Two New Strategies for Detecting and Understanding QTL x Environment Interactions

Gauch, Hugh G., Jr.; Munkvold, Jesse D.; Heffner, Elliot L.; Sorrells, Mark

Abstract

Two new strategies are proposed to improve the detection and understanding of quantitative trait loci (QTL), especially those exhibiting QTL x environment interactions (QEI), in the context of experiments conducted in multiple environments. First, a parsimonious Additive Main effects and Multiplicative Interaction (AMMI) model is applied to the phenotypic data to gain accuracy and thereby to increase the logarithm of odds (LOD) scores for QTL detections. Second, the environments are ordered by AMMI parameters that summarize genotype x environment interaction information to reveal consistent patterns and systematic trends that often have an evident ecological or biological interpretation. The combination of greater accuracy for the phenotypic data and systematic trends for the environments provides for more consistent and understandable QTL results. These new strategies are illustrated with two examples: preharvest sprouting scores of a biparental wheat (Triticum aestivum L.) population from 14 environments spread over 5 yr, and yield for a doubled-haploid barley (Hordeum vulgare L.) population tested in 16 environments. AMMI parameters can also provide successful predictions of entire QTL scans for new environments. The statistical methods developed here are of great generality, applicable across microbial and plant populations grown in multiple environments, and may be adapted to animal and human genetic studies.

Más información

Título según WOS: ID WOS:000285411100012 Not found in local WOS DB
Título de la Revista: CROP SCIENCE
Volumen: 51
Número: 1
Editorial: Wiley
Fecha de publicación: 2011
Página de inicio: 96
Página final: 113
DOI:

10.2135/cropsci2010.04.0206

Notas: ISI