The comimetic Heliconius butterfly species pair, H. erato and H. melpomene, appear to use a conserved Mendelian switch locus to generate their matching red wing patterns. Here we investigate whether H. cydno and H. pachinus, species closely related to H. melpomene, use this same switch locus to generate their highly divergent red and brown color pattern elements. Using an F2 intercross between H. cydno and H. pachinus, we first map the genomic positions of two novel red/brown wing pattern elements; the G locus, which controls the presence of red vs brown at the base of the ventral wings, and the Br locus, which controls the presence vs absence of a brown oval pattern on the ventral hind wing. The results reveal that the G locus is tightly l...
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 positioning of wing pattern elements is controlled by pattern ‘switch’ loci which map to the sam...
The comimetic Heliconius butterfly species pair, H. erato and H. melpomene, appear to use a conserve...
The neotropical butterflies Heliconius melpomene and H. erato are Müllerian mimics that display the ...
We studied whether similar developmental genetic mechanisms are involved in both convergent and dive...
Heliconius butterflies are an excellent system for understanding the genetic basis of phenotypic cha...
Heliconius butterflies are an excellent system for understanding the genetic basis of phenotypic cha...
Wing pattern evolution in Heliconius butterflies provides some of the most striking examples of adap...
Wing pattern evolution in Heliconius butterflies provides some of the most striking examples of adap...
Homoploid hybrid speciation is the formation of a new hybrid species without change in chromosome nu...
Wing pattern evolution in Heliconius butterflies provides some of the most striking examples of adap...
Wing patterning in Heliconius butterflies is a longstanding example of both Müllerian mimicry and ph...
Wing pattern evolution in Heliconius butterflies provides some of the most striking examples of adap...
Wing patterning in Heliconius butterflies is a longstanding example of both Müllerian mimicry and ph...
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 positioning of wing pattern elements is controlled by pattern ‘switch’ loci which map to the sam...
The comimetic Heliconius butterfly species pair, H. erato and H. melpomene, appear to use a conserve...
The neotropical butterflies Heliconius melpomene and H. erato are Müllerian mimics that display the ...
We studied whether similar developmental genetic mechanisms are involved in both convergent and dive...
Heliconius butterflies are an excellent system for understanding the genetic basis of phenotypic cha...
Heliconius butterflies are an excellent system for understanding the genetic basis of phenotypic cha...
Wing pattern evolution in Heliconius butterflies provides some of the most striking examples of adap...
Wing pattern evolution in Heliconius butterflies provides some of the most striking examples of adap...
Homoploid hybrid speciation is the formation of a new hybrid species without change in chromosome nu...
Wing pattern evolution in Heliconius butterflies provides some of the most striking examples of adap...
Wing patterning in Heliconius butterflies is a longstanding example of both Müllerian mimicry and ph...
Wing pattern evolution in Heliconius butterflies provides some of the most striking examples of adap...
Wing patterning in Heliconius butterflies is a longstanding example of both Müllerian mimicry and ph...
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 positioning of wing pattern elements is controlled by pattern ‘switch’ loci which map to the sam...