- A. Stratil, M. Van Poucke, H. Bartenschlager, A. Knoll, M. Yerle, L. J. Peelman, M. Kopecny (2006). Porcine OGN and ASPN: mapping, polymorphisms and use for quantitative trait loci identification for growth and carcass traits in a Meishan x Pietrain intercross Animal Genetics,37: 415-418. [see all QTL
by this paper]
- Andersson-Eklund L, Marklund L, Lundstrom K, Haley CS, Andersson K, Hansson I,Moller M, Andersson L. (1998). Mapping quantitative trait loci for carcass and meat quality traits in a wildboar x Large White intercross. J Anim Sci,Mar;76(3):694-700.. [see all QTL
by this paper]
- 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,95(2): 545-558. [see all QTL
by this paper]
- Chen K, Hawken R, Flickinger GH, Rodriguez-Zas SL, Rund LA, Wheeler MB, Abrahamsen M, Rutherford MS, Beever JE, Schook LB (2012). Association of the Porcine Transforming Growth Factor Beta Type I Receptor (TGFBR1) Gene with Growth and Carcass Traits. Animal biotechnology,23(1): 43-63. [see all QTL
by this paper]
- Cherel P, Pires J, Glenisson J, Milan D, Iannuccelli N, Herault F, Damon M, Le Roy P (2011). Joint analysis of quantitative trait loci and major-effect causative mutations affecting meat quality and carcass composition traits in pigs. BMC genetics,12:76. [see all QTL
by this paper]
- Cho IC, Yoo CK, Lee JB, Jung EJ, Han SH, Lee SS, Ko MS, Lim HT, Park HB (2015). Genome-wide QTL analysis of meat quality-related traits in a large F2 intercross between Landrace and Korean native pigs Genetics, Selection, Evolution : GSE,47(1): 7. [see all QTL
by this paper]
- Choi I, Bates RO, Raney NE, Steibel JP, Ernst CW (2012). Evaluation of QTL for carcass merit and meat quality traits in a US commercial Duroc population. Meat science,92 (2): 132-8. [see all QTL
by this paper]
- Choi I, Steibel JP, Bates RO, Raney NE, Rumph JM, Ernst CW (2010). Application of alternative models to identify QTL for growth traits in an F2 Duroc x Pietrain pig resource population. BMC genetics,11: 97. [see all QTL
by this paper]
- Choi I, Steibel JP, Bates RO, Raney NE, Rumph JM, Ernst CW (2011). Identification of Carcass and Meat Quality QTL in an F(2) Duroc x Pietrain Pig Resource Population Using Different Least-Squares Analysis Models. Frontiers in genetics,2: 18. [see all QTL
by this paper]
- Cieslak J, Flisikowska T, Schnieke A, Kind A, Szydlowski M, Switonski M, Flisikowski K (2013). Polymorphisms in the promoter region of the adiponectin (ADIPOQ) gene are presumably associated with transcription level and carcass traits in pigs Animal genetics,44(3): 340-3. [see all QTL
by this paper]
- D. B. Edwards, C. W. Ernst, N. E. Raney, M. E. Doumit, M. D. Hoge, and R. O. Bates (2008). Quantitative trait locus mapping in an F2 Duroc x Pietrain resource population: II. Carcass and meat quality traits J Anim Sci,86:254-266. [see all QTL
by this paper]
- D. B. Edwards, C. W. Ernst, R.J. Tempelman, G. J. M. Rosa, N. E. Raney, M. D. Hoge, and R. O. Bates (2008). Quantitative trait loci mapping in an F2 Duroc x Pietrain resource population: I. Growth traits J Anim Sci,86:241-253. [see all QTL
by this paper]
