- Catillo G, Zappaterra M, Zambonelli P, Buttazzoni L, Steri R, Minelli G, Davoli R (2020). Genome-wide association study identifies quantitative trait loci regions involved in muscle acidic profile in Large White heavy pigs Animal : an international journal of animal bioscience,14(7):1342-1350. [see all QTL
by this paper]
- Clop A, Ovilo C, Perez-Enciso M, Cercos A, Tomas A, Fernandez A, Coll A, FolchJM, Barragan C, Diaz I, Oliver MA, Varona L, Silio (2003). Detection of QTL affecting fatty acid composition in the pig. Mammalian genome,Sep;14(9):650-6.. [see all QTL
by this paper]
- Crespo-Piazuelo D, Criado-Mesas L, Revilla M, Castelló A, Noguera JL, Fernández AI, Ballester M, Folch JM (2021). Identification of strong candidate genes for backfat and intramuscular fatty acid composition in three crosses based on the Iberian pig Scientific reports,10(1): 13962. [see all QTL
by this paper]
- González-Prendes R, Quintanilla R, Mármol-Sánchez E, Pena RN, Ballester M, Cardoso TF, Manunza A, Casellas J, Cánovas Á, Díaz I, Noguera JL, Castelló A, Mercadé A, Amills M (2019). Comparing the mRNA expression profile and the genetic determinism of intramuscular fat traits in the porcine gluteus medius and longissimus dorsi muscles BMC genomics,20(1): 170. [see all QTL
by this paper]
- Guo, T; Ren, J; Yang, K; Ma, J; Zhang, Z; Huang, L (2009). Quantitative trait loci for fatty acid composition in longissimus dorsi and abdominal fat: results from a White Duroc x Erhualian intercross F2 population. Animal genetics,40 (2): 185-91. [see all QTL
by this paper]
- Lee C, Chung Y, Kim JH. (2003). Quantitative trait loci mapping for fatty acid contents in the backfat onporcine chromosomes 1, 13, and 18. Mol Cells.,Feb 28;15(1):62-7.. [see all QTL
by this paper]
- Muoz M, Rodrguez MC, Alves E, Folch JM, Ibaez-Escriche N, Sili L, Fernndez AI (2013). Genome-wide analysis of porcine backfat and intramuscular fat fatty acid composition using high-density genotyping and expression data BMC genomics,14: 845. [see all QTL
by this paper]
- Munoz, G; Alves, E; Fernandez, A; Ovilo, C; Barragan, C; Estelle, J; Quintanilla, R; Folch, J M; Silio, L; Rodriguez, M C; Ferna (2007). QTL detection on porcine chromosome 12 for fatty-acid composition and association analyses of the fatty acid synthase, gastric inhibitory polypeptide and acetyl-coenzyme A carboxylase alpha genes. Animal genetics,38 (6): 639-46. [see all QTL
by this paper]
- Palma-Granados P, García-Casco JM, Caraballo C, Vázquez-Ortego P, Gómez-Carballar F, Sánchez-Esquiliche F, Óvilo C, Muñoz M (2023). Design of a low-density SNP panel for intramuscular fat content and fatty acid composition of backfat in free-range Iberian pigs Journal of animal science,101:skad079. [see all QTL
by this paper]
- Palma-Granados P, Muñoz M, Delgado-Gutierrez MA, Óvilo C, Nuñez Y, Fernández-Barroso MA, Sánchez-Esquiliche F, Ramírez L, García-Casco JM (2024). Candidate SNPs for meat quality and carcass composition in free-range Iberian pigs Meat science,207: 109373. [see all QTL
by this paper]
- Park HB, Han SH, Yoo CK, Lee JB, Kim JH, Baek KS, Son JK, Shin SM, Lim HT, Cho IC (2017). Genome scan linkage analysis identifies a major quantitative trait loci for fatty acid composition in longissimus dorsi muscle in an F2 intercross between Landrace and Korean native pigs Asian-Australasian journal of animal sciences,30(8): 1061-1065. [see all QTL
by this paper]
- Pena RN, Noguera JL, García-Santana MJ, González E, Tejeda JF, Ros-Freixedes R, Ibáñez-Escriche N (2019). Five genomic regions have a major impact on fat composition in Iberian pigs Scientific reports,9(1): 2031. [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]
- Pothakam N, Supakankul P, Norseeda W, Liu G, Teltathum T, Naraballobh W, Khamlor T, Sringarm K, Mekchay S (2021). Association of adipocytokine IL-1A and IL-6 genes with intramuscular fat content and fatty acid composition in pigs Meat science,179: 108554. [see all QTL
by this paper]
