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首页> 外文期刊>Frontiers in Plant Science >Identification of QTL and Qualitative Trait Loci for Agronomic Traits Using SNP Markers in the Adzuki Bean
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Identification of QTL and Qualitative Trait Loci for Agronomic Traits Using SNP Markers in the Adzuki Bean

机译:使用小豆中的SNP标记鉴定农艺性状的QTL和定性性状位点

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The adzuki bean ( Vigna angularis ) is an important grain legume. Fine mapping of quantitative trait loci (QTL) and qualitative trait genes plays an important role in gene cloning, molecular-marker-assisted selection (MAS), and trait improvement. However, the genetic control of agronomic traits in the adzuki bean remains poorly understood. Single-nucleotide polymorphisms (SNPs) are invaluable in the construction of high-density genetic maps. We mapped 26 agronomic QTLs and five qualitative trait genes related to pigmentation using 1,571 polymorphic SNP markers from the adzuki bean genome via restriction-site-associated DNA sequencing of 150 members of an F_(2)population derived from a cross between cultivated and wild adzuki beans. We mapped 11 QTLs for flowering time and pod maturity on chromosomes 4, 7, and 10. Six 100-seed weight (SD100WT) QTLs were detected. Two major flowering time QTLs were located on chromosome 4, firstly VaFld4.1 (PEVs 71.3%), co-segregating with SNP marker s690-144110, and VaFld4.2 (PEVs 67.6%) at a 0.974 cM genetic distance from the SNP marker s165-116310. Three QTLs for seed number per pod ( Snp3.1, Snp3.2 , and Snp4.1 ) were mapped on chromosomes 3 and 4. One QTL VaSdt4.1 of seed thickness (SDT) and three QTLs for branch number on the main stem were detected on chromosome 4. QTLs for maximum leaf width (LFMW) and stem internode length were mapped to chromosomes 2 and 9, respectively. Trait genes controlling the color of the seed coat, pod, stem and flower were mapped to chromosomes 3 and 1. Three candidate genes, VaAGL, VaPhyE , and VaAP2 , were identified for flowering time and pod maturity. VaAGL encodes an agamous-like MADS-box protein of 379 amino acids. VaPhyE encodes a phytochrome E protein of 1,121 amino acids. Four phytochrome genes ( VaPhyA1, VaPhyA2, VaPhyB , and VaPhyE ) were identified in the adzuki bean genome. We found candidate genes VaAP2/ERF.81 and VaAP2/ERF.82 of SD100WT, VaAP2-s4 of SDT, and VaAP2/ERF.86 of LFMW. A candidate gene VaUGT related to black seed coat color was identified. These mapped QTL and qualitative trait genes provide information helpful for future adzuki bean candidate gene cloning and MAS breeding to improve cultivars with desirable growth periods, yields, and seed coat color types.
机译:小豆(Vigna angularis)是一种重要的谷物豆类。数量性状基因座(QTL)和定性性状基因的精细定位在基因克隆,分子标记辅助选择(MAS)和性状改良中起重要作用。但是,对红豆农艺性状的遗传控制仍然知之甚少。单核苷酸多态性(SNPs)在高密度遗传图谱的构建中具有不可估量的价值。我们通过对150个F_(2)种群的成员进行限制性位点相关的DNA测序,使用来自红豆基因组的1,571个多态性SNP标记,绘制了26个与色素沉着相关的农艺QTL和5个与色素沉着有关的定性性状基因,该F_(2)种群的150个成员来自耕种和野生红豆的杂交豆子。我们在11个QTL上分别绘制了第4、7和10号染色体上的开花时间和豆荚成熟度,检测到六个100种子重(SD100WT)QTL。两个主要的开花时间QTL位于第4号染色体上,第一个是VaFld4.1(PEVs为71.3%),与SNP标记s690-144110共分离,而VaFld4.2(PEVs为67.6%)与SNP标记的遗传距离为0.974 cM。 s165-116310。每个豆荚的种子数量的三个QTL(Snp3.1,Snp3.2和Snp4.1)定位在3号和4号染色体上。一个主种子茎的QTL VaSdt4.1种子厚度(SDT)和三个QTL分支数在主茎上。在4号染色体上检测到。最大叶宽(LFMW)和茎节间长度的QTL分别映射到2号和9号染色体。将控制种皮,荚果,茎和花的颜色的性状基因定位到3号和1号染色体。确定了三个候选基因,即VaAGL,VaPhyE和VaAP2,用于开花时间和荚果成熟度。 VaAGL编码一个379个氨基酸的类非球状MADS-box蛋白。 VaPhyE编码一个1,121个氨基酸的植物色素E蛋白。在小豆基因组中鉴定出四个植物色素基因(VaPhyA1,VaPhyA2,VaPhyB和VaPhyE)。我们找到了SD100WT的候选基因VaAP2 / ERF.81和VaAP2 / ERF.82,SDT的VaAP2-s4和LFMW的VaAP2 / ERF.86。鉴定了与黑种皮颜色有关的候选基因VaUGT。这些定位的QTL和定性性状基因为将来的小红豆候选基因克隆和MAS育种提供有用的信息,以改善具有所需生长期,产量和种皮颜色类型的品种。

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