Recent analyses of complete genome sequences have revealed that many genomes have been duplicated in their evolutionary past. Such events have been associated with important biological transitions, major leaps in evolution and adaptive radiations of species. Here, we consider recently developed computational methods to detect such ancient large-scale gene duplication events. Several new approaches have been used to show that large-scale gene duplications are more common than previously thought
Recent analysis of complete eukaryotic genome sequences has revealed that gene duplication has been ...
Genomic evolution is a continuous process that involves the accumulation of neutral and adaptive var...
Evolution proceeds via gene duplication and modification; it is through their successive application...
Recent analyses of complete genome sequences have revealed that many genomes have been duplicated in...
Duplications of genetic elements can occur by a variety of mechanisms and at different chromosomal a...
Background: Genes located in the same chromosome region share common evolutionary events more often ...
New genes arise through duplication and modification of DNA sequences on a range of scales: single g...
Recent analysis of complete eukaryotic genome sequences has revealed that gene duplication has been ...
BACKGROUND: Genes located in the same chromosome region share common evolutionary events more often ...
Recent analysis of complete eukaryotic genome sequences has revealed that gene duplication has been ...
Gene duplication is an important evolutionary mechanism allowing to provide new genetic material and...
Gene duplication and large-scale segmental duplication of genome including whole-genome duplication ...
Motivation: It has been argued that whole-genome duplication (WGD) exerted a profound influence on t...
Background Genes located in the same chromosome region share common evolutionary events more often t...
Genomic evolution is a continuous process that involves the accumulation of neutral and adaptive var...
Recent analysis of complete eukaryotic genome sequences has revealed that gene duplication has been ...
Genomic evolution is a continuous process that involves the accumulation of neutral and adaptive var...
Evolution proceeds via gene duplication and modification; it is through their successive application...
Recent analyses of complete genome sequences have revealed that many genomes have been duplicated in...
Duplications of genetic elements can occur by a variety of mechanisms and at different chromosomal a...
Background: Genes located in the same chromosome region share common evolutionary events more often ...
New genes arise through duplication and modification of DNA sequences on a range of scales: single g...
Recent analysis of complete eukaryotic genome sequences has revealed that gene duplication has been ...
BACKGROUND: Genes located in the same chromosome region share common evolutionary events more often ...
Recent analysis of complete eukaryotic genome sequences has revealed that gene duplication has been ...
Gene duplication is an important evolutionary mechanism allowing to provide new genetic material and...
Gene duplication and large-scale segmental duplication of genome including whole-genome duplication ...
Motivation: It has been argued that whole-genome duplication (WGD) exerted a profound influence on t...
Background Genes located in the same chromosome region share common evolutionary events more often t...
Genomic evolution is a continuous process that involves the accumulation of neutral and adaptive var...
Recent analysis of complete eukaryotic genome sequences has revealed that gene duplication has been ...
Genomic evolution is a continuous process that involves the accumulation of neutral and adaptive var...
Evolution proceeds via gene duplication and modification; it is through their successive application...