Despite the ecological and economic importance of lignin and other wood chemical components, there are few studies of the natural genetic variation that exists within plant species and its adaptive significance. We used models developed from near infra-red spectroscopy to study natural genetic variation in lignin content and monomer composition (syringyl-to-guaiacyl ratio [S/G]) as well as cellulose and extractives content, using a 16-year-old field trial of an Australian tree species, Eucalyptus globulus. We sampled 2163 progenies of 467 native trees from throughout the native geographic range of the species. The narrow-sense heritability of wood chemical traits (0.25–0.44) was higher than that of growth (0.15), but less than wood d...
Inclusion of wood quality traits in Eucalyptus selection and breeding strategies is becoming an impo...
Abstract – Eucalyptus globulus is grown in temperate regions of the world for pulp production. The c...
Wood plays a major role in land ecosystems and in human activity. Better understanding the genetic b...
Despite the ecological and economic importance of lignin and other wood chemical components, there ...
Despite the ecological and economic importance of lignin and other wood chemical components, there ...
Eucalyptus globulus is grown in temperate regions throughout the world predominantly for the produc...
Eucalyptus globulus is grown in temperate regions throughout the world predominantly for the produc...
Eucalyptus globulus (Myrtaceae) is a forest tree species that is native to South-eastern Australia, ...
This thesis comprises quantitative genetic studies of chemical and physical wood properties of the t...
Eucalyptus globulus (Myrtaceae) is a forest tree species that is native to South-eastern Australia, ...
This thesis comprises quantitative genetic studies of chemical and physical wood properties of the t...
Eucalyptus globulus is grown in temperate regions of the world for pulp production. The chemical com...
Eucalyptus globulus is grown in temperate regions of the world for pulp production. The chemical com...
Eucalyptus globulus is grown in temperate regions of the world for pulp production. The chemical an...
This study considered the degree of genetic variation for diameter (DBH), basic density (BD), predic...
Inclusion of wood quality traits in Eucalyptus selection and breeding strategies is becoming an impo...
Abstract – Eucalyptus globulus is grown in temperate regions of the world for pulp production. The c...
Wood plays a major role in land ecosystems and in human activity. Better understanding the genetic b...
Despite the ecological and economic importance of lignin and other wood chemical components, there ...
Despite the ecological and economic importance of lignin and other wood chemical components, there ...
Eucalyptus globulus is grown in temperate regions throughout the world predominantly for the produc...
Eucalyptus globulus is grown in temperate regions throughout the world predominantly for the produc...
Eucalyptus globulus (Myrtaceae) is a forest tree species that is native to South-eastern Australia, ...
This thesis comprises quantitative genetic studies of chemical and physical wood properties of the t...
Eucalyptus globulus (Myrtaceae) is a forest tree species that is native to South-eastern Australia, ...
This thesis comprises quantitative genetic studies of chemical and physical wood properties of the t...
Eucalyptus globulus is grown in temperate regions of the world for pulp production. The chemical com...
Eucalyptus globulus is grown in temperate regions of the world for pulp production. The chemical com...
Eucalyptus globulus is grown in temperate regions of the world for pulp production. The chemical an...
This study considered the degree of genetic variation for diameter (DBH), basic density (BD), predic...
Inclusion of wood quality traits in Eucalyptus selection and breeding strategies is becoming an impo...
Abstract – Eucalyptus globulus is grown in temperate regions of the world for pulp production. The c...
Wood plays a major role in land ecosystems and in human activity. Better understanding the genetic b...