The horse reference genome assemblies, EquCab2.0 and EquCab3.0, have enabled great advancements in the equine genomics field, from tools to novel discoveries. However, significant gaps of knowledge regarding genome function remain, hindering the study of complex traits in horses. In an effort to address these gaps and with inspiration from the Encyclopedia of DNA Elements (ENCODE) project, the equine Functional Annotation of Animal Genome (FAANG) initiative was proposed to bridge the gap between genome and gene expression, providing further insights into functional regulation within the horse genome. Three years after launching the initiative, the equine FAANG group has generated data from more than 400 experiments using over 50 tissues, ta...
The Functional Annotation of Animal Genomes (FAANG) project aims to identify genomic regulatory elem...
Current gene annotation of the horse genome is largely derived from in silico predictions and cross-...
Recent advances in genomic sequencing technology and computational assembly methods have allowed sci...
The horse reference genome assemblies, EquCab2.0 and EquCab3.0, have enabled great advancements in t...
The horse reference genome assemblies, EquCab2.0 and EquCab3.0, have enabled great advancements in t...
The horse reference genome assemblies, EquCab2.0 and EquCab3.0, have enabled great advancements in t...
The horse reference genome assemblies, EquCab2.0 and EquCab3.0, have enabled great advancements in t...
The horse reference genome assemblies, EquCab2.0 and EquCab3.0, have enabled great advancements in t...
The horse reference genome assemblies, EquCab2.0 and EquCab3.0, have enabled great advancements in t...
The genomic sequence of the horse has been available since 2009, providing critical resources for di...
The genomic sequence of the horse has been available since 2009, providing critical resources for di...
The genomic sequence of the horse has been available since 2009, providing critical resources for di...
The Functional Annotation of Animal Genomes (FAANG) project aims to identify genomic regulatory elem...
The Functional Annotation of Animal Genomes (FAANG) project aims to identify genomic regulatory elem...
Current gene annotation of the horse genome is largely derived from in silico predictions and cross-...
The Functional Annotation of Animal Genomes (FAANG) project aims to identify genomic regulatory elem...
Current gene annotation of the horse genome is largely derived from in silico predictions and cross-...
Recent advances in genomic sequencing technology and computational assembly methods have allowed sci...
The horse reference genome assemblies, EquCab2.0 and EquCab3.0, have enabled great advancements in t...
The horse reference genome assemblies, EquCab2.0 and EquCab3.0, have enabled great advancements in t...
The horse reference genome assemblies, EquCab2.0 and EquCab3.0, have enabled great advancements in t...
The horse reference genome assemblies, EquCab2.0 and EquCab3.0, have enabled great advancements in t...
The horse reference genome assemblies, EquCab2.0 and EquCab3.0, have enabled great advancements in t...
The horse reference genome assemblies, EquCab2.0 and EquCab3.0, have enabled great advancements in t...
The genomic sequence of the horse has been available since 2009, providing critical resources for di...
The genomic sequence of the horse has been available since 2009, providing critical resources for di...
The genomic sequence of the horse has been available since 2009, providing critical resources for di...
The Functional Annotation of Animal Genomes (FAANG) project aims to identify genomic regulatory elem...
The Functional Annotation of Animal Genomes (FAANG) project aims to identify genomic regulatory elem...
Current gene annotation of the horse genome is largely derived from in silico predictions and cross-...
The Functional Annotation of Animal Genomes (FAANG) project aims to identify genomic regulatory elem...
Current gene annotation of the horse genome is largely derived from in silico predictions and cross-...
Recent advances in genomic sequencing technology and computational assembly methods have allowed sci...