BACKGROUND: Polyploidy is important from a phylogenetic perspective because of its immense past impact on evolution and its potential future impact on diversification, survival and adaptation, especially in plants. Molecular population genetics studies of polyploid organisms have been difficult because of problems in sequencing multiple-copy nuclear genes using Sanger sequencing. This paper describes a method for sequencing a barcoded mixture of targeted gene regions using next-generation sequencing methods to overcome these problems. RESULTS: Using 64 3-bp barcodes, we successfully sequenced three chloroplast and two nuclear gene regions (each of which contained two gene copies with up to two alleles per individual) in a total of 60 indivi...
Polyploidy or duplication of an entire genome occurs in the majority of angiosperms. The understandi...
Many of our most important crop species are polyploid – an unusual phenomenon whereby each chromosom...
Grasslands are widespread and economically relevant ecosystems at the basis of sustainable roughage ...
Premise of the study: Polyploidy is common in the grasses and low-copy nuclear loci are needed to fu...
Polyploidy plays an important role in the evolution of eukaryotes, especially for flower-ing plants....
Polyploidy is a very common phenomenon in the plant kingdom, where even diploid species are often de...
Most plant species are known to be either ancient or recent polyploids, containing more than one gen...
The genus Poa comprises approximately 500 species that occur throughout the world, including the wid...
Difficulties in generating nuclear data for polyploids have impeded phylogenetic study of these grou...
Polyploidy poses challenges for phylogenetic reconstruction because of the need to identify and dist...
Polyploidy poses challenges for phylogenetic reconstruction because of the need to identify and dist...
Polyploidy poses challenges for phylogenetic reconstruction because of the need to identify and dist...
Polyploidization is an important speciation mechanism in the barley genus Hordeum. To analyze evolut...
Rapid and economical genotyping tools that can reliably distinguish species and intraspecific variat...
Polyploidy or duplication of an entire genome occurs in the majority of angiosperms. The understandi...
Many of our most important crop species are polyploid – an unusual phenomenon whereby each chromosom...
Grasslands are widespread and economically relevant ecosystems at the basis of sustainable roughage ...
Premise of the study: Polyploidy is common in the grasses and low-copy nuclear loci are needed to fu...
Polyploidy plays an important role in the evolution of eukaryotes, especially for flower-ing plants....
Polyploidy is a very common phenomenon in the plant kingdom, where even diploid species are often de...
Most plant species are known to be either ancient or recent polyploids, containing more than one gen...
The genus Poa comprises approximately 500 species that occur throughout the world, including the wid...
Difficulties in generating nuclear data for polyploids have impeded phylogenetic study of these grou...
Polyploidy poses challenges for phylogenetic reconstruction because of the need to identify and dist...
Polyploidy poses challenges for phylogenetic reconstruction because of the need to identify and dist...
Polyploidy poses challenges for phylogenetic reconstruction because of the need to identify and dist...
Polyploidization is an important speciation mechanism in the barley genus Hordeum. To analyze evolut...
Rapid and economical genotyping tools that can reliably distinguish species and intraspecific variat...
Polyploidy or duplication of an entire genome occurs in the majority of angiosperms. The understandi...
Many of our most important crop species are polyploid – an unusual phenomenon whereby each chromosom...
Grasslands are widespread and economically relevant ecosystems at the basis of sustainable roughage ...