Background: Genomic selection (GS) or genomic prediction is considered as a promising approach to accelerate tree breeding and increase genetic gain by shortening breeding cycle, but the efforts to develop routines for operational breeding are so far limited. We investigated the predictive ability (PA) of GS based on 484 progeny trees from 62 half-sib families in Norway spruce (Picea abies (L.) Karst.) for wood density, modulus of elasticity (MOE) and microfibril angle (MFA) measured with SilviScan, as well as for measurements on standing trees by Pilodyn and Hitman instruments. Results: GS predictive abilities were comparable with those based on pedigree-based prediction. Marker-based PAs were generally 25-30% higher for traits density, MF...
Background: Genomic selection (GS) in forestry can substantially reduce the length ...
We investigated the influence of cambial age on correlations between different wood traits and the p...
We investigated the influence of cambial age on correlations between different wood traits and the p...
Background: Genomic selection (GS) or genomic prediction is considered as a promising approach to ac...
Background: Genomic selection (GS) or genomic prediction is considered as a promising approach to ac...
Background: Genomic selection (GS) or genomic prediction is considered as a promising approach to ac...
Background: Genomic selection (GS) or genomic prediction is considered as a promising approach to ac...
Background: Genomic selection (GS) or genomic prediction is considered as a promising approach to ac...
Background: Genomic selection (GS) or genomic prediction is considered as a promising approach to ac...
Background: Genomic selection (GS) uses information from genomic signatures consist...
Background: Genomic selection (GS) uses information from genomic signatures consist...
Abstract Background Genomic selection (GS) uses information from genomic signatures consisting of th...
Abstract Background Genomic selection (GS) can increase genetic gain by reducing the length of breed...
Conventional tree breeding productivity (especially in conifers) is primarily constrained by late ex...
Background: Genomic selection (GS) in forestry can substantially reduce the length ...
Background: Genomic selection (GS) in forestry can substantially reduce the length ...
We investigated the influence of cambial age on correlations between different wood traits and the p...
We investigated the influence of cambial age on correlations between different wood traits and the p...
Background: Genomic selection (GS) or genomic prediction is considered as a promising approach to ac...
Background: Genomic selection (GS) or genomic prediction is considered as a promising approach to ac...
Background: Genomic selection (GS) or genomic prediction is considered as a promising approach to ac...
Background: Genomic selection (GS) or genomic prediction is considered as a promising approach to ac...
Background: Genomic selection (GS) or genomic prediction is considered as a promising approach to ac...
Background: Genomic selection (GS) or genomic prediction is considered as a promising approach to ac...
Background: Genomic selection (GS) uses information from genomic signatures consist...
Background: Genomic selection (GS) uses information from genomic signatures consist...
Abstract Background Genomic selection (GS) uses information from genomic signatures consisting of th...
Abstract Background Genomic selection (GS) can increase genetic gain by reducing the length of breed...
Conventional tree breeding productivity (especially in conifers) is primarily constrained by late ex...
Background: Genomic selection (GS) in forestry can substantially reduce the length ...
Background: Genomic selection (GS) in forestry can substantially reduce the length ...
We investigated the influence of cambial age on correlations between different wood traits and the p...
We investigated the influence of cambial age on correlations between different wood traits and the p...