Query notes
- 57 rows of data returned on this page. Use "filter" tool box on the top to explore for more.
References
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Genome-wide association analysis identify candidate genes for feed efficiency and growth traits in Wenchang chickens,
BMC Genomics, 25(1): 645.
Li W, Zheng M, Zhao G, Wang J, Liu J, Wang S, Feng F, Liu D, Zhu D, Li Q, Guo L, Guo Y, Liu R, Wen J (2021),
Identification of QTL regions and candidate genes for growth and feed efficiency in broilers,
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Liu T, Luo C, Wang J, Ma J, Shu D, Lund MS, Su G, Qu H (2017),
Assessment of the genomic prediction accuracy for feed efficiency traits in meat-type chickens,
PloS one, 12 (3): e0173620.
Marchesi JAP, Ono RK, Cantão ME, Ibelli AMG, Peixoto JO, Moreira GCM, Godoy TF, Coutinho LL, Munari DP, Ledur MC (2021),
Exploring the genetic architecture of feed efficiency traits in chickens,
Scientific reports, 11 (1): 4622.
Ye S, Chen ZT, Zheng R, Diao S, Teng J, Yuan X, Zhang H, Chen Z, Zhang X, Li J, Zhang Z (2020),
New Insights From Imputed Whole-Genome Sequence-Based Genome-Wide Association Analysis and Transcriptome Analysis: The Genetic Mechanisms Underlying Residual Feed Intake in Chickens,
Frontiers in genetics, 11: 243.
Chen C, Su Z, Li Y, Luan P, Wang S, Zhang H, Xiao F, Guo H, Cao Z, Li H, Leng L (2021),
Estimation of the genetic parameters of traits relevant to feed efficiency: result from broiler lines divergent for high or low abdominal fat content,
Poultry science, 100 (2): 461-466.