Release 56
(Apr 24, 2025)

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  1. Fontanesi, Luca; Schiavo, Giuseppina; Gallo, Maurizio; Baiocco, Claudio; Galimberti, Giuliano; Bovo, Samuele; Russo, Vincenzo; Buttazzoni, Luca; (2017) "Genome wide association study for ham weight loss at first salting in Italian Large White pigs: towards the molecular dissection of a key trait for dry-cured ham production", Animal Genetics, 2017 48(1):103-107 [ List Data ][ See Abstract ]
  2. Paulina G. Eusebi, Rayner Gonz�lez-Prendes, Raquel Quintanilla, Joan Tibau, Taina Figueiredo Cardoso, Alex Clop, Marcel Amills (2017) "A genome-wide association analysis for carcass traits in a commercial Duroc pig population", Animal Genetics, 2017 48(4):466-469. [ List Data ][ See Abstract ]
  3. He L C, Li P H, Ma X, Sui S P, Gao S, Kim S W, Gu Y Q, Huang Y, Ding N S, Huang R H (2017) "Identification of new single nucleotide polymorphisms affecting total number born and candidate genes related to ovulation rate in Chinese Erhualian pigs", Animal genetics, 2017 48(1):48-54 [ List Data ][ See Abstract ]
  4. Huang X, Huang T, Deng W, Yan G, Qiu H, Huang Y, Ke S, Hou Y, Zhang Y, Zhang Z, Fang S, Zhou L, Yang B, Ren J, Ai H, Huang L (2017) "Genome-wide association studies identify susceptibility loci affecting respiratory disease in Chinese Erhualian pigs under natural conditions", Animal genetics, 2017 48(1):30-37 [ List Data ][ See Abstract ]
  5. Ribani A, Bertolini F, Schiavo G, Scotti E, Utzeri V J, Dall'Olio S, Trevisi P, Bosi P, Fontanesi L (2017) "Next generation semiconductor based sequencing of bitter taste receptor genes in different pig populations and association analysis using a selective DNA pool-seq approach", Animal genetics, 2017 48(1):97-102 [ List Data ][ See Abstract ]
  6. Martínez-Montes AM, Fernández A, Pérez-Montarelo D, Alves E, Benítez RM, Nuñez Y, Óvilo C, Ibañez-Escriche N, Folch JM, Fernández AI (2017) "Using RNA-Seq SNP data to reveal potential causal mutations related to pig production traits and RNA editing", Animal genetics, 2017 48(2):151-165 [ List Data ][ See Abstract ]
  7. Chalkias H, Jonas E, Andersson LS, Jacobson M, de Koning DJ, Lundeheim N, Lindgren G (2017) "Identification of novel candidate genes for the inverted teat defect in sows using a genome-wide marker panel", Journal of applied genetics, 2017 58(2):249-259 [ List Data ][ See Abstract ]
  8. Le TH, Christensen OF, Nielsen B, Sahana G (2017) "Genome-wide association study for conformation traits in three Danish pig breeds", Genetics, Selection, Evolution : GSE, 2017 49(1): 12 [ List Data ][ See Abstract ]
  9. Verardo LL, Sevón-Aimonen ML, Serenius T, Hietakangas V, Uimari P (2017) "Whole-genome association analysis of pork meat pH revealed three significant regions and several potential genes in Finnish Yorkshire pigs", BMC genetics, 2017 18(1): 13 [ List Data ][ See Abstract ]
  10. Rohrer Gary A, Nonneman Dan J (2017) "Genetic analysis of teat number in pigs reveals some developmental pathways independent of vertebra number and several loci which only affect a specific side", Genetics, Selection, Evolution : GSE, 2017 49(1): 4 [ List Data ][ See Abstract ]
  11. Casiró S, Velez-Irizarry D, Ernst C W, Raney N E, Bates R O, Charles M G, Steibel J P (2017) "Genome-wide association study in an F2 Duroc x Pietrain resource population for economically important meat quality and carcass traits", Journal of animal science, 2017 95(2): 545-558 [ List Data ][ See Abstract ]
  12. Zadinová K, Stupka R, Stratil A, Čítek J, Vehovský K, Lebedová N, Šprysl M, Okrouhlá M (2017) "Association analysis of SNPs in the porcine CYP2E1 gene with skatole, indole, and androstenone levels in backfat of a crossbred pig population", Meat science, 2017 131: 68-73 [ List Data ][ See Abstract ]
  13. Meng Q, Wang K, Liu X, Zhou H, Xu L, Wang Z, Fang M (2017) "Identification of growth trait related genes in a Yorkshire purebred pig population by genome-wide association studies", Asian-Australasian journal of animal sciences, 2017 30(4): 462-469 [ List Data ][ See Abstract ]