- Ding R, Zhuang Z, Qiu Y, Wang X, Wu J, Zhou S, Ruan D, Xu C, Hong L, Gu T, Zheng E, Cai G, Huang W, Wu Z, Yang J (2022). A composite strategy of genome-wide association study and copy number variation analysis for carcass traits in a Duroc pig population. BMC Genomics,23(1): 590. [see all QTL
by this paper]
- Duthie, C; Simm, G; Doeschl-Wilson, A; Kalm, E; Knap, P W; Roehe, R (2008). Quantitative trait loci for chemical body composition traits in pigs and their positional associations with body tissues, growth and feed intake. Animal genetics,39 (2): 130-40. [see all QTL
by this paper]
- Eduard Murani, Maria Muraniova, Siriluck Ponsuksili, Karl Schellander, Klaus Wimmers (2006). Molecular characterization and evidencing of the porcine CRH gene as a functional-positional candidate for growth and body composition Biochem Biophys Res Commun.,342(2):394-405. [see all QTL
by this paper]
- Estelle, J; Mercade, A; Noguera, J L; Perez-Enciso, M; Ovilo, C; Sanchez, A; Folch, J M (2005). Effect of the porcine IGF2-intron3-G3072A substitution in an outbred Large White population and in an Iberian x Landrace cross. J Anim Sci,83 (12): 2723-8. [see all QTL
by this paper]
- Fan B, Onteru SK, Du ZQ, Garrick DJ, Stalder KJ, Rothschild MF (2011). Genome-wide association study identifies Loci for body composition and structural soundness traits in pigs. PloS One,6(2): e14726. [see all QTL
by this paper]
- Fan B, Onteru SK, Nikkila MT, Stalder KJ, Rothschild MF (2009). The COL9A1 gene is associated with longissimus dorsi muscle area in the pig. Animal genetics,40(5): 788. [see all QTL
by this paper]
- G. Yue, A. Stratil, M. Kopecny, D. Schröffelova, J. Schröffel Jr., J. Hojny, S Cepica, R. Davoli, P. Zambonelli, C. Brunsch, I. (2003). Linkage and QTL mapping for Sus scrofa chromosome 6. J Anim Breed Genet,120(1); 45-55. [see all QTL
by this paper]
- G. Yue, A. Stratil, S. Cepica, J. Schröffel Jr., d. Schröffelova, L. Fontanesi, M. Cagnazzo, G. Moser, H. Bartenschlager, G. Rei (2003). Linkage and QTL mapping for Sus scrofa chromosome 7. J Anim Breed Genet,120(1). [see all QTL
by this paper]
- G.A. Rohrer, R.M. Thallman, S. Shackelford, T. Wheeler, M. Koohmaraie (2005). A genome scan for loci affecting pork quality in a Furoc-Landrace F2 population Animal Genetics,37(1): 17-27. [see all QTL
by this paper]
- Gong H, Xiao S, Li W, Huang T, Huang X, Yan G, Huang Y, Qiu H, Jiang K, Wang X, Zhang H, Tang J, Li L, Li Y, Wang C, Qiao C, Ren J, Huang L, Yang B (2019). Unravelling the genetic loci for growth and carcass traits in Chinese Bamaxiang pigs based on a 1.4 million SNP array Journal of animal breeding and genetics,136(1):3-14. [see all QTL
by this paper]
- Grapes, Laura; Rothschild, Max F; (2006). Investigation of a QTL region for loin eye area and fatness on pig chromosome 1. Mammalian genome,17 (6): 657-68. [see all QTL
by this paper]
- H. Geldermann, E. Muller, G. Moser, G. Reiner, H. Bartenschlager, S. Cepica, A. Stratil, J. Kuryl, C. Moran, R. Davoli and C. Brunsch (2003). Genome-wide linkage and QTL mapping in porcine F2 families. J Anim Breed Genet,120:363-393. [see all QTL
by this paper]
- He Y, Ma J, Zhang F, Hou L, Chen H, Guo Y, Zhang Z (2016). Multi-breed genome-wide association study reveals heterogeneous loci associated with loin eye area in pigs Journal of applied genetics,57(4):511-518. [see all QTL
by this paper]
