- Demeure O, Duclos MJ, Bacciu N, Le Mignon G, Filangi O, Pitel F, Boland A, Lagarrigue S, Cogburn LA, Simon J, Le Roy P, Le Bihan-Duval E (2013). Genome-wide interval mapping using SNPs identifies new QTL for growth, body composition and several physiological variables in an F2 intercross between fat and lean chicken lines Genetics, Selection, Evolution : GSE,45: 36. [see all QTL
by this paper]
- Huang Y, Zhang C, Zhang W, Zhang P, Kang X, Chen W (2015). Variation in the chicken LPIN2 gene and association with performance traits British poultry science,56(2): 175-83. [see all QTL
by this paper]
- Javanrouh-Aliabad A, Vaez Torshizi R, Masoudi A A, Ehsani A (2018). Identification of candidate genes for blood metabolites in Iranian chickens using a genome-wide association study British poultry science,59(4): 381-388. [see all QTL
by this paper]
- Nadaf J, Pitel F, Gilbert H, Duclos MJ, Vignoles F, Beaumont C, Vignal A, Porter TE, Cogburn LA, Aggrey SE, Simon J, Le Bihan-Duval E. (2009). QTL for several metabolic traits map to loci controlling growth and body composition in an F2 intercross between high- and low-growth chicken lines. Physiol Genomics,38(3): 241-9. [see all QTL
by this paper]
- Park HB, Jacobsson L, Wahlberg P, Siegel PB, Andersson L. (2006). QTL analysis of body composition and metabolic traits in an intercross betweenchicken lines divergently selected for growth. Physiol Genomics,25(2):216-23. [see all QTL
by this paper]
- Van Goor, A., Ashwell, C.M., Persia, M.E., Rothschild, M.F., Schmidt, C.J., and Lamont, S.J. (2016). Quantitative trait loci identified for blood chemistry components of an advanced intercross line of chickens under heat stress BMC Genomics,17:287. [see all QTL
by this paper]
- Zhou, H; Evock-Clover, C M; McMurtry, J P; Ashwell, C M; Lamont, S J (2007). Genome-wide linkage analysis to identify chromosomal regions affecting phenotypic traits in the chicken. IV. Metabolic traits. Poultry Sci,86 (2): 267-76. [see all QTL
by this paper]
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