  14. Sato S, Uemoto Y, Kikuchi T, Egawa S, Kohira K, Saito T, Sakuma H, Miyashita S, Arata S, Suzuki K (2017) "Genome-wide association studies reveal additional related loci for fatty acid composition in a Duroc pig multigenerational population", Animal science journal , 2017 88(10):1482-1490 [ List Data ][ See Abstract ]
  15. van Son M, Enger EG, Grove H, Ros-Freixedes R, Kent MP, Lien S, Grindflek E (2017) "Genome-wide association study confirm major QTL for backfat fatty acid composition on SSC14 in Duroc pigs", BMC genomics, 2017 18(1):369 [ List Data ][ See Abstract ]
  16. Fontanesi L, Schiavo G, Galimberti G, Bovo S, Russo V, Gallo M, Buttazzoni L (2017) "A genome-wide association study for a proxy of intermuscular fat level in the Italian Large White breed identifies genomic regions affecting an important quality parameter for dry-cured hams.", Animal Genetics, 2017 48(4):459-465 [ List Data ][ See Abstract ]
  17. Hwang JH, An SM, Kwon SG, Park DH, Kim TW, Kang DG, Yu GE, Kim IS, Park HC, Ha J, Kim CW (2017) "Associations of the Polymorphisms in DHRS4, SERPING1, and APOR Genes with Postmortem pH in Berkshire Pigs", Animal biotechnology, 2017 28(4)288-293 [ List Data ][ See Abstract ]
  18. Revilla M, Puig-Oliveras A, Castelló A, Crespo-Piazuelo D, Paludo E, Fernández AI, Ballester M, Folch JM (2017) "A global analysis of CNVs in swine using whole genome sequence data and association analysis with fatty acid composition and growth traits", PloS one, 2017 12(5): e0177014 [ List Data ][ See Abstract ]
  19. Reyer H, Shirali M, Ponsuksili S, Murani E, Varley PF, Jensen J, Wimmers K (2017) "Exploring the genetics of feed efficiency and feeding behaviour traits in a pig line highly selected for performance characteristics", Molecular genetics and genomics : MGG, 2017 292(5):1001-1011 [ List Data ][ See Abstract ]
  20. Guo Y, Huang Y, Hou L, Ma J, Chen C, Ai H, Huang L, Ren J (2017) "Genome-wide detection of genetic markers associated with growth and fatness in four pig populations using four approaches", Genetics, Selection, Evolution : GSE, 2017 49(1): 21 [ List Data ][ See Abstract ]
  21. Wang K, Liu Y, Xu Q, Liu C, Wang J, Ding C, Fang M (2017) "A post-GWAS confirming GPAT3 gene associated with pig growth and a significant SNP influencing its promoter activity", Animal genetics, 2017 48(4): 478-482 [ List Data ][ See Abstract ]
  22. Yan G, Qiao R, Zhang F, Xin W, Xiao S, Huang T, Zhang Z, Huang L (2017) "Imputation-Based Whole-Genome Sequence Association Study Rediscovered the Missing QTL for Lumbar Number in Sutai Pigs", Scientific reports, 2017 7(1): 615 [ List Data ][ See Abstract ]
  23. Hao X, Plastow G, Zhang C, Xu S, Hu Z, Yang T, Wang K, Yang H, Yin X, Liu S, Wang Z, Wang Z, Zhang S (2017) "Genome-wide association study identifies candidate genes for piglet splay leg syndrome in different populations", BMC genetics, 2017 18(1): 64 [ List Data ][ See Abstract ]
  24. Dunkelberger J R, Mathur P K, Lopes M S, Knol E F, Dekkers J C M (2017) "A major gene for host response to porcine reproductive and respiratory syndrome is not unfavorably associated with overall performance under nonchallenging conditions in commercial pig lines", Journal of animal science, 2017 95(7): 2838-2847 [ List Data ][ See Abstract ]
  25. C. Bai, Y. Pan, D. Wang, F. Cai, S. Yan, Z. Zhao, B. Sun (2017) "Genome-Wide Association Analysis of Residual Feed Intake in Junmu No.1 White Pigs", Animal Genetics, 2017 Dec;48(6):686-690 [ List Data ][ See Abstract ]
  26. Häggman J, Uimari P, (2017) "Novel harmful recessive haplotypes for reproductive traits in pigs", Journal of animal breeding and genetics, 2017 134(2): 129-135 [ List Data ][ See Abstract ]
  27. D'Astous-Pagé J, Gariépy C, Blouin R, Cliche S, Méthot S, Sullivan B, Fortin F, Palin MF (2017) "Identification of single nucleotide polymorphisms in carnosine-related genes and effects of genotypes on pork meat quality attributes", Meat science, 2017 134: 54-60 [ List Data ][ See Abstract ]
  28. Ding R, Quan J, Yang M, Wang X, Zheng E, Yang H, Fu D, Yang Y, Yang L, Li Z, Liu D, Cai G, Wu Z, Yang J (2017) "Genome-wide association analysis reveals genetic loci and candidate genes for feeding behavior and eating efficiency in Duroc boars", PloS one, 2017 12(8): e0183244 [ List Data ][ See Abstract ]
