Related Experiment Video
Updated: Mar 7, 2026

Genetic Mapping of Thermotolerance Differences Between Species of Saccharomyces Yeast via Genome-Wide Reciprocal Hemizygosity Analysis
Published on: August 12, 2019
Accounting for genetic interactions improves modeling of individual quantitative trait phenotypes in yeast
Simon K G Forsberg1, Joshua S Bloom2,3,4, Meru J Sadhu2,3,4
1Department of Medical Biochemistry and Microbiology, Uppsala University, Uppsala, Sweden.
Abstract:
Experiments in model organisms report abundant genetic interactions underlying biologically important traits, whereas quantitative genetics theory predicts, and data support, the notion that most genetic variance in populations is additive. Here we describe networks of capacitating genetic interactions that contribute to quantitative trait variation in a large yeast intercross population. The additive variance explained by individual loci in a network is highly dependent on the allele frequencies of the interacting loci. Modeling of phenotypes for multilocus genotype classes in the epistatic networks is often improved by accounting for the interactions. We discuss the implications of these results for attempts to dissect genetic architectures and to predict individual phenotypes and long-term responses to selection.
Related Concept Videos
Epistasis Analysis
Multiple Allele Traits
Polygenic Traits
Yeast Signaling
Epistasis
Dihybrid Crosses

