Single-step genomic BLUP enables joint analysis of disconnected breeding programs: an example with Eucalyptus globulus Labill

Author:

Callister Andrew N1ORCID,Bradshaw Ben P2,Elms Stephen3,Gillies Ross A W3,Sasse Joanna M4,Brawner Jeremy T5

Affiliation:

1. Treehouse Forest Research LLC, Check, VA 24072, USA

2. Australian Bluegum Plantations, Albany, WA 6330, Australia

3. HVP Plantations, Churchill, VIC 3842, Australia

4. Sassafras Group Pty Ltd, Yarraville, VIC 3013, Australia

5. Plant Pathology, University of Florida, Gainesville, FL 32611, USA

Abstract

Abstract Single-step GBLUP (HBLUP) efficiently combines genomic, pedigree, and phenotypic information for holistic genetic analyses of disjunct breeding populations. We combined data from two independent multigenerational Eucalyptus globulus breeding populations to provide direct comparisons across the programs and indirect predictions in environments where pedigreed families had not been evaluated. Despite few known pedigree connections between the programs, genomic relationships provided the connectivity required to create a unified relationship matrix, H, which was used to compare pedigree-based and HBLUP models. Stem volume data from 48 sites spread across three regions of southern Australia and wood quality data across 20 sites provided comparisons of model accuracy. Genotyping proved valuable for correcting pedigree errors and HBLUP more precisely defines relationships within and among populations, with relationships among the genotyped individuals used to connect the pedigrees of the two programs. Cryptic relationships among the native range populations provided evidence of population structure and evidence of the origin of landrace populations. HBLUP across programs improved the prediction accuracy of parents and genotyped individuals and enabled breeding value predictions to be directly compared and inferred in regions where little to no testing has been undertaken. The impact of incorporating genetic groups in the estimation of H will further align traditional genetic evaluation pipelines with approaches that incorporate marker-derived relationships into prediction models.

Funder

Forest and Wood Products Australia

Australian Bluegum Plantations

HVP Plantations

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology

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