Gene expression is known to vary extensively among tissues and between sexes. However, detailed descriptions of tissue-and sex-specific gene expression are available for only a few model organisms. A new study published in BMC Genomics presents such a data set for the mosquito, Anopheles gambiae, which is the vector of human malaria. In addition to providing a valuable resource for the community of mosquito researchers, the study allows comparative transcriptomic studies of dipteran insects to be extended over 250 million years of evolution, since the divergence of A. gambiae and Drosophila melanogaster
In Anopheles gambiae, sex-regulated genes are responsible for controlling gender dimorphism and are ...
Understanding how phenotypic differences between males and females arise from the sex-biased express...
Understanding how phenotypic differences between males and females arise from the sex-biased express...
Gene expression is known to vary extensively among tissues and between sexes. However, detailed desc...
Gene expression is known to vary extensively among tissues and between sexes. However, detailed desc...
Gene expression is known to vary extensively among tissues and between sexes. However, detailed desc...
Gene expression is known to vary extensively among tissues and between sexes. However, detailed desc...
BACKGROUND: The mosquito, Anopheles gambiae, is the primary vector of human malaria, a disease respo...
Background: The mosquito, Anopheles gambiae, is the primary vector of human malaria, a disease respo...
The African mosquito Anopheles gambiae is the major vector of human malaria. We report a genome-wide...
With their genome sequenced, Anopheles gambiae mosquitoes now serve as a powerful tool for basic res...
Understanding how phenotypic differences between males and females arise from the sex-biased express...
Understanding how phenotypic differences between males and females arise from the sex-biased express...
Research on gene expression in mosquitoes is motivated by both basic and applied interests. Studies ...
In Anopheles gambiae, sex-regulated genes are responsible for controlling gender dimorphism and are ...
In Anopheles gambiae, sex-regulated genes are responsible for controlling gender dimorphism and are ...
Understanding how phenotypic differences between males and females arise from the sex-biased express...
Understanding how phenotypic differences between males and females arise from the sex-biased express...
Gene expression is known to vary extensively among tissues and between sexes. However, detailed desc...
Gene expression is known to vary extensively among tissues and between sexes. However, detailed desc...
Gene expression is known to vary extensively among tissues and between sexes. However, detailed desc...
Gene expression is known to vary extensively among tissues and between sexes. However, detailed desc...
BACKGROUND: The mosquito, Anopheles gambiae, is the primary vector of human malaria, a disease respo...
Background: The mosquito, Anopheles gambiae, is the primary vector of human malaria, a disease respo...
The African mosquito Anopheles gambiae is the major vector of human malaria. We report a genome-wide...
With their genome sequenced, Anopheles gambiae mosquitoes now serve as a powerful tool for basic res...
Understanding how phenotypic differences between males and females arise from the sex-biased express...
Understanding how phenotypic differences between males and females arise from the sex-biased express...
Research on gene expression in mosquitoes is motivated by both basic and applied interests. Studies ...
In Anopheles gambiae, sex-regulated genes are responsible for controlling gender dimorphism and are ...
In Anopheles gambiae, sex-regulated genes are responsible for controlling gender dimorphism and are ...
Understanding how phenotypic differences between males and females arise from the sex-biased express...
Understanding how phenotypic differences between males and females arise from the sex-biased express...