- Hirose K, Takizawa T, Fukawa K, Ito T, Ueda M, Hayashi Y, Tanaka K (2011). Association of an SNP marker in exon 24 of a class 3 phosphoinositide-3-kinase (PIK3C3) gene with production traits in Duroc pigs Anim Sci J,82(1):46-51. [see all QTL
by this paper]
- Hou R, Chen L, Liu X, Liu H, Shi G, Hou X, Zhang R, Yang M, Niu N, Wang L, Zhang L (2022). Integrating Genome-Wide Association Study with RNA-Sequencing Reveals HDAC9 as a Candidate GeneInfluencing Loin Muscle Area in Beijing Black Pigs Biology,11(11):1635. [see all QTL
by this paper]
- Jeon JT, Carlborg O, Tornsten A, Giuffra E, Amarger V, Chardon P,Andersson-Eklund L, Andersson K, Hansson I, Lundstrom K, Anders (1999). A paternally expressed QTL affecting skeletal and cardiac muscle mass in pigsmaps to the IGF2 locus. Nat Genet.,Feb;21(2):157-8.. [see all QTL
by this paper]
- Jong-Joo Kim, Honghua Zhao, Hauke Thomsen, Max F. Rothschild, Jack C.M. Dekkers (2005). Combined line-cross and half-sib QTL analysis of crosses between outbred lines Genetical Research,85: 235-248. [see all QTL
by this paper]
- Jung E J, Park H B, Lee J B, Yoo C K, Kim B M, Kim H I, Kim B W, Lim H T (2014). Genome-wide association analysis identifies quantitative trait loci for growth in a Landrace purebred population Animal genetics,45(3): 442-4. [see all QTL
by this paper]
- Kayan A, Cinar MU, Uddin MJ, Phatsara C, Wimmers K, Ponsuksili S, Tesfaye D, Looft C, Juengst H, Tholen E, Schellander K (2011). Polymorphism and expression of the porcine Tenascin C gene associated with meat and carcass quality. Meat science,89(1):76-83. [see all QTL
by this paper]
- Kayan A, Uddin MJ, Kocamis H, Tesfaye D, Looft C, Tholen E, Schellander K, Cinar MU (2013). Association and expression analysis of porcine HNF1A gene related to meat and carcass quality traits. Meat science,94 (4): 474-9. [see all QTL
by this paper]
- Kim, J-J; Rothschild, M F; Beever, J; Rodriguez-Zas, S; Dekkers, J C M (2005). Joint analysis of two breed cross populations in pigs to improve detection and characterization of quantitative trait loci. J Anim Sci,83 (6): 1229-40. [see all QTL
by this paper]
- Klaus Wimmers, Isle Fiedler, Torsten Hardge, Eduard Murani, Karl Schellander, Siriluck Ponsuksili (2006). QTL for microstructural and biophysical muscle properties and body composition in pigs BMC genetics,7: 15. [see all QTL
by this paper]
- Lee E A, Kim J M, Lim K S, Ryu Y C, Jeon W M, Hong K C (2012). Effects of variation in porcine MYOD1 gene on muscle fiber characteristics, lean meat production, and meat quality traits. Meat science,92 (1): 36-43. [see all QTL
by this paper]
- Lee J, Kim Y, Cho E, Cho K, Sa S, Kim Y, Choi J, Kim J, Hong J, Choi T (2020). Genomic Analysis Using Bayesian Methods under Different Genotyping Platforms in Korean Duroc Pigs Animals (Basel),10(5):752. [see all QTL
by this paper]
- Lee JS, Kim JM, Lim KS, Hong JS, Hong KC, Lee YS (2013). Effects of polymorphisms in the porcine microRNA MIR206 / MIR133B cluster on muscle fiber and meat quality traits Animal genetics,44(1): 101-6. [see all QTL
by this paper]
- Li J, Wu J, Jian Y, Zhuang Z, Qiu Y, Huang R, Lu P, Guan X, Huang X, Li S, Min L, Ye Y (2022). Genome-Wide Association Studies Revealed Significant QTLs and Candidate Genes Associated with Backfat and Loin Muscle Area in Pigs Using Imputation-Based Whole Genome Sequencing Data Animals : an open access journal from MDPI,12(21):2911. [see all QTL
