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Article
Genetic gain from phenotypic and genomic selection for quantitative resistance to stem rust of wheat
(Crop Science Society of America, 2015)
Stem rust of wheat (Triticum aestivum L.) caused by Puccinia graminis f. sp. tritici Eriks. and E. Henn. is a globally important disease that can cause severe yield loss. Breeding for quantitative stem rust resistance ...
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Strategies for selecting crosses using genomic prediction in two wheat breeding programs
(Crop Science Society of America, 2017)
The single most important decision in plant breeding programs is the selection of appropriate crosses. The ideal cross would provide superior predicted progeny performance and enough diversity to maintain genetic gain. The ...
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Bayesian multitrait kernel methods improve multienvironment genome-based prediction
(Oxford University Press, 2022)
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Cloning of the broadly effective wheat leaf rust resistance gene Lr42 transferred from Aegilops tauschii
(Nature Publishing Group, 2022)
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Multiple wheat genomes reveal global variation in modern breeding
(Nature Publishing Group, 2020)
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Aerial high‐throughput phenotyping enables indirect selection for grain yield at the early generation, seed‐limited stages in breeding programs
(Crop Science Society of America (CSSA), 2020)