Mimicry—whereby warning signals in different species evolve to look similar—has long served as a paradigm of convergent evolution. Little is known, however, about the genes that underlie the evolution of mimetic phenotypes or to what extent the same or different genes drive such convergence. Here, we characterize one of the major genes responsible for mimetic wing pattern evolution in Heliconius butterflies. Mapping, gene expression, and population genetic work all identify a single gene, optix, that controls extreme red wing pattern variation across multiple species of Heliconius. Our results show that the cis-regulatory evolution of a single transcription factor can repeatedly drive the convergent evolution of complex color patterns in di...
To what extent can we predict how evolution occurs? Do genetic architectures and developmental proce...
To what extent can we predict how evolution occurs? Do genetic architectures and developmental proce...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
Mimicry--whereby warning signals in different species evolve to look similar--has long served as a p...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
The mimetic butterflies Heliconius erato and Heliconius melpomene have undergone parallel radiations...
The mimetic butterflies Heliconius erato and Heliconius melpomene have undergone parallel radiations...
The colorful wing patterns of Heliconius butterflies represent an excellent system in which to study...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
The mimetic butterflies Heliconius erato and H. melpomene have undergone parallel radiations to form...
The mimetic butterflies Heliconius erato and H. melpomene have undergone parallel radiations to form...
We studied whether similar developmental genetic mechanisms are involved in both convergent and dive...
Butterfly wing patterns are made up of arrays of coloured scales. There are two genera in which with...
To what extent can we predict how evolution occurs? Do genetic architectures and developmental proce...
To what extent can we predict how evolution occurs? Do genetic architectures and developmental proce...
To what extent can we predict how evolution occurs? Do genetic architectures and developmental proce...
To what extent can we predict how evolution occurs? Do genetic architectures and developmental proce...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
Mimicry--whereby warning signals in different species evolve to look similar--has long served as a p...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
The mimetic butterflies Heliconius erato and Heliconius melpomene have undergone parallel radiations...
The mimetic butterflies Heliconius erato and Heliconius melpomene have undergone parallel radiations...
The colorful wing patterns of Heliconius butterflies represent an excellent system in which to study...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
The mimetic butterflies Heliconius erato and H. melpomene have undergone parallel radiations to form...
The mimetic butterflies Heliconius erato and H. melpomene have undergone parallel radiations to form...
We studied whether similar developmental genetic mechanisms are involved in both convergent and dive...
Butterfly wing patterns are made up of arrays of coloured scales. There are two genera in which with...
To what extent can we predict how evolution occurs? Do genetic architectures and developmental proce...
To what extent can we predict how evolution occurs? Do genetic architectures and developmental proce...
To what extent can we predict how evolution occurs? Do genetic architectures and developmental proce...
To what extent can we predict how evolution occurs? Do genetic architectures and developmental proce...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...