by this paper]
- Li X, Kim SW, Do KT, Ha YK, Lee YM, Yoon SH, Kim HB, Kim JJ, Choi BH, Kim KS (2011). Analyses of porcine public SNPs in coding-gene regions by re-sequencing and phenotypic association studies. Molecular biology reports,38(6): 3805-20. [see all QTL
by this paper]
- Liu C, Gao H, Zhai S, Liu B. (2011). Molecular characterization, chromosomal localization, expression profile and association analysis with carcass traits of the porcine dickkopf homolog1 gene Mol Biol Rep,38(3):1929-34. [see all QTL
by this paper]
- Liu, G; Jennen, D G J; Tholen, E; Juengst, H; Kleinwachter, T; Holker, M; Tesfaye, D; Un, G; Schreinemachers, H-J; Murani, E; (2007). A genome scan reveals QTL for growth, fatness, leanness and meat quality in a Duroc-Pietrain resource population. Animal genetics,38 (3): 241-52. [see all QTL
by this paper]
- Liu, Guisheng; Kim, Jong Joo; Jonas, Elisebeth; Wimmers, Klaus; Ponsuksili, Siriluck; Murani, Eduard; Phatsara, Chirawath; Thole (2008). Combined line-cross and half-sib QTL analysis in Duroc-Pietrain population. Mammalian genome,19 (6): 429-38. [see all QTL
by this paper]
- Lv W, Peng Y, Hu J, Zhu M, Mao Y, Wang L, Wang G, Xu Z, Wu W, Zuo B (2024). Functional SNPs in SYISL promoter significantly affect muscle fiber density and muscle traits in pigs Animal Genetics,55(1): 66-78. [see all QTL
by this paper]
- M. Dragos-Wendrich, I. Sternstein, C. Brunsch, G. Moser, H. Bartenschlager, G. Reiner, H. Geldermann (2003). Linkage and QTL mapping for Sus scrofa chromosome 14. J Anim Breed Genet,120(1): 111-118. [see all QTL
by this paper]
- M. Mohrmann, R. Roehe, P. W. Knap, H. Looft, G. S. Plastow, E. Kalm (2006). Quantitative trait loci associated with AutoFOM grading characteristics, carcass cuts and chemical body composition during growth of Sus scrofa Animal Genetics,37: 435-443. [see all QTL
by this paper]
- Ma J, Gilbert H, Iannuccelli N, Duan Y, Guo B, Huang W, Ma H, Riquet J, Bidanel JP, Huang L, Milan D (2013). Fine mapping of fatness QTL on porcine chromosome X and analyses of three positional candidate genes BMC genetics,14: 46. [see all QTL
by this paper]
- Ma, J; Ren, J; Guo, Y; Duan, Y; Ding, N; Zhou, L; Li, L; Yan, X; Yang, K; Huang, L; Song, Y; Xie, J; Milan, D; Huang, L (2009). Genome-wide identification of quantitative trait loci for carcass composition and meat quality in a large-scale White Duroc x Chinese Erhualian resource population Animal Genetics,40 (5): 637-47. [see all QTL
by this paper]
- Malek M, Dekkers JC, Lee HK, Baas TJ, Rothschild MF. (2001). A molecular genome scan analysis to identify chromosomal regions influencingeconomic traits in the pig. I. Growth and body composition. Mammalian genome,Aug;12(8):630-6.. [see all QTL
by this paper]
- Nagamine, Yoshitaka; Haley, Chris S; Sewalem, Asheber; Visscher, Peter M; (2003). Quantitative trait loci variation for growth and obesity between and within lines of pigs (Sus scrofa). Genetics,164 (2): 629-35. [see all QTL
by this paper]
- Onteru SK, Gorbach DM, Young JM, Garrick DJ, Dekkers JC, Rothschild MF (2013). Whole Genome Association Studies of Residual Feed Intake and Related Traits in the Pig. PloS one,8 (6): e61756. [see all QTL
