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dc.creatorBarria, A.en_US
dc.creatorBenzie, J.en_US
dc.creatorHouston, R.en_US
dc.creatorde Koning, D.en_US
dc.creatorde Verdal, H.en_US
dc.date.accessioned2021-11-23T05:22:50Z
dc.date.available2021-11-23T05:22:50Z
dc.date.issued2021en_US
dc.identifier.citationBarría A, Benzie JAH, Houston RD, De Koning D-J and de Verdal H (2021) Genomic Selection and Genome-wide Association Study for Feed-Efficiency Traits in a Farmed Nile Tilapia (Oreochromis niloticus) Population. Front. Genet. 12: 737906. doi: 10. 3389/fgene. 2021. 737906.en_US
dc.identifier.issn1664-8021en_US
dc.identifier.urihttps://hdl.handle.net/20.500.12348/4948
dc.description.abstractNile tilapia is a key aquaculture species with one of the highest production volumes globally. Genetic improvement of feed efficiency via selective breeding is an important goal, and genomic selection may expedite this process. The aims of this study were to 1) dissect the genetic architecture of feed-efficiency traits in a Nile tilapia breeding population, 2) map the genomic regions associated with these traits and identify candidate genes, 3) evaluate the accuracy of breeding value prediction using genomic data, and 4) assess the impact of the genetic marker density on genomic prediction accuracies. Using an experimental video recording trial, feed conversion ratio (FCR), body weight gain (BWG), residual feed intake (RFI) and feed intake (FI) traits were recorded in 40 full-sibling families from the GIFT (Genetically Improved Farmed Tilapia) Nile tilapia breeding population. Fish were genotyped with a ThermoFisher Axiom 65 K Nile tilapia SNP array. Significant heritabilities, ranging from 0.12 to 0.22, were estimated for all the assessed traits using the genomic relationship matrix. A negative but favourable genetic correlation was found between BWG and the feed-efficiency related traits; −0.60 and −0.63 for FCR and RFI, respectively. While the genome-wide association analyses suggested a polygenic genetic architecture for all the measured traits, there were significant QTL identified for BWG and FI on chromosomes seven and five respectively. Candidate genes previously found to be associated with feed-efficiency traits were located in these QTL regions, including ntrk3a, ghrh and eif4e3. The accuracy of breeding value prediction using the genomic data was up to 34% higher than using pedigree records. A SNP density of approximately 5,000 SNPs was sufficient to achieve similar prediction accuracy as the full genotype data set. Our results highlight the potential of genomic selection to improve feed efficiency traits in Nile tilapia breeding programmes.en_US
dc.languageenen_US
dc.publisherFrontiers Mediaen_US
dc.rightsCC-BY-4.0en_US
dc.sourceFrontiers in Genetics;12,(2021)en_US
dc.subjectcandidate genesen_US
dc.subjectgwasen_US
dc.subjectgenomic predictionen_US
dc.subjectsnp arrayen_US
dc.subjectfeed conversion ratioen_US
dc.subjectFishen_US
dc.titleGenomic Selection and Genome-wide Association Study for Feed-Efficiency Traits in a Farmed Nile Tilapia (Oreochromis niloticus) Populationen_US
dc.typeJournal Articleen_US
cg.contributor.crpFishen_US
cg.coverage.regionGlobalen_US
cg.subject.agrovocfeed intakeen_US
cg.subject.agrovocnile tilapiaen_US
cg.contributor.affiliationInternational Fund for Agricultural Developmenten_US
cg.contributor.affiliationWorldFishen_US
cg.contributor.affiliationUniversity of Edinburgh, College of Medicine & Veterinary Medicine, The Roslin Instituteen_US
cg.contributor.affiliationUniversity College Corken_US
cg.contributor.affiliationSwedish University of Agricultural Sciencesen_US
cg.contributor.affiliationThe French Agricultural Research Center for International Developmenten_US
cg.contributor.affiliationThe French Agricultural Research Center for International Development, UMR: Genetic Improvement and Adaptation of Mediterranean and Tropical Plantsen_US
cg.contributor.affiliationUniversity of Montpellieren_US
cg.identifier.statusOpen accessen_US
cg.identifier.ISIindexedISI indexeden_US
cg.contribution.worldfishauthorBenzie, J.en_US
cg.description.themeSustainable aquacultureen_US
dc.identifier.doihttps://dx.doi.org/10.3389/fgene.2021.737906en_US
cg.creator.idJohn Benzie: 0000-0001-9599-8683en_US
cg.creator.idDirk Jan de Koning: 0000-0001-6343-8155en_US


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