Structural colours, produced by the reflection of light from ultrastructures, have evolved multiple times in butterflies. Unlike pigmentary colours and patterns, little is known about the genetic basis of these colours. Reflective structures on wing-scale ridges are responsible for iridescent structural colour in many butterflies, including the Müllerian mimics Heliconius erato and Heliconius melpomene. Here, we quantify aspects of scale ultrastructure variation and colour in crosses between iridescent and non-iridescent subspecies of both of these species and perform quantitative trait locus (QTL) mapping. We show that iridescent structural colour has a complex genetic basis in both species, with offspring from crosses having a wide variat...
Butterfly wing patterns are made up of arrays of coloured scales. There are two genera in which with...
Background: The colorful wing patterns of butterflies, a prime example of biodiversity, can change d...
Background: The colorful wing patterns of butterflies, a prime example of biodiversity, can change d...
Structural colours, produced by the reflection of light from ultrastructures, have evolved multiple ...
Structural colours, produced by the reflection of light from ultrastructures, have evolved multiple ...
Bright, highly reflective iridescent colours can be seen across nature and are produced by the scatt...
Butterfly wings are adorned with colours that allow them to adapt to their environment in different ...
Bright, highly reflective iridescent colours can be seen across nature and are produced by the scatt...
Bright, highly reflective iridescent colours can be seen across nature and are produced by the scatt...
Iridescence is an optical phenomenon whereby colour changes with the illumination and viewing angle....
Understanding how selection interacts with genetic variation to produce biodiversity is a central th...
Raw USAXS data from discal region of Heliconius butterflies (H. erato and H. melpomene). The data co...
Butterfly wing patterns are made up of arrays of coloured scales. There are two genera in which with...
Iridescence is an optical phenomenon whereby colour changes with the illumination and viewing angle....
Butterfly wing patterns are made up of arrays of coloured scales. There are two genera in which with...
Butterfly wing patterns are made up of arrays of coloured scales. There are two genera in which with...
Background: The colorful wing patterns of butterflies, a prime example of biodiversity, can change d...
Background: The colorful wing patterns of butterflies, a prime example of biodiversity, can change d...
Structural colours, produced by the reflection of light from ultrastructures, have evolved multiple ...
Structural colours, produced by the reflection of light from ultrastructures, have evolved multiple ...
Bright, highly reflective iridescent colours can be seen across nature and are produced by the scatt...
Butterfly wings are adorned with colours that allow them to adapt to their environment in different ...
Bright, highly reflective iridescent colours can be seen across nature and are produced by the scatt...
Bright, highly reflective iridescent colours can be seen across nature and are produced by the scatt...
Iridescence is an optical phenomenon whereby colour changes with the illumination and viewing angle....
Understanding how selection interacts with genetic variation to produce biodiversity is a central th...
Raw USAXS data from discal region of Heliconius butterflies (H. erato and H. melpomene). The data co...
Butterfly wing patterns are made up of arrays of coloured scales. There are two genera in which with...
Iridescence is an optical phenomenon whereby colour changes with the illumination and viewing angle....
Butterfly wing patterns are made up of arrays of coloured scales. There are two genera in which with...
Butterfly wing patterns are made up of arrays of coloured scales. There are two genera in which with...
Background: The colorful wing patterns of butterflies, a prime example of biodiversity, can change d...
Background: The colorful wing patterns of butterflies, a prime example of biodiversity, can change d...