by this paper]
- Onteru, S K; Fan, B; Rothschild, M F (2009). The MMP2 gene may be associated with longissimus dorsi muscle area in the pig (Sus scrofa). Journal of applied genetics,50(3): 251-2. [see all QTL
by this paper]
- OVilo C, Oliver A, Noguera JL, Clop A, Barragan C, Varona L, Rodriguez C, ToroM, Sanchez A, Perez-Enciso M, Silio L. (2002). Test for positional candidate genes for body composition on pig chromosome 6. Genet Sel Evol,Jul-Aug;34(4):465-79.. [see all QTL
by this paper]
- Ovilo, C; Fernandez, A; Noguera, J L; Barragan, C; Leton, R; Rodriguez, C; Mercade, A; Alves, E; Folch, J M; Varona, L; Toro, M (2005). Fine mapping of porcine chromosome 6 QTL and LEPR effects on body composition in multiple generations of an Iberian by Landrace intercross. Genetical research,85 (1): 57-67. [see all QTL
by this paper]
- Ovilo, C; Perez-Enciso, M; Barragan, C; Clop, A; Rodriguez, C; Oliver, M A; Toro, M A; Noruera, J L (2000). A QTL for intramuscular fat and backfat thickness is located on porcine chromosome 6. Mammalian genome,11 (4): 344-6. [see all QTL
by this paper]
- P. Beeckmann, G. Moser, H. Bartenschlager, G. Reiner, and H. Geldermann (2003). Linkage and QTL mapping for Sus scrofa chromosome 8. J Anim Breed Genet,120(1); 66-73. [see all QTL
by this paper]
- P. Beeckmann, J. Schröffel Jr, G. Moser, H. Bartenschlager, G. Reiner, and H. Geldermann (2003). Linkage and QTL mapping for Sus scrofa chromosome 1. J Anim Breed Genet,120(1):1-10. [see all QTL
by this paper]
- P. Beeckmann, J. Schröffel Jr., G. Moser, H. Bartenschlager, G. Reiner and H. Geldermann (2003). Linkage and QTL mapping for Sus scrofa Chromosome 3. J Anim Breed Genet,120(1):20-27. [see all QTL
by this paper]
- Park J (2024). Genome-wide association study to reveal new candidate genes using single-step approaches for productive traits of Yorkshire pig in Korea Animal bioscience,37(3): 451-460. [see all QTL
by this paper]
- Park Jun, Na Chong-Sam (2024). Weighted single-step genome-wide association study to reveal new candidate genes for productive traits of Landrace pig in Korea Journal of animal science and technology,66(4): 702-716. [see all QTL
by this paper]
- Paszek, A A; Wilkie, P J; Flickinger, G H; Miller, L M; Louis, C F; Rohrer, G A; Alexander, L J; Beattie, C W; Schook, L B; (2001). Interval mapping of carcass and meat quality traits in a divergent swine cross. Animal biotechnology,12 (2): 155-65. [see all QTL
by this paper]
- Perez-Enciso M, Clop A, Noguera JL, Ovilo C, Coll A, Folch JM, Babot D, EstanyJ, Oliver MA, Diaz I, Sanchez A. (2000). A QTL on pig chromosome 4 affects fatty acid metabolism: evidence from anIberian by Landrace intercross. J Anim Sci,Oct;78(10):2525-31.. [see all QTL
by this paper]
- Perez-Montarelo D, Fernandez A, Folch J M, Pena R N, Ovilo C, Rodriguez C, Silio L, Fernandez A I (2012). Joint effects of porcine leptin and leptin receptor polymorphisms on productivity and quality traits Animal genetics,43 (6): 805-9. [see all QTL
by this paper]
- Ponsuksili, S; Murani, E; Schellander, K; Schwerin, M; Wimmers, K (2005). Identification of functional candidate genes for body composition by expression analyses and evidencing impact by association analysis and mapping. Biochimica et biophysica acta,1730 (1): 31-40. [see all QTL
