Additional file 1 of Identification of candidate genes and enriched biological functions for feed efficiency traits by integrating plasma metabolites and imputed whole genome sequence variants in beef cattle
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Additional file 1: Table S1. Additive genetic variances and heritability estimates for 11 metabolites based on the imputed whole genome sequence (WGS) variants in a beef cattle multibreed population; Table S2. Uniquely common candidate genes for feed efficiency traits in a beef cattle multibreed population; Table S3. Enriched biological functions significantly associated with RFI in a beef cattle multibreed population; Table S4. Enriched biological functions significantly associated with DMI in a beef cattle multibreed population; Table S5. Enriched biological functions significantly associated with ADG in a beef cattle multibreed population; Table S6. Enriched biological functions significantly associated with MWT in a beef cattle multibreed population; Table S7. Uniquely common biological functions for feed efficiency traits in a beef cattle multibreed population; Table S8. The comparison of candidate genes between the current study and Zhang et al; Table S9. Genomic breed composition for animals; Table S10. Descriptive statistics of phenotypic data on feed efficiency traits and metabolites.
附加文件1:表S1:基于肉牛多品种群体中推算的全基因组序列(Whole Genome Sequence, WGS)变异,针对11种代谢物的加性遗传方差与遗传力估计值;表S2:肉牛多品种群体中与饲料效率性状相关的唯一共有候选基因;表S3:肉牛多品种群体中显著关联于剩余采食量(Residual Feed Intake, RFI)的富集生物学功能;表S4:肉牛多品种群体中显著关联于干物质采食量(Dry Matter Intake, DMI)的富集生物学功能;表S5:肉牛多品种群体中显著关联于平均日增重(Average Daily Gain, ADG)的富集生物学功能;表S6:肉牛多品种群体中显著关联于代谢体重(Metabolic Body Weight, MWT)的富集生物学功能;表S7:肉牛多品种群体中针对饲料效率性状的唯一共有富集生物学功能;表S8:本研究与Zhang等人研究的候选基因对比分析;表S9:受试个体的基因组品种构成;表S10:饲料效率性状与代谢物的表型数据描述性统计量
创建时间:
2023-06-28