- Quintanilla R, Pena RN, Gallardo D, Canovas A, Ramirez O, Diaz I, Noguera JL, Amills M (2011). Porcine intramuscular fat content and composition are regulated by quantitative trait loci with muscle-specific effects J Anim Sci,89(10):2963-71. [see all QTL
by this paper]
- Ramayo-Caldas Y, Mercade A, Castello A, Yang B, Rodriguez C, Alves E, Diaz I, Ibanez-Escriche N, Noguera JL, Perez-Enciso M, Fer (2012). Genome-wide association study for intramuscular fatty acid composition in an Iberian × Landrace cross J Anim Sci,90(9):2883-93. [see all QTL
by this paper]
- Renaville B, Prandi A, Fan B, Sepulcri A, Rothschild M F, Piasentier E (2013). Candidate gene marker associations with fatty acid profiles in heavy pigs Meat science,93(3): 495-500. [see all QTL
by this paper]
- Revilla M, Ramayo-Caldas Y, Castell A, Corominas J, Puig-Oliveras A, Ibez-Escriche N, Muoz M, Ballester M, Folch JM (2014). New insight into the SSC8 genetic determination of fatty acid composition in pigs Genetics, Selection, Evolution : GSE,46(1): 28. [see all QTL
by this paper]
- Sanchez MP, Iannuccelli N, Basso B, Bidanel JP, Billon Y, Gandemer G, Gilbert H, Larzul C, Legault C, Riquet J, Milan D, Le Roy P. (2007). Identification of QTL with effects on intramuscular fat content and fatty acid composition in a Duroc x Large White cross. BMC genetics, 8: 55. [see all QTL
by this paper]
- 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 ,88(10):1482-1490. [see all QTL
by this paper]
- Solé E, Ros-Freixedes R, Tor M, Pena RN, Estany J (2021). A sequence variant in the diacylglycerol O-acyltransferase 2 gene influences palmitoleic acid content in pig muscle Scientific reports,11(1):14797. [see all QTL
by this paper]
- Uemoto Y, Nakano H, Kikuchi T, Sato S, Ishida M, Shibata T, Kadowaki H, Kobayashi E, Suzuki K (2012). Fine mapping of porcine SSC14 QTL and SCD gene effects on fatty acid composition and melting point of fat in a Duroc purebred population Animal genetics,43(2): 225-8. [see all QTL
by this paper]
- Uemoto Y, Soma Y, Sato S, Ishida M, Shibata T, Kadowaki H, Kobayashi E, Suzuki K (2012). Genome-wide mapping for fatty acid composition and melting point of fat in a purebred Duroc pig population Animal Genetics,43(1):27-34. [see all QTL
by this paper]
- Uemoto, Y; Sato, S; Ohnishi, C; Terai, S; Komatsuda, A; Kobayashi, E (2009). The effects of single and epistatic quantitative trait loci for fatty acid composition in a Meishan x Duroc crossbred population. J Anim Sci,87(11): 3470-6. [see all QTL
by this paper]
- Yang B, Zhang W, Zhang Z, Fan Y, Xie X, Ai H, Ma J, Xiao S, Huang L, Ren J (2013). Genome-wide association analyses for fatty acid composition in porcine muscle and abdominal fat tissues. PloS one,8 (6): e65554. [see all QTL
by this paper]
- Zappaterra M, Luise D, Zambonelli P, Mele M, Serra A, Costa LN, Davoli R (2019). Association study between backfat fatty acid composition and SNPs in candidate genes highlights the effect of FASN polymorphism in large white pigs Meat science,156: 75-84. [see all QTL
by this paper]
- Zhang J, Zhang Y, Gong H, Cui L, Ma J, Chen C, Ai H, Xiao S, Huang L, Yang B (2020). Landscape of Loci and Candidate Genes for Muscle Fatty Acid Composition in Pigs Revealed by Multiple Population Association Analysis Frontiers in Genetics,10:1067. [see all QTL
by this paper]
- Zhang W, Zhang J, Cui L, Ma J, Chen C, Ai H, Xie X, Li L, Xiao S, Huang L, Ren J, Yang B (2016). Genetic architecture of fatty acid composition in the longissimus dorsi muscle revealed by genome-wide association studies on diverse pig populations Genetics, Selection, Evolution : GSE,48(1): 5. [see all QTL
by this paper]
- Zhang Y, Zhang J, Gong H, Cui L, Zhang W, Ma J, Chen C, Ai H, Xiao S, Huang L, Yang B (2019). Genetic correlation of fatty acid composition with growth, carcass, fat deposition and meat quality traits based on GWAS data in six pig populations Meat science,150: 47-55. [see all QTL
by this paper]
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