by this paper]
- Qiao M, Wu HY, Guo L, Mei SQ, Zhang PP, Li FE, Zheng R, Deng CY (2012). Imprinting analysis of porcine DIO3 gene in two fetal stages and association analysis with carcass and meat quality traits Mol Biol Rep,39(3):2329-35. [see all QTL
by this paper]
- Qiu, H; Xu, X; Fan, B; Rothschild, M F; Martin, Y; Liu, B (2009). Investigation of LDHA and COPB1 as candidate genes for muscle development in the MYOD1 region of pig chromosome 2. Molecular biology reports,37(1):629-36. [see all QTL
by this paper]
- Qu YC, Deng CY, Xiong YZ, Zheng R, Yu L, Su YH, Liu GL. (2002). [The construction of the genetic map and QTL locating analysis on chromosome 2in swine] Acta genetica Sinica,29(11):972-6.. [see all QTL
by this paper]
- Reyer H, Ponsuksili S, Wimmers K, Murani E (2013). Association of N-terminal domain polymorphisms of the porcine glucocorticoid receptor with carcass composition and meat quality traits Animal genetics,45(1):125-9. [see all QTL
by this paper]
- Rohrer GA, Keele JW. (1998). Identification of quantitative trait loci affecting carcass composition in swine: II. Muscling and wholesale product yield traits. J Anim Sci,Sep;76(9):2255-62.. [see all QTL
by this paper]
- S. Cepica, A. Stratil, M. Kopecny, P. Blazkova, J. Schröffel Jr, R. Davoli, L. Fontanesi, G. Reiner, H. Bartenshlager, G. Moser (2003). Linkage and QTL mapping for Sus scrofa chromosome 4.. J Anim Breed Genet,120(1) 28-37. [see all QTL
by this paper]
- S. Cepica, G. Reiner, H. Bartenschlager, G. Moser, H. Geldermann (2003). Linkage and QTL mapping for Sus scrofa chromosome X. J Anim Breed Genet,120(1): 144-151. [see all QTL
by this paper]
- S. Ponsuksili, S. Chomdej, E. Murani, U. Bla¨ser, H.-J. Schreinemachers, K. Schellander and K. Wimmers (2005). SNP detection and genetic mapping of porcine genes encoding enzymes in hepatic metabolic pathways and evaluation of linkage with carcass traits Animal Genetics,36(6):477-83. [see all QTL
by this paper]
- S. S. Lee, Y. Chen, C. Moran, S. Cepica, G. Reiner, H. Bartenschlager, G. Moser and H. Geldermann (2003). LInkage and QTL mapping for Sus scrofa chromosome 2. J Anim Breed Genet,120(1): 11-19. [see all QTL
by this paper]
- Sato S, Oyamada Y, Atsuji K, Nade T, Sato S, Kobayashi E, Mitsuhashi T, NirasawaK, Komatsuda A, Saito Y, Terai S, Hayashi T, Sug (2003). Quantitative trait loci analysis for growth and carcass traits in a Meishan xDuroc F2 resource population. J Anim Sci,Dec;81(12):2938-49.. [see all QTL
by this paper]
- Sato S, Uemoto Y, Kikuchi T, Egawa S, Kohira K, Saito T, Sakuma H, Miyashita S, Arata S, Kojima T, Suzuki K (2016). SNP- and haplotype-based genome-wide association studies for growth, carcass, and meat quality traits in a Duroc multigenerational population BMC genetics,17: 60. [see all QTL
by this paper]
- Silva KM, Paixão DM, Silva PV, Solero BP, Pereira MS, Lopes PS and Guimarães SEF (2008). Mapping of quantitative trait loci and confirmation of the FAT1 region on chromosome 4 in an F2 population of pigs. Genetics and Molecular Biology,31 (2) 475-480. [see all QTL
by this paper]
