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RSS FeedsIJMS, Vol. 21, Pages 1342: Genomic Prediction for Grain Yield and Yield-Related Traits in Chinese Winter Wheat (International Journal of Molecular Sciences)

 
 

18 february 2020 03:02:53

 
IJMS, Vol. 21, Pages 1342: Genomic Prediction for Grain Yield and Yield-Related Traits in Chinese Winter Wheat (International Journal of Molecular Sciences)
 


Genomic selection (GS) is a strategy to predict the genetic merits of individuals using genome-wide markers. However, GS prediction accuracy is affected by many factors, including missing rate and minor allele frequency (MAF) of genotypic data, GS models, trait features, etc. In this study, we used one wheat population to investigate prediction accuracies of various GS models on yield and yield-related traits from various quality control (QC) scenarios, missing genotype imputation, and genome-wide association studies (GWAS)-derived markers. Missing rate and MAF of single nucleotide polymorphism (SNP) markers were two major factors in QC. Five missing rate levels (0%, 20%, 40%, 60%, and 80%) and three MAF levels (0%, 5%, and 10%) were considered and the five-fold cross validation was used to estimate the prediction accuracy. The results indicated that a moderate missing rate level (20% to 40%) and MAF (5%) threshold provided better prediction accuracy. Under this QC scenario, prediction accuracies were further calculated for imputed and GWAS-derived markers. It was observed that the accuracies of the six traits were related to their heritability and genetic architecture, as well as the GS prediction model. Moore–Penrose generalized inverse (GenInv), ridge regression (RidgeReg), and random forest (RForest) resulted in higher prediction accuracies than other GS models across traits. Imputation of missing genotypic data had marginal effect on prediction accuracy, while GWAS-derived markers improved the prediction accuracy in most cases. These results demonstrate that QC on missing rate and MAF had positive impact on the predictability of GS models. We failed to identify one single combination of QC scenarios that could outperform the others for all traits and GS models. However, the balance between marker number and marker quality is important for the deployment of GS in wheat breeding. GWAS is able to select markers which are mostly related to traits, and therefore can be used to improve the prediction accuracy of GS.


 
163 viewsCategory: Biochemistry, Biophysics, Molecular Biology
 
IJMS, Vol. 21, Pages 1343: Fluorescent Analogues of Human ?-Calcitonin Gene-Related Peptide with Potent Vasodilator Activity (International Journal of Molecular Sciences)
IJMS, Vol. 21, Pages 1334: Gain-of-Function Mutations in p53 in Cancer Invasiveness and Metastasis (International Journal of Molecular Sciences)
 
 
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