  29. Reyer H, Varley PF, Murani E, Ponsuksili S, Wimmers K (2017) "Genetics of body fat mass and related traits in a pig population selected for leanness", Scientific reports, 2017 7(1): 9118 [ List Data ][ See Abstract ]
  30. Horodyska J, Hamill RM, Varley PF, Reyer H, Wimmers K (2017) "Genome-wide association analysis and functional annotation of positional candidate genes for feed conversion efficiency and growth rate in pigs", PloS one, 2017 12(6): e0173482 [ List Data ][ See Abstract ]
  31. Waide E H, Tuggle C K, Serão NV N V L, Schroyen M, Hess A, Rowland R R R, Lunney J K, Plastow G, Dekkers J C M (2017) "Genomewide association of piglet responses to infection with one of two porcine reproductive and respiratory syndrome virus isolates", Journal of animal science, 2017 95(1): 16-38 [ List Data ][ See Abstract ]
  32. van Son M, Kent MP, Grove H, Agarwal R, Hamland H, Lien S, Grindflek E (2017) "Fine mapping of a QTL affecting levels of skatole on pig chromosome 7", BMC genetics, 2017 18(1): 85 [ List Data ][ See Abstract ]
  33. Guo Y, Qiu H, Xiao S, Wu Z, Yang M, Yang J, Ren J, Huang L (2017) "A genome-wide association study identifies genomic loci associated with backfat thickness, carcass weight, and body weight in two commercial pig populations", Journal of applied genetics, 2017 58(4): 499-508 [ List Data ][ See Abstract ]
  34. Ji Jiuxiu, Zhou Lisheng, Guo Yuanmei, Huang Lusheng, Ma Junwu (2017) "Genome-wide association study identifies 22 new loci for body dimension and body weight traits in a White Duroc×Erhualian F2 intercross population", Asian-Australasian journal of animal sciences, 2017 30(8): 1066-1073 [ List Data ][ See Abstract ]
  35. Park HB, Han SH, Lee JB, Cho IC (2017) "Rapid Communication: High-resolution quantitative trait loci analysis identifies LTBP2 encoding latent transforming growth factor beta binding protein 2 associated with thoracic vertebrae number in a large F2 intercross between Landrace and Korean native pigs", Journal of animal science, 2017 95(5): 1957-1962 [ List Data ][ See Abstract ]
  36. van Son M, Agarwal R, Kent M P, Grove H, Grindflek E, Lien S (2017) "Exploiting whole genome sequence data to fine map and characterize candidate genes within a quantitative trait loci region affecting androstenone on porcine chromosome 5", Animal genetics, 2017 48(6): 653-659 [ List Data ][ See Abstract ]
  37. Verardo L L, Lopes M S, Wijga S, Madsen O, Silva F F, Groenen M A M, Knol E F, Lopes P S, Guimarães S E F (2017) "After genome-wide association studies: Gene networks elucidating candidate genes divergences for number of teats across two pig populations", Journal of animal science, 2017 94(4): 1446-58 [ List Data ][ See Abstract ]
  38. Zanella R, Morés N, Morés MA, Peixoto JO, Zanella EL, Ciacci-Zanella JR, Ibelli AM, Gava D, Cantão ME, Ledur MC (2017) "Genome-wide association study of periweaning failure-to-thrive syndrome (PFTS) in pigs", Veterinary Record, 2017 178(26): 653 [ List Data ][ See Abstract ]
  39. Tan C, Wu Z, Ren J, Huang Z, Liu D, He X, Prakapenka D, Zhang R, Li N, Da Y, Hu X (2017) "Genome-wide association study and accuracy of genomic prediction for teat number in Duroc pigs using genotyping-by-sequencing", Genetics, Selection, Evolution : GSE, 2017 49(1): 35 [ List Data ][ See Abstract ]
  40. Tang J, Zhang Z, Yang B, Guo Y, Ai H, Long Y, Su Y, Cui L, Zhou L, Wang X, Zhang H, Wang C, Ren J, Huang L, Ding N (2017) "Identification of loci affecting teat number by genome-wide association studies on three pig populations", Asian-Australasian journal of animal sciences, 2017 30(1): 1-7 [ List Data ][ See Abstract ]
  41. Wang L, Zhang Y, Zhang T, Zhang L, Yan H, Liu X, Wang L (2017) "Genotyping by sequencing reveals a new locus for pig teat number", Animal Genetics, 2017 48(4): 470-472 [ List Data ][ See Abstract ]
In addition, there are matches in 5 other species QTLdb:

 

© 2003-2025: USA · USDA · NRPSP8 · Program to Accelerate Animal Genomics Applications. Contact: Bioinformatics Team