Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis underlying phenotypic variation. However, even changes in molecular pathways associated with extreme variation, gains and losses of specific phenotypes, remain largely uncharacterized. Here, we investigate the large interspecific differences in the ability to survive infection by parasitoids across 11 Drosophila species and identify genomic changes associated with gains and losses of parasitoid resistance. We show that a cellular immune defense, encapsulation, and the production of a specialized blood cell, lamellocytes, are restricted to a sublineage of Drosophila, but that encapsulation is absent in one species of this sublineage, Drosophi...
Abstract Background Parasitoid resistance in Drosophila varies considerably, among and within specie...
Host-parasite interactions are ubiquitous in nature: all organisms, from bacteria to humans, must de...
While evolution is generally thought of as a slow process, acting at long time scales, selection can...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
Parasitoid resistance in Drosophila varies considerably, among and within species. An immune respons...
Parasitoid resistance in Drosophila varies considerably, among and within species. An immune respons...
BACKGROUND: Parasitoid resistance in Drosophila varies considerably, among and within species. An im...
BACKGROUND: Parasitoid resistance in Drosophila varies considerably, among and within species. An im...
BACKGROUND: Parasitoid resistance in Drosophila varies considerably, among and within species. An im...
Background: Parasitoid resistance in Drosophila varies considerably, among and within species. An im...
BACKGROUND: Parasitoid resistance in Drosophila varies considerably, among and within species. An im...
Abstract Background Parasitoid resistance in Drosophila varies considerably, among and within specie...
Host-parasite interactions are ubiquitous in nature: all organisms, from bacteria to humans, must de...
While evolution is generally thought of as a slow process, acting at long time scales, selection can...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
Understanding the genomic basis of evolutionary adaptation requires insight into the molecular basis...
Parasitoid resistance in Drosophila varies considerably, among and within species. An immune respons...
Parasitoid resistance in Drosophila varies considerably, among and within species. An immune respons...
BACKGROUND: Parasitoid resistance in Drosophila varies considerably, among and within species. An im...
BACKGROUND: Parasitoid resistance in Drosophila varies considerably, among and within species. An im...
BACKGROUND: Parasitoid resistance in Drosophila varies considerably, among and within species. An im...
Background: Parasitoid resistance in Drosophila varies considerably, among and within species. An im...
BACKGROUND: Parasitoid resistance in Drosophila varies considerably, among and within species. An im...
Abstract Background Parasitoid resistance in Drosophila varies considerably, among and within specie...
Host-parasite interactions are ubiquitous in nature: all organisms, from bacteria to humans, must de...
While evolution is generally thought of as a slow process, acting at long time scales, selection can...