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Genomic breeding value prediction for simple maize hybrid yield using total effects of associated markers, under different imbalance levels and environments
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Abstract
The main objective of a maize breeding program is to generate
hybrid combinations that are more productive than those pre-existing in the
market. However, the number of parents, and consequently the number
of crosses, increases so rapidly that the phenotypic evaluation of all the
possible combinations becomes economically and technically infeasible. In
this context, predicting the performance of the most promising genotypes
may increase the genetic gains with increased selection intensity and
reduced breeding cycles. Thus, the present study aimed to use the total
effects of associated markers method to predict genomic breeding values
(GBVs) via cross-validation and by using different imbalance levels (10, 30,
50, and 70%). A set of 51 genotyped strains was used with 79 microsatellite
markers and 273 hybrids that were generated by a partial diallel. A total of
186 and 272 hybrids were analyzed in the experiments within the southern
and central regions of Brazil, respectively. The GBVs were, thus, predictedfor each location in both the regions, and for training in one region and
validation in another region. The correlation between the predicted and
observed GBVs ranged from 0.48 to 0.91, depending on the imbalance
level and the region analyzed. Overall, the results obtained in the present
study were promising, particularly considering that a small number of
markers were used and that the training and predictions occurred in the
very distinct regions of southern and central Brazil.
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CANTELMO, N. F.; VON PINHO, R. G.; BALESTRE, M. Genomic breeding value prediction for simple maize hybrid yield using total effects of associated markers, under different imbalance levels and environments. Genetics and Molecular Research, [S.l.], v. 15, n. 1, 2016.
