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Animal Trait Correlation Database

 Chicken Traits Genetic Correlations

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Genetic Correlations:1,530

AFBMWTBRMPBWCOMBLCOMBWCWDRESSPDSMWTESSESSTIFESTESshapeEWFIGIZZWTHWTLIVWTMPHMcoPECMAJWPOFNRFISKINPSKINWTSYFNTMWTVPPWINGWT
ABFP0.96-0.09-0.200.19  -0.03-0.55          -0.760.38   0.410.49    
ABR-NDV                           -0.42 
AF 0.26-0.200.46  0.23-0.44          -0.640.36   0.440.54  0.07 
AH         -0.17-0.030.03-0.030.07               
ATRFN                     0.35   0.14   
BACKW 0.78    0.93 0.78      0.270.510.55  0.71     0.84 0.82
BMWT   0.82  0.770.680.57      0.290.160.47-0.020.370.85  -0.190.16 0.750.170.72
BRMP 0.84 0.06  0.310.74          -0.12-0.44    -0.27    
BW 0.77 0.94               0.51         
COMBH    0.760.94                       
COMBL     0.81                       
CW       0.460.80      0.320.440.56  0.78  0.110.55 0.910.210.86
DRESSP                       -0.19-0.04    
DRTHMW                           0.34 
DSMWT               0.280.430.44  0.63     0.92 0.83
ESS           0.50 -0.36               
ESSTIF         0.55 0.28 0.01               
EST             0.01               
ESshape         0.170.250.20 -0.01               
FCR              0.39       0.71      
FI                      0.86      
GIZZWT   0.38            0.380.44  0.22     0.28 0.30
HWT   0.48             0.56  0.36     0.24 0.47
LIVWT                    0.36     0.41 0.41
Mco                  -0.110.72         
PECMAJW   0.76                      0.70 0.70
POFN                         0.46   
SKINP   0.17                         
TMWT                            0.79
Hyperlinks on data to further details may be implemented in the near future.
For the current moment, please use Table View to explore further.
Query notes References
Le Bihan-Duval E, Millet N, Remignon H (1999), Broiler meat quality: effect of selection for increased carcass quality and estimates of genetic parameters, Poultry science, 78 (6): 822-6.
Venturini G C, Cruz V A R, Rosa J O, Baldi F, El Faro L, Ledur M C, Peixoto J O, Munari D P (2014), Genetic and phenotypic parameters of carcass and organ traits of broiler chickens, Genetics and molecular research : GMR, 13 (4): 10294-300.
Guo J, Qu L, Shao D, Wang Q, Li Y, Dou T, Wang X, Hu Y, Tong H (2023), Genetic Architecture of Abdominal Fat Deposition Revealed by a Genome-Wide Association Study in the Laying Chicken, Genes, 15(1):10.
Yuan J, Chen S, Shi F, Wu G, Liu A, Yang N, Sun C (2017), Genome-wide association study reveals putative role of gga-miR-15a in controlling feed conversion ratio in layer chickens, BMC genomics, 18 (1): 699.
Shen M, Sun H, Qu L, Ma M, Dou T, Lu J, Guo J, Hu Y, Wang X, Li Y, Wang K, Yang N (2017), Genetic Architecture and Candidate Genes Identified for Follicle Number in Chicken, Scientific Reports, 7(1):16412.
Zerehdaran S, Vereijken A L J, van Arendonk J A M, van der Waaijt E H (2004), Estimation of genetic parameters for fat deposition and carcass traits in broilers, Poultry science, 83 (4): 521-5.
Luo C, Qu H, Wang J, Wang Y, Ma J, Li C, Yang C, Hu X, Li N, Shu D (2013), Genetic parameters and genome-wide association study of hyperpigmentation of the visceral peritoneum in chickens, BMC genomics, 14: 334.
Blanco A E, Icken W, Ould-Ali D, Cavero D, Schmutz M (2014), Genetic parameters of egg quality traits on different pedigree layers with special focus on dynamic stiffness, Poultry science, 93 (10): 2457-63.
Shen M, Qu L, Ma M, Dou T, Lu J, Guo J, Hu Y, Yi G, Yuan J, Sun C, Wang K, Yang N (2016), Genome-Wide Association Studies for Comb Traits in Chickens, PloS one, 11 (7): e0159081.

 

 

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