BACKGROUND: Heliconius butterfly wing pattern diversity offers a unique opportunity to investigate how natural genetic variation can drive the evolution of complex adaptive phenotypes. Positional cloning and candidate gene studies have identified a handful of regulatory and pigmentation genes implicated in Heliconius wing pattern variation, but little is known about the greater developmental networks within which these genes interact to pattern a wing. Here we took a large-scale transcriptomic approach to identify the network of genes involved in Heliconius wing pattern development and variation. This included applying over 140 transcriptome microarrays to assay gene expression in dissected wing pattern elements across a range of developmen...
The mimetic butterflies Heliconius erato and H. melpomene have undergone parallel radiations to form...
An important goal in evolutionary biology is to understand the genetic changes underlying novel morp...
An important goal in evolutionary biology is to understand the genetic changes underlying novel morp...
BACKGROUND: Heliconius butterfly wing pattern diversity offers a unique opportunity to investigate h...
BACKGROUND: Heliconius butterfly wing pattern diversity offers a unique opportunity to investigate h...
Background: Heliconius butterfly wing pattern diversity offers a unique opportunity to investigate h...
BACKGROUND: Heliconius butterfly wing pattern diversity offers a unique opportunity to investigate h...
A major challenge to evolutionary developmental biology is to understand the how modifications to ge...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
Butterfly wing patterns have emerged as exceptional model systems with which to link the development...
Funder: Wellcome Trust; doi: http://dx.doi.org/10.13039/100004440Abstract: Background: Many traits e...
Background: Many traits evolve by cis-regulatory modification, by which changes to noncoding sequenc...
The positioning of wing pattern elements is controlled by pattern ‘switch’ loci which map to the sam...
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...
An important goal in evolutionary biology is to understand the genetic changes underlying novel morp...
An important goal in evolutionary biology is to understand the genetic changes underlying novel morp...
BACKGROUND: Heliconius butterfly wing pattern diversity offers a unique opportunity to investigate h...
BACKGROUND: Heliconius butterfly wing pattern diversity offers a unique opportunity to investigate h...
Background: Heliconius butterfly wing pattern diversity offers a unique opportunity to investigate h...
BACKGROUND: Heliconius butterfly wing pattern diversity offers a unique opportunity to investigate h...
A major challenge to evolutionary developmental biology is to understand the how modifications to ge...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
Identifying the genetic changes driving adaptive variation in natural populations is key to understa...
Butterfly wing patterns have emerged as exceptional model systems with which to link the development...
Funder: Wellcome Trust; doi: http://dx.doi.org/10.13039/100004440Abstract: Background: Many traits e...
Background: Many traits evolve by cis-regulatory modification, by which changes to noncoding sequenc...
The positioning of wing pattern elements is controlled by pattern ‘switch’ loci which map to the sam...
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...
An important goal in evolutionary biology is to understand the genetic changes underlying novel morp...
An important goal in evolutionary biology is to understand the genetic changes underlying novel morp...