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Genome-wide prediction methods for detecting genetic effects of donor chromosome segments in introgression populations
Authors:Karen Christin Falke  Gregory S Mahone  Eva Bauer  Grit Haseneyer  Thomas Miedaner  Frank Breuer  Matthias Frisch
Institution:.Institute of Agronomy and Plant Breeding II, Justus Liebig University, 35392 Giessen, Germany ;.Plant Breeding, Technische Universität München, 85354 Freising, Germany ;.State Plant Breeding Institute, Universität Hohenheim, 70593 Stuttgart, Germany ;.Institute for Evolution and Biodiversity, Westfälische Wilhelms-Universität Münster, 48149 Münster, Germany ;.KWS Saat AG, Grimshelstr. 31, 37555 Einbeck, Germany
Abstract:

Background

Introgression populations are used to make the genetic variation of unadapted germplasm or wild relatives of crops available for plant breeding. They consist of introgression lines that carry small chromosome segments from an exotic donor in the genetic background of an elite line. The goal of our study was to investigate the detection of favorable donor chromosome segments in introgression lines with statistical methods developed for genome-wide prediction.

Results

Computer simulations showed that genome-wide prediction employing heteroscedastic marker variances had a greater power and a lower false positive rate compared with homoscedastic marker variances when the phenotypic difference between the donor and recipient lines was controlled by few genes. The simulations helped to interpret the analyses of glycosinolate and linolenic acid content in a rapeseed introgression population and plant height in a rye introgression population. These analyses support the superiority of genome-wide prediction approaches that use heteroscedastic marker variances.

Conclusions

We conclude that genome-wide prediction methods in combination with permutation tests can be employed for analysis of introgression populations. They are particularly useful when introgression lines carry several donor segments or when the donor segments of different introgression lines are overlapping.
Keywords:
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