首页> 外文期刊>Canadian Journal of Plant Science >Using the RTM-GWAS procedure to detect the drought tolerance QTL-allele system at the seedling stage under sand culture in a half-sib population of soybean [Glycine max (L.) Merr.]
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Using the RTM-GWAS procedure to detect the drought tolerance QTL-allele system at the seedling stage under sand culture in a half-sib population of soybean [Glycine max (L.) Merr.]

机译:使用RTM-GWAs程序检测在沙培中的幼苗阶段在沙培中的幼苗阶段在半Soybean群[Glycine Max(L.)Merr.]中检测幼苗阶段的QTL-等位基因系统。

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摘要

Soybean crops face drought as one of their major yield barriers. Dissecting the complete genetic architecture of drought tolerance (DT) is an ongoing challenge for soybean breeders. A half-sib population with 404 lines consisting of two recombinant inbred line (RIL) populations with M8206 as the joint parent (M8206 x TongShan and ZhengYang x M8206) was established and tested for their DT under sand culture. The population was sequenced using RAD-seq (restriction-site-associated DNA sequencing) filtered with minor allele frequency (MAF) >= 0.01, and 55 936 single nucleotide polymorphisms (SNPs) were obtained and organized into 6137 SNPLDBs (SNP linkage disequilibrium blocks). The innovative RTM-GWAS (restricted two stage multi-locus genome-wide association study) identified 46 novel QTLs with 107 alleles on an average of 38.67% of the phenotypic variance (PV) collectively for relative plant length (RPL) and relative plant dry weight (RPDW). The identified quantitative trait loci (QTLs) with their corresponding alleles for RPL and RPDW were structured into QTL-allele matrices, showing the DT genetic architecture of the three parents and half-sib population. From the matrices, the possible best genotype was predicted to have their weighted average value (WAV) over two indicators 1.663, while the top 10 optimal crosses among RILs with 95th percentile WAV was 0.872-0.960, transgressive over the parents (0.469-0.675) but much less than 1.663, depicting further pyramiding potential. From the detected QTL-allele system, 63 potential candidate genes collectively for both RPL and RPDW indicators explaining on average of 26.94% PV were annotated and chi(2)-tested as a DT potential candidate gene system involving nine biological processes, endorsing the genetic complexity of DT.
机译:大豆庄稼面临干旱作为其主要产量障碍之一。解剖耐旱性(DT)的完整遗传建筑是大豆育种者的持续挑战。具有404条线的半Sib群,由两个重组近交系(RIL)群体组成,其中具有M8206作为关节父母(M8206 x铜山和正阳X M8206),并在沙培中进行DT。使用较小等位基因频率(MAF)> = 0.01和55 936个单核苷酸多态性(SNP)进行测序,并将其组织成6137个SNPLDB(SNP键合不平衡块)。创新的rtm-gwas(限制两级多基因座基因组 - 宽协会研究)鉴定了46个新型QTL,平均占相对植物长度(RPL)和相对植物干燥的表型差异(PV)的38.67%重量(rpdw)。将鉴定的定量性状基因座(QTL)具有相应的RPL和RPDW的等位基因的构建成QTL - 等位基因矩阵,显示了三个父母和半SIB群体的DT基因架构。从基质中,预测可能的最佳基因型在两个指标中具有它们的加权平均值(WAV),而第95百百分点的RIL之间的最佳十字架为0.872-0.960,越过父母(0.469-0.675)但远小于1.663,描绘了进一步的金字塔潜力。从检测到的QTL-等位基因系统中,共同统称的63个潜在的候选基因,平均解释了26.94%的PV和Chi(2) - 作为涉及九种生物过程的DT潜在候选基因系统,认可遗传DT的复杂性。

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