Polyploidization is a major evolutionary process. Approximately 70-75% species of Triticeae (Poaceae) are polyploids, involving 23 genomes. To investigate intergenomic rearrangements after polyploidization of Triticeae species and to determine the effects of environmental factors on them, nine populations of a typical polyploid Triticeae species, Kengyilia thoroldiana (Keng) J.L.Yang et al. (2n = 6x = 42, StStPPYY), collected from different environments, were studied using genome in situ hybridization (GISH). We found that intergenomic rearrangements occurred between the relatively large P genome and the small genomes, St (8.15%) and Y (22.22%), in polyploid species via various types of translocations compared to their diploid progenitors. ...
Polyploidy (whole-genome duplication) has played a pervasive role in the evolution of fungi and anim...
Genome evolution: Complex interactions in the composites Two drivers of plant speciation – hybridiza...
Plant speciation and diversification strongly rely on structural changes in the nuclear genome, both...
<div><p>The level and pattern of nucleotide variation in duplicate gene provide important informatio...
The level and pattern of nucleotide variation in duplicate gene provide important information on the...
Polyploidy, frequently termed "whole genome duplication", is a major force in the evolution of many ...
Kengyilia is a group of allohexaploid species that arose from two hybridization events followed by g...
Polyploidy, or the presence of two or more diploid parental genome sets within an organism, is found...
Background Polyploidy or whole-genome duplication is now recognized as being present in almost all l...
Single-nucleotide polymorphism was used in the construction of an expressed sequence tag map of Aegi...
Polyploidization is a major evolutionary process in plants where hybridization and chromosome doubli...
Polyploidization is a key mechanism of rapid speciation, with many phenotypic consequences which ext...
The 120-bp repetitive sequence family, a widespread and old component of Triticeae genomes, has been...
ReviewPolyploidization is one of the major driving forces in plant evolution and is extremely releva...
Background. Polyploidization is a major evolutionary process in plants where hybridization and chrom...
Polyploidy (whole-genome duplication) has played a pervasive role in the evolution of fungi and anim...
Genome evolution: Complex interactions in the composites Two drivers of plant speciation – hybridiza...
Plant speciation and diversification strongly rely on structural changes in the nuclear genome, both...
<div><p>The level and pattern of nucleotide variation in duplicate gene provide important informatio...
The level and pattern of nucleotide variation in duplicate gene provide important information on the...
Polyploidy, frequently termed "whole genome duplication", is a major force in the evolution of many ...
Kengyilia is a group of allohexaploid species that arose from two hybridization events followed by g...
Polyploidy, or the presence of two or more diploid parental genome sets within an organism, is found...
Background Polyploidy or whole-genome duplication is now recognized as being present in almost all l...
Single-nucleotide polymorphism was used in the construction of an expressed sequence tag map of Aegi...
Polyploidization is a major evolutionary process in plants where hybridization and chromosome doubli...
Polyploidization is a key mechanism of rapid speciation, with many phenotypic consequences which ext...
The 120-bp repetitive sequence family, a widespread and old component of Triticeae genomes, has been...
ReviewPolyploidization is one of the major driving forces in plant evolution and is extremely releva...
Background. Polyploidization is a major evolutionary process in plants where hybridization and chrom...
Polyploidy (whole-genome duplication) has played a pervasive role in the evolution of fungi and anim...
Genome evolution: Complex interactions in the composites Two drivers of plant speciation – hybridiza...
Plant speciation and diversification strongly rely on structural changes in the nuclear genome, both...