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Additional file 1 of QTL mapping for soybean (Glycine max L.) leaf chlorophyll-content traits in a genotyped RIL population by using RAD-seq based high-density linkage map

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Mendeley Data2024-06-27 更新2024-06-27 收录
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https://springernature.figshare.com/articles/dataset/Additional_file_1_of_QTL_mapping_for_soybean_Glycine_max_L_leaf_chlorophyll-content_traits_in_a_genotyped_RIL_population_by_using_RAD-seq_based_high-density_linkage_map/13142132/1
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Additional file 1: Table S1: The pairwise correlation coefficients between different chlorophyll-content traits in the ZH RILs across environments; Table S2: Correlation coefficients between different environments for leaf chlorophyll-content traits in the ZH RILs; Table S3: Number of SNPs in the bin markers; Table S4: Description of characteristics of 20 chromosomes in the ZH RIL population high-density genetic map; Table S5: Segregation distortions of 2639 bin markers among the ZH RIL population; Table S6: The 78 QTLs and 70 loci for leaf chlorophyll-content traits in the ZH RIL population across different environments; Table S7: Information of Soybase published leaf chlorophyll-content traits QTLs; Table S8: Comparisons of the detected chlorophyll-content QTLs with the previously published ones; Table S9: Five important chlorophyll-content traits QTL hotspots are associated with several reported yield-related QTLs on SoyBase; Table S10: Genes in the hereditary intervals of the 13 major chlorophyll-content trait QTLs; Table S11: Genes in the hereditary intervals of the five important QTL hotspots; Table S12: Gene Ontology (GO) enrichment analysis of the genes in genetic blocks of the major QTLs and important QTL hotspots; Table S13: Filtered GO enrichment terms of the genes in genetic blocks of the major QTLs and important QTL hotspots; Table S14: Gene annotations from SoyBase; Table S15: Details of field trails, meteorological conditions and soybean growth stages used to determine the soybean leaf chlorophyll-content traits.

补充材料1:表S1:不同环境下ZH重组自交系(ZH RILs)中各叶绿素含量性状间的两两相关系数;表S2:ZH重组自交系群体叶片叶绿素含量性状在不同环境间的相关系数;表S3:bin标记中的单核苷酸多态性(Single Nucleotide Polymorphism, SNP)数量;表S4:ZH重组自交系群体高密度遗传图谱中20条染色体的特征描述;表S5:ZH重组自交系群体中2639个bin标记的偏分离情况;表S6:不同环境下ZH重组自交系群体中与叶片叶绿素含量性状相关的78个数量性状位点(Quantitative Trait Locus, QTL)及70个位点;表S7:Soybase数据库发布的叶片叶绿素含量性状数量性状位点信息;表S8:本研究检测到的叶绿素含量性状数量性状位点与已发表相关位点的比较;表S9:SoyBase数据库中5个重要叶绿素含量性状数量性状位点热点区域与多个已报道的产量相关数量性状位点的关联情况;表S10:13个主要叶绿素含量性状数量性状位点遗传区间内的基因;表S11:5个重要数量性状位点热点区域遗传区间内的基因;表S12:主要数量性状位点及重要数量性状位点热点区域遗传区段内基因的基因本体(Gene Ontology, GO)富集分析;表S13:主要数量性状位点及重要数量性状位点热点区域遗传区段内基因的筛选后基因本体富集条目;表S14:SoyBase数据库提供的基因注释信息;表S15:用于测定大豆叶片叶绿素含量性状的田间试验、气象条件及大豆生育期详情。
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2023-06-28
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