A set of over 8000 Diversity Arrays Technology (DArT) markers was tested for its utility in high-resolution population and phylogenetic studies across a range of Eucalyptus taxa. Small-scale population studies of Eucalyptus camaldulensis, Eucalyptus cladocalyx, Eucalyptus globulus, Eucalyptus grandis, Eucalyptus nitens, Eucalyptus pilularis and Eucalyptus urophylla demonstrated the potential of genome-wide genotyping with DArT markers to differentiate species, to identify interspecific hybrids and to resolve biogeographic disjunctions within species. The population genetic studies resolved geographically partitioned clusters in E. camaldulensis, E. cladocalyx, E. globulus and E. urophylla that were congruent with previous molecular studies....
Background: Genetic linkage maps are invaluable resources in plant research. They provide a key tool...
Genetic linkage maps have been essential tools to examine the inheritance of qualitative and quantit...
Understanding genome differentiation is important to compare and transfer genomic information betwe...
A set of over 8000 Diversity Arrays Technology (DArT) markers developed for genomic studies of Eucal...
A set of over 8000 Diversity Arrays Technology (DArT) markers was tested for its utility in high-res...
Eucalyptus L’Herit. is a large economically and ecologically important genus of over 700 species, en...
Eucalyptus L’Herit. is a large economically and ecologically important genus of over 700 species, en...
Background A number of molecular marker technologies have allowed important advances in the underst...
A number of molecular marker technologies have allowed important advances in the understanding of th...
This thesis reports on genomic studies conducted in five of the most commercially important species ...
In spite of the recent advances in the theory and practice of association genetics in forest trees, ...
Diversity Arrays Technology (DArT) provides a robust, high throughput, cost-effective method to quer...
Diversity Arrays Technology (DArT) could provide a low cost, high-throughput genotyping tool for euc...
<div><p>Diversity Arrays Technology (DArT) provides a robust, high throughput, cost-effective method...
The eucalypt species Eucalyptus marginata which is harvested for high quality timber comprises three...
Background: Genetic linkage maps are invaluable resources in plant research. They provide a key tool...
Genetic linkage maps have been essential tools to examine the inheritance of qualitative and quantit...
Understanding genome differentiation is important to compare and transfer genomic information betwe...
A set of over 8000 Diversity Arrays Technology (DArT) markers developed for genomic studies of Eucal...
A set of over 8000 Diversity Arrays Technology (DArT) markers was tested for its utility in high-res...
Eucalyptus L’Herit. is a large economically and ecologically important genus of over 700 species, en...
Eucalyptus L’Herit. is a large economically and ecologically important genus of over 700 species, en...
Background A number of molecular marker technologies have allowed important advances in the underst...
A number of molecular marker technologies have allowed important advances in the understanding of th...
This thesis reports on genomic studies conducted in five of the most commercially important species ...
In spite of the recent advances in the theory and practice of association genetics in forest trees, ...
Diversity Arrays Technology (DArT) provides a robust, high throughput, cost-effective method to quer...
Diversity Arrays Technology (DArT) could provide a low cost, high-throughput genotyping tool for euc...
<div><p>Diversity Arrays Technology (DArT) provides a robust, high throughput, cost-effective method...
The eucalypt species Eucalyptus marginata which is harvested for high quality timber comprises three...
Background: Genetic linkage maps are invaluable resources in plant research. They provide a key tool...
Genetic linkage maps have been essential tools to examine the inheritance of qualitative and quantit...
Understanding genome differentiation is important to compare and transfer genomic information betwe...