In contrast to S. cerevisiae and C. elegans, analyses based on the current knockout (KO) mouse phenotypes led to the conclusion that duplicate genes had almost no role in mouse genetic robustness. It has been suggested that the bias of mouse KO database toward ancient duplicates may possibly cause this knockout duplicate puzzle, that is, a very similar proportion of essential genes (PE) between duplicate genes and singletons. In this paper, we conducted an extensive and careful analysis for the mouse KO phenotype data and corroborated a strong effect of duplicate genes on mouse genetics robustness. Moreover, the effect of duplicate genes on mouse genetic robustness is duplication-age dependent, which holds after ruling out the potential con...
Understanding how genetic variation affects organism phenotype and fitness is a fundamental question...
When a duplicate gene has no apparent loss-of-function phenotype, it is commonly considered that the...
Genomic evolution is a continuous process that involves the accumulation of neutral and adaptive var...
Recently duplicated genes are believed to often overlap in function and expression. A priori, they a...
Gene duplication is one of the major driving forces shaping genome and organism evolution and though...
Abstract Background The high quality of the mouse gen...
ABSTRACT Gene duplications are a major source of evolutionary innovations. Understanding the functio...
<p>Compared with non-disease genes (NDs), disease genes tend to have lower dN values with their mous...
A central goal in genome biology is to understand the origin and maintenance of genic diversity. Ove...
Since Susumu Ohno’s seminal work in 1970, gene duplication has been widely recognized as the origin ...
Gene duplication and loss are major sources of genetic polymorphism in populations, and are importan...
Gene duplication is widely regarded as a major mechanism modeling genome evolution and function. How...
International audienceBackground: Array comparative genomic hybridization (aCGH) to detect copy numb...
absence of phenotypes in mice deficient for a duplicate gene should not be automatically attributed ...
Gene duplication is a major mechanism for molecular evolutionary innovation. Young gene duplicates t...
Understanding how genetic variation affects organism phenotype and fitness is a fundamental question...
When a duplicate gene has no apparent loss-of-function phenotype, it is commonly considered that the...
Genomic evolution is a continuous process that involves the accumulation of neutral and adaptive var...
Recently duplicated genes are believed to often overlap in function and expression. A priori, they a...
Gene duplication is one of the major driving forces shaping genome and organism evolution and though...
Abstract Background The high quality of the mouse gen...
ABSTRACT Gene duplications are a major source of evolutionary innovations. Understanding the functio...
<p>Compared with non-disease genes (NDs), disease genes tend to have lower dN values with their mous...
A central goal in genome biology is to understand the origin and maintenance of genic diversity. Ove...
Since Susumu Ohno’s seminal work in 1970, gene duplication has been widely recognized as the origin ...
Gene duplication and loss are major sources of genetic polymorphism in populations, and are importan...
Gene duplication is widely regarded as a major mechanism modeling genome evolution and function. How...
International audienceBackground: Array comparative genomic hybridization (aCGH) to detect copy numb...
absence of phenotypes in mice deficient for a duplicate gene should not be automatically attributed ...
Gene duplication is a major mechanism for molecular evolutionary innovation. Young gene duplicates t...
Understanding how genetic variation affects organism phenotype and fitness is a fundamental question...
When a duplicate gene has no apparent loss-of-function phenotype, it is commonly considered that the...
Genomic evolution is a continuous process that involves the accumulation of neutral and adaptive var...