Additional file 1: of QTL fine-mapping of soybean (Glycine max L.) leaf type associated traits in two RILs populations
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Table S1. The pairwise correlation coefficients between different leaf type traits in ZH RILs across multi-environments. Table S2. The pairwise correlation coefficients between different leaf type traits in GB RILs across multi-environments. Table S3. Correlation coefficients between different environments for leaf type traits in ZH RILs. Table S4. Correlation coefficients between different environments for leaf type traits in GB RILs. Table S5. Description of characteristics of 20 chromosomes in ZH RIL population high-density genetic map. Table S6. Description of characteristics of 20 chromosomes in GB RIL population high-density genetic map. Table S7. Fifty-six QTLs and 48 loci for leaf type traits in ZH RIL population across environments. Table S8. One hundred thirty-four QTLs and 100 loci for leaf type traits in GB RIL population across environments. Table S9. Eleven QTL hotspots associated with leaf type traits detected in ZH RIL population. Table S10. Twenty-three QTL hotspots associated with leaf type traits detected in GB RIL population. Table S11. Gene models on Genome build Glyma 1.1 Chromosome of four important QTL hotspots. Table S12. Gene Ontology (GO) enrichment analysis of four important QTL hotspots. Table S13. Gene models on Genome build Glyma 1.1 Chromosome of specific leaf type traits. Table S14. Gene Ontology (GO) enrichment analysis of specific leaf type traits. Table S15. Information of SoybaseDatabse published leaf type traits associated QTLs. Table S16. Comparisons of the dected QTLs in ZH RIL population between present research and previous stuides. Table S17.Comparisons of the dected QTLs in GB RIL population between present research and previous stuides. Table S18. Four important QTL hotspots contain several published leaf type and yield-related traits QTLs. (XLS 428 kb)
表S1. 多环境下ZH重组自交系(Recombinant Inbred Lines, RIL)不同叶型性状间的两两相关系数
表S2. 多环境下GB重组自交系(Recombinant Inbred Lines, RIL)不同叶型性状间的两两相关系数
表S3. ZH重组自交系群体中叶型性状在不同环境间的相关系数
表S4. GB重组自交系群体中叶型性状在不同环境间的相关系数
表S5. ZH重组自交系群体高密度遗传图谱20条染色体的特征描述
表S6. GB重组自交系群体高密度遗传图谱20条染色体的特征描述
表S7. 多环境下ZH重组自交系群体中涉及叶型性状的56个数量性状位点(Quantitative Trait Locus, QTL)及48个位点
表S8. 多环境下GB重组自交系群体中涉及叶型性状的134个数量性状位点(Quantitative Trait Locus, QTL)及100个位点
表S9. ZH重组自交系群体中检测到的11个与叶型性状相关的QTL热点区域
表S10. GB重组自交系群体中检测到的23个与叶型性状相关的QTL热点区域
表S11. 4个重要QTL热点区域所在Glyma 1.1版本大豆参考基因组染色体上的基因模型
表S12. 4个重要QTL热点区域的基因本体(Gene Ontology, GO)富集分析结果
表S13. 特定叶型性状所在Glyma 1.1版本大豆参考基因组染色体上的基因模型
表S14. 特定叶型性状的基因本体(Gene Ontology, GO)富集分析结果
表S15. Soybase数据库(Soybase Database)公布的与叶型性状相关的QTL信息
表S16. 本研究与既往研究在ZH重组自交系群体中检测到的QTL对比分析
表S17. 本研究与既往研究在GB重组自交系群体中检测到的QTL对比分析
表S18. 包含多个已发表叶型性状及产量相关性状QTL的4个重要QTL热点区域。(Excel文件,428 KB)
创建时间:
2023-06-28



