Genomic prediction accuracy for resistance against piscirickettsia salmonis in farmed rainbow trout
Artículo
Open/ Download
Publication date
2018Metadata
Show full item record
Cómo citar
Yoshida, Grazyella Massako
Cómo citar
Genomic prediction accuracy for resistance against piscirickettsia salmonis in farmed rainbow trout
Author
Abstract
Salmonid rickettsial syndrome (SRS), caused by the intracellular bacterium Piscirickettsia salmonis, is one of the main diseases affecting rainbow trout (Oncorhynchus mykiss) farming. To accelerate genetic progress, genomic selection methods can be used as an effective approach to control the disease. The aims of this study were: (i) to compare the accuracy of estimated breeding values using pedigree-based best linear unbiased prediction (PBLUP) with genomic BLUP (GBLUP), single-step GBLUP (ssGBLUP), Bayes C, and Bayesian Lasso (LASSO); and (ii) to test the accuracy of genomic prediction and PBLUP using different marker densities (0.5, 3, 10, 20, and 27 K) for resistance against P. salmonis in rainbow trout. Phenotypes were recorded as number of days to death (DD) and binary survival (BS) from 2416 fish challenged with P. salmonis. A total of 1934 fish were genotyped using a 57 K single-nucleotide polymorphism (SNP) array. All genomic prediction methods achieved higher accuracies than PBLUP. The relative increase in accuracy for different genomic models ranged from 28 to 41% for both DD and BS at 27 K SNP. Between different genomic models, the highest relative increase in accuracy was obtained with Bayes C (approximate to 40%), where 3 K SNP was enough to achieve a similar accuracy to that of the 27 K SNP for both traits. For resistance against P. salmonis in rainbow trout, we showed that genomic predictions using GBLUP, ssGBLUP, Bayes C, and LASSO can increase accuracy compared with PBLUP. Moreover, it is possible to use relatively low-density SNP panels for genomic prediction without compromising accuracy predictions for resistance against P. salmonis in rainbow trout.
Patrocinador
Aguas Claras S.A.
Corporacion de Fomento de la Produccion
11IEI-12843
Fondo Nacional de Desarrollo Cientifico y Tecnologico Regular
1171720
Nucleo Milenio de Salmonidos Invasores
Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP)
2014/20626-4
2015/25232-7
National Council for Scientific and Technological Development fellowship
308636/2014-7
Indexation
Artículo de publicación ISI
Quote Item
G3-Genes Genomes Genetics Volumen: 8 Número: 2 Páginas: 719-726
Collections
The following license files are associated with this item: