Multi-trait Genomic Selection Methods for Crop Improvement.

Abstract:

:Plant breeders make selection decisions based on multiple traits, such as yield, plant height, flowering time, and disease resistance. A commonly used approach in multi-trait genomic selection is index selection, which assigns weights to different traits relative to their economic importance. However, classical index selection only optimizes genetic gain in the next generation, requires some experimentation to find weights that lead to desired outcomes, and has difficulty optimizing nonlinear breeding objectives. Multi-objective optimization has also been used to identify the Pareto frontier of selection decisions, which represents different trade-offs across multiple traits. We propose a new approach, which maximizes certain traits while keeping others within desirable ranges. Optimal selection decisions are made using a new version of the look-ahead selection (LAS) algorithm, which was recently proposed for single-trait genomic selection, and achieved superior performance with respect to other state-of-the-art selection methods. To demonstrate the effectiveness of the new method, a case study is developed using a realistic data set where our method is compared with conventional index selection. Results suggest that the multi-trait LAS is more effective at balancing multiple traits compared with index selection.

journal_name

Genetics

journal_title

Genetics

authors

Moeinizade S,Kusmec A,Hu G,Wang L,Schnable PS

doi

10.1534/genetics.120.303305

subject

Has Abstract

pub_date

2020-08-01 00:00:00

pages

931-945

issue

4

eissn

0016-6731

issn

1943-2631

pii

genetics.120.303305

journal_volume

215

pub_type

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