Flowering plants, or angiosperms, consist of more than 300,000 species, far more than any other land plant lineages. The accumulated evidence indicates that multiple ancient polyploidy events occurred around 100 to 120 million years ago during the Cretaceous and drove the early diversification of four major clades of angiosperms:gammawhole-genome triplication in the common ancestor of core eudicots,tauwhole-genome duplication during the early diversification of monocots,lambdawhole-genome duplication during the early diversification of magnoliids, andpiwhole-genome duplication in the Nymphaeales lineage. These four polyploidy events have played essential roles in the adaptive evolution and diversification of major clades of flowering plants...
Fifteen years into sequencing entire plant genomes, more than 30 paleopolyploidy events could be map...
Understanding the process of evolution is crucial in biology because the diversity of life on earth ...
Understanding the process of evolution is crucial in biology because the diversity of life on earth ...
Ancient whole-genome duplications (WGDs or polyploidy) are prevalent in plants, and some WGDs occurr...
Ancient whole genome duplications (WGDs), also referred to as paleopolyploidizations, have been repo...
Ancient whole genome duplications (WGDs), also referred to as paleopolyploidizations, have been repo...
Despite intensive research, little is known about the origin of the angiosperms and their rise to ec...
Despite intensive research, little is known about the origin of the angiosperms and their rise to ec...
Most flowering plants have been shown to be ancient polyploids that have undergone one or more whole...
Most flowering plants have been shown to be ancient polyploids that have undergone one or more whole...
Ancient whole-genome duplications (WGDs), also referred to as paleopolyploidizations, have been repo...
Genome sequencing has demonstrated that besides frequent small-scale duplications, large-scale dupli...
Whole-genome duplication (WGD), or polyploidy, followed by gene loss and diploidization has long bee...
Ancient whole-genome duplications (WGDs), also referred to as paleopolyploidizations, have been repo...
Whole-genome duplication (WGD), or polyploidy, followed by gene loss and diploidization has long bee...
Fifteen years into sequencing entire plant genomes, more than 30 paleopolyploidy events could be map...
Understanding the process of evolution is crucial in biology because the diversity of life on earth ...
Understanding the process of evolution is crucial in biology because the diversity of life on earth ...
Ancient whole-genome duplications (WGDs or polyploidy) are prevalent in plants, and some WGDs occurr...
Ancient whole genome duplications (WGDs), also referred to as paleopolyploidizations, have been repo...
Ancient whole genome duplications (WGDs), also referred to as paleopolyploidizations, have been repo...
Despite intensive research, little is known about the origin of the angiosperms and their rise to ec...
Despite intensive research, little is known about the origin of the angiosperms and their rise to ec...
Most flowering plants have been shown to be ancient polyploids that have undergone one or more whole...
Most flowering plants have been shown to be ancient polyploids that have undergone one or more whole...
Ancient whole-genome duplications (WGDs), also referred to as paleopolyploidizations, have been repo...
Genome sequencing has demonstrated that besides frequent small-scale duplications, large-scale dupli...
Whole-genome duplication (WGD), or polyploidy, followed by gene loss and diploidization has long bee...
Ancient whole-genome duplications (WGDs), also referred to as paleopolyploidizations, have been repo...
Whole-genome duplication (WGD), or polyploidy, followed by gene loss and diploidization has long bee...
Fifteen years into sequencing entire plant genomes, more than 30 paleopolyploidy events could be map...
Understanding the process of evolution is crucial in biology because the diversity of life on earth ...
Understanding the process of evolution is crucial in biology because the diversity of life on earth ...