the genetic changes underlying novel morp...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
Identifying the genomic changes that control morphological variation and understanding how they gene...
Identifying the genomic changes that control morphological variation and understanding how they gene...
Identifying the genomic changes that control morphological variation and understanding how they gene...
Identifying the genomic changes that control morphological variation and understanding how they gene...
Identifying the genomic changes that control morphological variation and understanding how they gene...
Identifying the genomic changes that control morphological variation and understanding how they gene...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
International audienceAn important goal in evolutionary biology is to understand the genetic changes...
Evolutionary Developmental Biology aims for a mechanistic understanding of phenotypic diversity, and...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
International audienceAn important goal in evolutionary biology is to understand the genetic changes...
International audienceAn important goal in evolutionary biology is to understand the genetic changes...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
An important goal in evolutionary biology is to understand the genetic changes underlying novel morp...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...