- Soma Y, Uemoto Y, Sato S, Shibata T, Kadowaki H, Kobayashi E, Suzuki K (2011). Genome-wide mapping and identification of new quantitative trait loci affecting meat production, meat quality, and carcass traits within a Duroc purebred population. Journal of animal science,89(3): 601-8. [see all QTL
by this paper]
- Stachowiak M, Nowacka-Woszuk J, Szydlowski M, Switonski M (2013). The ACACA and SREBF1 genes are promising markers for pig carcass and performance traits, but not for fatty acid content in the longissimus dorsi muscle and adipose tissue Meat science,95(1): 64-71. [see all QTL
by this paper]
- Stearns, T M; Beever, J E; Southey, B R; Ellis, M; McKeith, F K; Rodriguez-Zas, S L (2005). Evaluation of approaches to detect quantitative trait loci for growth, carcass, and meat quality on swine chromosomes 2, 6, 13, and 18. I. Univariate outbred F2 and sib-pair analyses. J Anim Sci,83 (7): 1481-93. [see all QTL
by this paper]
- Stearns, T M; Beever, J E; Southey, B R; Ellis, M; McKeith, F K; Rodriguez-Zas, S L (2005). Evaluation of approaches to detect quantitative trait loci for growth, carcass, and meat quality on swine chromosomes 2, 6, 13, and 18. II. Multivariate and principal component analyses. J Anim Sci,83 (11): 2471-81. [see all QTL
by this paper]
- Steibel Juan Pedro, Bates Ronald O, Rosa Guilherme J M, Tempelman Robert J, Rilington Valencia D, Ragavendran Ashok, Raney Nancy E, Ramos Antonio Marcos, Cardoso Fernando F, Edwards David B, Ernst Catherine W, (2011). Genome-wide linkage analysis of global gene expression in loin muscle tissue identifies candidate genes in pigs. PloS one,6 (2): e16766. [see all QTL
by this paper]
- SU Yu-hong, MA Bao-yu, XIONG Yuan-zhu (2004). Genetic location of body composition traits in pigs. Hereditas (Beijing),26(2):163-166. [see all QTL
by this paper]
- Terenina E, Babigumira B M, Le Mignon G, Bazovkina D, Rousseau S, Salin F, Bendixen C, Mormede P (2013). Association study of molecular polymorphisms in candidate genes related to stress responses with production and meat quality traits in pigs Domestic animal endocrinology,44(2): 81-97. [see all QTL
by this paper]
- Thomsen, H; Lee, H K; Rothschild, M F; Malek, M; Dekkers, J C M; (2004). Characterization of quantitative trait loci for growth and meat quality in a cross between commercial breeds of swine. J Anim Sci,82 (8): 2213-28. [see all QTL
by this paper]
- Uemoto, Y; Nagamine, Y; Kobayashi, E; Sato, S; Tayama, T; Suda, Y; Shibata, T; Suzuki, K (2008). Quantitative trait loci analysis on Sus scrofa chromosome 7 for meat production, meat quality, and carcass traits within a Duroc purebred population. J Anim Sci,86 (11): 2833-9. [see all QTL
by this paper]
- Varona L, Ovilo C, Clop A, Noguera JL, Perez-Enciso M, Coll A, Folch JM,Barragan C, Toro MA, Babot D, Sanchez A. (2002). QTL mapping for growth and carcass traits in an Iberian by Landrace pigintercross: additive, dominant and epistatic effects. Genet Res.,Oct;80(2):145-54.. [see all QTL
by this paper]
- Velez-Irizarry D, Casiro S, Daza KR, Bates RO, Raney NE, Steibel JP, Ernst CW (2019). Genetic control of longissimus dorsi muscle gene expression variation and joint analysis with phenotypic quantitative trait loci in pigs BMC genomics,20(1): 3. [see all QTL
by this paper]
