Department of Molecular Biology and Genetic Engineering, G. B. Pant University of Agriculture and Technology, Pantnagar, Uttrakhand, 263145, India.
Department of Genetics and Plant Breeding, Ch. Charan Singh University, Meerut, 250004, India.
Theor Appl Genet. 2022 Jul;135(7):2385-2405. doi: 10.1007/s00122-022-04119-7. Epub 2022 Jun 14.
In wheat, multiple disease resistance meta-QTLs (MDR-MQTLs) and underlying candidate genes for the three rusts were identified which may prove useful for development of resistant cultivars. Rust diseases in wheat are a major threat to global food security. Therefore, development of multiple disease-resistant cultivars (resistant to all three rusts) is a major goal in all wheat breeding programs worldwide. In the present study, meta-QTLs and candidate genes for multiple disease resistance (MDR) involving all three rusts were identified using 152 individual QTL mapping studies for resistance to leaf rust (LR), stem rust (SR), and yellow rust (YR). From these 152 studies, a total of 1,146 QTLs for resistance to three rusts were retrieved, which included 368 QTLs for LR, 291 QTLs for SR, and 487 QTLs for YR. Of these 1,146 QTLs, only 718 QTLs could be projected onto the consensus map saturated with 2, 34,619 markers. Meta-analysis of the projected QTLs resulted in the identification of 86 MQTLs, which included 71 MDR-MQTLs. Ten of these MDR-MQTLs were referred to as the 'Breeders' MQTLs'. Seventy-eight of the 86 MQTLs could also be anchored to the physical map of the wheat genome, and 54 MQTLs were validated by marker-trait associations identified during earlier genome-wide association studies. Twenty MQTLs (including 17 MDR-MQTLs) identified in the present study were co-localized with 44 known R genes. In silico expression analysis allowed identification of several differentially expressed candidate genes (DECGs) encoding proteins carrying different domains including the following: NBS-LRR, WRKY domains, F-box domains, sugar transporters, transferases, etc. The introgression of these MDR loci into high-yielding cultivars should prove useful for developing high yielding cultivars with resistance to all the three rusts.
在小麦中,鉴定出了多个针对三种锈病的抗性元数量性状位点(MDR-MQTLs)和潜在的候选基因,这可能对培育抗性品种有用。小麦锈病是全球粮食安全的主要威胁。因此,培育具有多种抗性(对三种锈病均具有抗性)的品种是全球所有小麦育种种质资源的主要目标。在本研究中,使用针对叶锈病(LR)、条锈病(SR)和秆锈病(YR)抗性的 152 项个体 QTL 作图研究,鉴定了涉及三种锈病的 MDR 元数量性状位点和候选基因。从这 152 项研究中,共检索到了 1146 个对三种锈病的抗性 QTL,其中包括 368 个对 LR 的 QTL、291 个对 SR 的 QTL 和 487 个对 YR 的 QTL。在这 1146 个 QTL 中,只有 718 个 QTL可以被定位到用 29619 个标记饱和的共识图谱上。对这些预测 QTL 的元分析鉴定了 86 个 MQTL,其中包括 71 个 MDR-MQTL。这些 MDR-MQTL 中有 10 个被称为“育种者 MQTL”。其中 78 个 MQTL 也可以被锚定到小麦基因组的物理图谱上,54 个 MQTL 可以通过早期全基因组关联研究中鉴定的标记-性状关联来验证。本研究中鉴定的 20 个 MQTL(包括 17 个 MDR-MQTL)与 44 个已知的 R 基因共定位。在计算机上进行表达分析,鉴定出了几个具有不同结构域的差异表达候选基因(DECGs),这些基因编码的蛋白质具有不同的结构域,包括以下几种:NBS-LRR、WRKY 结构域、F-box 结构域、糖转运蛋白、转移酶等。将这些 MDR 位点导入高产品种中,有望培育出对三种锈病均具有抗性的高产品种。