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Efficient computation of the genomic relationship matrix and other matrices used in single-step evaluation

, , , and . Journal od Animal Breeding and Genetics, 128 (6): 422-428 (2011)

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Unknown-parent groups in single-step genomic evaluation, , , , and . Journal of Animal Breeding and Genetics, 130 (4): 252--258 (2013)Efficient computation of the genomic relationship matrix and other matrices used in single-step evaluation, , , and . Journal od Animal Breeding and Genetics, 128 (6): 422-428 (2011)Hot topic: A unified approach to utilize phenotypic, full pedigree, and genomic information for genetic evaluation of Holstein final score, , , , , and . Journal of Dairy Science, 93 (2): 743 - 752 (2010)Genetic evaluation using single-step genomic best linear unbiased predictor in American Angus, , , , , , , , , and 1 other author(s). Journal of Animal Science, 93 (6): 2653 (2015)Computing procedures for genetic evaluation including phenotypic, full pedigree, and genomic information, , and . Journal of Dairy Science, 92 (9): 4648 - 4655 (2009)Bias in genomic predictions for populations under selection, , , and . Genetics Research, 93 (05): 357--366 (October 2011)Effect of different genomic relationship matrices on accuracy and scale, , , , and . Journal of Animal Science, 89 (9): 2673--2679 (March 2011)Technical note: Computing strategies in genome-wide selection, and . Journal of Dairy Science, 91 (1): 360 - 366 (2008)Using recursion to compute the inverse of the genomic relationship matrix, , and . Journal of Dairy Science, 97 (6): 3943 - 3952 (2014)Hot topic: Use of genomic recursions in single-step genomic best linear unbiased predictor (BLUP) with a large number of genotypes, , , , , , , and . Journal of Dairy Science, 98 (6): 4090 - 4094 (2015)