Transposable elements (TEs) have the potential to create regulatory variation both through disruption of existing DNA regulatory elements and through creation of novel DNA regulatory elements. In a species with a large genome, such as maize, the many TEs interspersed with genes creates opportunities for significant allelic variation due to TE presence/absence polymorphisms among individuals. We used information on putative regulatory elements in combination with knowledge about TE polymorphisms in maize to identify TE insertions that interrupt existing accessible chromatin regions (ACRs) in B73 as well as examples of polymorphic TEs that contain ACRs among four inbred lines of maize including B73, Mo17, W22, and PH207. The TE insertions in ...
Most angiosperm nuclear DNA is repetitive and derived from silenced transposable elements (TEs). TE ...
Mutator-like transposable elements (MULEs) are widespread in plants and were first discovered in mai...
Transposable elements are the major component of the maize genome and presumably highly polymorphic ...
DNA methylation and epigenetic silencing play important roles in the regulation of transposable elem...
DNA methylation and epigenetic silencing play important roles in the regulation of transposable elem...
Transposable elements have long been associated with certain unstable loci in maize and have been in...
Transposable Elements (TEs) are mobile elements that contribute the majority of DNA sequences in the...
Transposable elements (TEs) constitute the majority of flowering plant DNA, reflecting their tremend...
Transposable Elements (TEs) are mobile elements that contribute the majority of DNA sequences in the...
Transposable elements (TEs) constitute the majority of flowering plant DNA, reflecting their tremend...
Abstract Background Maize was originally domesticated in a tropical environment but is now widely cu...
Background: Mobile genetic elements represent a high proportion of the Eukaryote genomes. In maize, ...
Abstract Transposable elements (TEs) account for a large portion of the genome in many eukaryotic sp...
Growing evidence indicates that transposons or transposable elements (TEs)-derived accessible chroma...
Genetic mapping studies on crops suggest that agronomic traits can be controlled by gene–distal inte...
Most angiosperm nuclear DNA is repetitive and derived from silenced transposable elements (TEs). TE ...
Mutator-like transposable elements (MULEs) are widespread in plants and were first discovered in mai...
Transposable elements are the major component of the maize genome and presumably highly polymorphic ...
DNA methylation and epigenetic silencing play important roles in the regulation of transposable elem...
DNA methylation and epigenetic silencing play important roles in the regulation of transposable elem...
Transposable elements have long been associated with certain unstable loci in maize and have been in...
Transposable Elements (TEs) are mobile elements that contribute the majority of DNA sequences in the...
Transposable elements (TEs) constitute the majority of flowering plant DNA, reflecting their tremend...
Transposable Elements (TEs) are mobile elements that contribute the majority of DNA sequences in the...
Transposable elements (TEs) constitute the majority of flowering plant DNA, reflecting their tremend...
Abstract Background Maize was originally domesticated in a tropical environment but is now widely cu...
Background: Mobile genetic elements represent a high proportion of the Eukaryote genomes. In maize, ...
Abstract Transposable elements (TEs) account for a large portion of the genome in many eukaryotic sp...
Growing evidence indicates that transposons or transposable elements (TEs)-derived accessible chroma...
Genetic mapping studies on crops suggest that agronomic traits can be controlled by gene–distal inte...
Most angiosperm nuclear DNA is repetitive and derived from silenced transposable elements (TEs). TE ...
Mutator-like transposable elements (MULEs) are widespread in plants and were first discovered in mai...
Transposable elements are the major component of the maize genome and presumably highly polymorphic ...