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Confirmation of quantitative trait loci for resistance to multiple-HG types of soybean cyst nematode (Heterodera glycines Ichinohe)

机译:确认对多种HG型大豆孢囊线虫(Heterodera glycines Ichinohe)的抗性的定量性状基因座

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摘要

Genetic analysis of resistance of plant introduction (PI) 438489B to soybean cyst nematode (SCN) have shown that this PI is highly resistant to many SCN HG types. However, validation of the previously detected quantitative trait loci (QTL) has not been done. In this study, 250 F2:3 progeny of a Magellan (susceptible) × PI 438489B (resistant) cross were used for primary genetic mapping to detect putative QTL for resistance to five SCN HG types. QTL confirmation study was subsequently conducted using F6:7 recombinant inbred lines (RILs) derived from the same cross. Simple sequence repeat (SSR) and single nucleotide polymorphism (SNP) markers were employed for molecular genotyping. Interval mapping (IM), permutation tests, cofactor selection, and composite interval mapping (CIM) were performed to identify and map QTL. Results showed that five QTL intervals were associated with resistance to either multiple- or single-HG types of SCN. Among these, two major QTL for resistance to multiple-SCN HG types were mapped to chromosomes (Chr.) 8 and 18, consistent with the known rhg1 and Rhg4 locations. The other QTL were mapped to Chr. 4. The results of our study confirmed earlier reported SCN resistance QTL in this PI. Moreover, SSR and SNP molecular markers tightly linked to these QTL can be useful for the near-isogenic lines (NILs) development aiming to fine-mapping of these QTL regions and map-based cloning of SCN resistance candidate genes.
机译:植物导入(PI)438489B对大豆孢囊线虫(SCN)的抗性的遗传分析表明,该PI对许多SCN HG类型具有高度抗性。但是,尚未完成对先前检测到的数量性状基因座(QTL)的验证。在这项研究中,使用麦哲伦(易感)×PI 438489B(抗性)杂交的250 F2:3 子代进行主要的遗传作图,以检测对五种SCN HG抗性的假定QTL。随后使用来源于同一杂交品种的F6:7 重组自交系(RIL)进行了QTL确认研究。简单序列重复(SSR)和单核苷酸多态性(SNP)标记用于分子基因分型。执行间隔映射(IM),置换测试,辅助因子选择和复合间隔映射(CIM)来识别和映射QTL。结果表明,五个QTL间隔与对多种或单一HG型SCN的抗性相关。其中,两个对多种SCN HG类型具有抗性的主要QTL被定位到8号和18号染色体上,与已知的rhg1和Rhg4位置一致。另一个QTL映射到Chr。 4.我们的研究结果证实了该PI中先前报道的SCN抗性QTL。此外,与这些QTL紧密相连的SSR和SNP分子标记可用于近等基因系(NIL)的开发,旨在精细映射这些QTL区域并基于图谱克隆SCN抗性候选基因。

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