- Wang L, Wang Y, Zhong T, Li L, Zhang H, Xiong Y (2013). Identification of porcine glycogen synthase kinase 3α (GSK-3α) gene and its association with carcass traits Molecular and cellular biochemistry,377(1-2): 65-73. [see all QTL
by this paper]
- Wei, W H; Duan, Y; Haley, C S; Ren, J; de Koning, D J; Huang, L S (2011). High throughput analyses of epistasis for swine body dimensions and organ weights. Animal genetics,42(1):15-21. [see all QTL
by this paper]
- Wimmers K, Murani E, Ponsuksili S, Yerle M, Schellander K. (2002). Detection of quantitative trait loci for carcass traits in the pig by usingAFLP. Mammalian genome,Apr;13(4):206-10.. [see all QTL
by this paper]
- Wimmers K, Murani E, Te Pas MF, Chang KC, Davoli R, Merks JW, Henne H, Muraniova M, da Costa N, Harlizius B, Schellander K, Boll (2007). Associations of functional candidate genes derived from gene-expression profiles of prenatal porcine muscle tissue with meat quality and muscle deposition Animal Genetics,38(5): 474-84. [see all QTL
by this paper]
- Xu Z, Lin Q, Cai X, Zhong Z, Teng J, Li B, Zeng H, Gao Y, Cai Z, Wang X, Shi L, Wang X, Wang Y, Zhang Z, Lin Y, Liu S, Yin H, Bai Z, Wei C, Zhou J, Zhang W, Zhang X, Shi S, Wu J, Diao S, Liu Y, Pan X, Feng X, Liu R, Su Z, Chang C, Zhu Q, Wu Y, The PigGTEx Consortium, Zhou Z, Bai L, Li K, Wang Q, Pan Y, Xu Zhong, Peng X, Mei S, Mo D, Liu X, Zhang H, Yuan X, Liu Y, Liu G, Su G, Sahana G, Lund MS, Ma L, Xiang R, Shen X, Li P, Huang R, Ballester M, Piazuelo DC, Amills M, Clop A, Mortensen PK, Fredholm M, Tang G, Li M, Li X, Ding X, Li J, Chen Y, Zhang Q, Zhao Y, Zhao F, Fang L, Zhang Z (2024). Integrating large-scale meta-GWAS and PigGTEx resources to decipher the genetic basis of 232 complex traits in pigs. bioRxiv,. [see all QTL
by this paper]
- Xu, X; Xing, S; Du, Z Q; Rothschild, M F; Yerle, M; Liu, B (2008). Porcine TEF1 and RTEF1: molecular characterization and association analyses with growth traits. Comparative Biochemistry and Physiology, Part B,150 (4): 447-53. [see all QTL
by this paper]
- Yu TP, Tuggle CK, Schmitz CB, Rothschild MF. (1995). Association of PIT1 polymorphisms with growth and carcass traits in pigs. J Anim Sci,May;73(5):1282-8.. [see all QTL
by this paper]
- Zhang, Jing Hu; Xiong, Yuan Zhu; Zuo, Bo; Lei, Ming Gang; Jiang, Si Wen; Li, Feng E; Zheng, Rong; Li, Jia Lian; Xu, De Quan (2007). Quantitative trait loci for carcass traits on pig chromosomes 4, 6, 7, 8 and 13. Journal of applied genetics,48 (4): 363-9. [see all QTL
by this paper]
- Zhao X, Qiu Y, Meng F, Zhuang Z, Ruan D, Wu J, Ma F, Zheng E, Cai G, Yang J, Yang M, Wu Z (2024). Genome-wide association studies for loin muscle area, loin muscle depth and backfat thickness in DLY pigs Animal Genetics,55(1):134-139. [see all QTL
by this paper]
- Zhuang Z, Li S, Ding R, Yang M, Zheng E, Yang H, Gu T, Xu Z, Cai G, Wu Z, Yang J (2019). Meta-analysis of genome-wide association studies for loin muscle area and loin muscle depth in two Duroc pig populations PloS one,14(6): e0218263. [see all QTL
by this paper]
- Zuo, B; Xiong, Y Z; Deng, C Y; Su, Y H; Wang, J; Lei, M G; Li, F E; Jiang, S W; Zheng, R (2005). Polymorphism, linkage mapping and expression pattern of the porcine skeletal muscle glycogen synthase (GYS1) gene. Animal genetics,36 (3): 254-7. [see all QTL
by this paper]
|