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Genomic selection in western redcedar: from proof of concept to operational application.

Authors :
Gamal El‐Dien, Omnia
Shalev, Tal J.
Yuen, Macaire M. S.
Van der Merwe, Lise
Kirst, Matias
Yanchuk, Alvin D.
Ritland, Carol
Russell, John H.
Bohlmann, Joerg
Source :
New Phytologist. Oct2024, Vol. 244 Issue 2, p588-602. 15p.
Publication Year :
2024

Abstract

Summary: Forests face many threats. While traditional breeding may be too slow to deliver well‐adapted trees, genomic selection (GS) can accelerate the process. We describe a comprehensive study of GS from proof of concept to operational application in western redcedar (WRC, Thuja plicata).Using genomic data, we developed models on a training population (TrP) of trees to predict breeding values (BVs) in a target seedling population (TaP) for growth, heartwood chemistry, and foliar chemistry traits. We used cross‐validation to assess prediction accuracy (PACC) in the TrP; we also validated models for early‐expressed foliar traits in the TaP.Prediction accuracy was high across generations, environments, and ages. PACC was not reduced to zero among unrelated individuals in TrP and was only slightly reduced in the TaP, confirming strong linkage disequilibrium and the ability of the model to generate accurate predictions across breeding generations. Genomic BV predictions were correlated with those from pedigree but displayed a wider range of within‐family variation due to the ability of GS to capture the Mendelian sampling term.Using predicted TaP BVs in multi‐trait selection, we functionally implemented and integrated GS into an operational tree‐breeding program. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0028646X
Volume :
244
Issue :
2
Database :
Academic Search Index
Journal :
New Phytologist
Publication Type :
Academic Journal
Accession number :
180376199
Full Text :
https://doi.org/10.1111/nph.20022