Predicting gene functions by integrating large-scale biological data remains a challenge for systems biology. Here we present a resource for Drosophila melanogaster gene function predictions. We trained function-specific classifiers to optimize the influence of different biological datasets for each functional category. Our model predicted GO terms and KEGG pathway memberships for Drosophila melanogaster genes with high accuracy, as affirmed by cross-validation, supporting literature evidence, and large-scale RNAi screens. The resulting resource of prioritized associations between Drosophila genes and their potential functions offers a guide for experimental investigations
Gene Ontology (GO) is a hierarchical vocabulary for the description of biological functions and loca...
A large number and variety of genome-wide genomics and proteomics datasets are now available for mod...
A large number and variety of genome-wide genomics and proteomics datasets are now available for mod...
Genetic screens are powerful methods for the discovery of gene-phenotype associations. However, a sy...
Accurate gene or protein function prediction is a key challenge in the post-genome era. Most current...
Genetic screens are powerful methods for the discovery of gene–phenotype associations. However, a sy...
Abstract Background While the genomes of hundreds of ...
Abstract Background While the genomes of hundreds of ...
Accurate gene or protein function prediction is a key challenge in the post-genome era. Most current...
Gene function has been a subject of interest but it is far from fully understood. It is known that s...
Understanding how an organism exhibits specific behaviours remains a major and important biological ...
Gaining insights on gene regulation from large-scale functional data sets is a grand challenge in sy...
Understanding how an organism exhibits specific behaviours remains a major and important biological ...
Abstract Background Predictive classification on the base of gene expression profiles appeared recen...
Gene Ontology (GO) is a hierarchical vocabulary for the description of biological functions and loca...
Gene Ontology (GO) is a hierarchical vocabulary for the description of biological functions and loca...
A large number and variety of genome-wide genomics and proteomics datasets are now available for mod...
A large number and variety of genome-wide genomics and proteomics datasets are now available for mod...
Genetic screens are powerful methods for the discovery of gene-phenotype associations. However, a sy...
Accurate gene or protein function prediction is a key challenge in the post-genome era. Most current...
Genetic screens are powerful methods for the discovery of gene–phenotype associations. However, a sy...
Abstract Background While the genomes of hundreds of ...
Abstract Background While the genomes of hundreds of ...
Accurate gene or protein function prediction is a key challenge in the post-genome era. Most current...
Gene function has been a subject of interest but it is far from fully understood. It is known that s...
Understanding how an organism exhibits specific behaviours remains a major and important biological ...
Gaining insights on gene regulation from large-scale functional data sets is a grand challenge in sy...
Understanding how an organism exhibits specific behaviours remains a major and important biological ...
Abstract Background Predictive classification on the base of gene expression profiles appeared recen...
Gene Ontology (GO) is a hierarchical vocabulary for the description of biological functions and loca...
Gene Ontology (GO) is a hierarchical vocabulary for the description of biological functions and loca...
A large number and variety of genome-wide genomics and proteomics datasets are now available for mod...
A large number and variety of genome-wide genomics and proteomics datasets are now available for mod...