Application of molecular tools for study of the phytogeny of diploid and polyploid taxa in Triticeae
Jan Dvořák, H.-B. ZHANG
Abstract
Jan Dvořák, H.-B. ZHANG
Abstract
In addition to morphological variation, molecular tools such as allozyme variation and variation in chloroplast DNA, 2D-protein patterns, 5S and 18-26S rRNA gene and spacer nucleotide sequences, and variation in repeated nucleotide sequences, were recently employed in phylogenetic studies in Triticeae with a variable success. The latter tool was successfully used to reconstruct the phytogeny of the diploid species in the genus Tritkum L. In parallel, a technique for the investigation of the phytogeny of polyploid plants, based on the variation in repeated nucleotide sequences, was developed. An example of its use is discussed in the context of the classification of Triticeae.
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In addition to morphological variation, molecular tools such as allozyme variation and variation in chloroplast DNA, 2D-protein patterns, 5S and 18-26S rRNA gene and spacer nucleotide sequences, and variation in repeated nucleotide sequences, were recently employed in phylogenetic studies in Triticeae with a variable success. The latter tool was successfully used to reconstruct the phytogeny of the diploid species in the genus Tritkum L. In parallel, a technique for the investigation of the phytogeny of polyploid plants, based on the variation in repeated nucleotide sequences, was developed. An example of its use is discussed in the context of the classification of Triticeae.
Key concepts: Triticeae, Polyploid, Biology, Ploidy, Phylogenetic tree, Evolutionary biology, Context (archaeology), Taxon