College of Agronomy, Northwest A&F University, Yangling, Shaanxi, China.
Theor Appl Genet. 2013 Aug;126(8):2065-71. doi: 10.1007/s00122-013-2118-5. Epub 2013 May 21.
Hessian fly (HF), Mayetiola destructor, is an important pest of wheat (Triticum aestivum L.) worldwide. Because it has multiple biotypes that are virulent to different wheat HF resistance genes, pyramiding multiple resistance genes in a cultivar can improve resistance durability, and finding DNA markers tightly linked to these genes is essential to this process. This study identified quantitative trait loci (QTLs) for Hessian fly resistance (HFR) in the wheat cultivar 'Clark' and tightly linked DNA markers for the QTLs. A linkage map was constructed with single nucleotide polymorphism and simple sequence repeat markers using a population of recombinant inbred lines (RILs) derived from the cross 'Ning7840' × 'Clark' by single-seed descent. Two QTLs associated with resistance to fly biotype GP were identified on chromosomes 6B and 1A, with the resistance alleles contributed from 'Clark'. The QTL on 6B flanked by loci Xsnp921 and Xsnp2745 explained about 37.2 % of the phenotypic variation, and the QTL on 1A was flanked by Xgwm33 and Xsnp5150 and accounted for 13.3 % of phenotypic variation for HFR. The QTL on 6B has not been reported before and represents a novel wheat gene with resistance to HF, thus, it is designated H34. A significant positive epistasis was detected between the two QTLs that accounted for about 9.5 % of the mean phenotypic variation and increased HFR by 0.16. Our results indicated that different QTLs may contribute different degrees of resistance in a cultivar and that epistasis may play an important role in HFR.
麦长管蚜(HF),也称五月火蝇,是一种世界性的小麦重要害虫。由于其具有对不同小麦 HF 抗性基因毒性的多种生物型,因此在品种中聚合多个抗性基因可以提高抗性持久性,而找到与这些基因紧密连锁的 DNA 标记对于这一过程至关重要。本研究鉴定了小麦品种“Clark”对 HF 抗性(HFR)的数量性状位点(QTL)及其与 QTL 紧密连锁的 DNA 标记。利用“Ning7840”דClark”通过单粒传代衍生的重组自交系(RIL)群体,利用单核苷酸多态性和简单重复序列标记构建了一张连锁图谱。鉴定出 2 个与 GP 生物型抗性相关的 QTL,位于染色体 6B 和 1A 上,抗性等位基因来自“Clark”。6B 上由 Xsnp921 和 Xsnp2745 侧翼的 QTL 解释了约 37.2%的表型变异,1A 上由 Xgwm33 和 Xsnp5150 侧翼的 QTL 解释了 13.3%的 HFR 表型变异。6B 上的 QTL 以前尚未报道过,代表了一种具有 HF 抗性的新型小麦基因,因此将其命名为 H34。检测到两个 QTL 之间存在显著的正上位性,占平均表型变异的约 9.5%,并使 HFR 增加了 0.16。我们的研究结果表明,不同的 QTL 可能在一个品种中贡献不同程度的抗性,并且上位性可能在 HFR 中起重要作用。