Department of Plant and Environmental Sciences, Clemson University, Coastal Research and Education Center, Charleston, SC, 29414, USA.
US Vegetable Laboratory, USDA, ARS, 2700 Savannah Highway, Charleston, SC, 29414, USA.
Theor Appl Genet. 2023 Apr 3;136(4):91. doi: 10.1007/s00122-023-04333-x.
This is the first identification of QTLs underlying resistance in Cucumis melo to an isolate of Pseudoperonospora cubensis identified as Clade 2/mating type A1. Pseudoperonospora cubensis, causal organism of cucurbit downy mildew (CDM), causes severe necrosis and defoliation on Cucumis melo (melon). A recombinant inbred line population (N = 169) was screened against an isolate of P. cubensis (Clade 2/mating type A1) in replicated greenhouse and growth chamber experiments. SNPs (n = 5633 bins) identified in the RIL population were used for quantitative trait loci (QTL) mapping. A single major QTL on chromosome 10 (qPcub-10.3-10.4) was consistently associated with resistance across all experiments, while a second major QTL on chromosome 8 (qPcub-8.3) was identified only in greenhouse experiments. These two major QTLs were identified on the same chromosomes (8 and 10) but in different locations as two major QTLs (qPcub-8.2 and qPcub-10.1) previously identified for resistance to P. cubensis Clade 1/mating type A2. Kompetitive allele-specific PCR (KASP) markers were developed for these four major QTLs and validated in the RIL population through QTL mapping. These markers will provide melon breeders a high-throughput genotyping toolkit for development of melon cultivars with broad tolerance to CDM.
这是首次鉴定出黄瓜对假霜霉病菌(Pseudoperonospora cubensis)分离株(鉴定为 Clade 2/mating type A1)的抗性 QTL。假霜霉病菌是瓜类霜霉病(CDM)的致病因子,可导致甜瓜(Cucumis melo)严重坏死和落叶。在重复温室和生长室实验中,对重组自交系群体(N=169)进行了针对 P. cubensis 分离株(Clade 2/mating type A1)的筛选。在 RIL 群体中鉴定的 SNPs(n=5633 个 bin)用于数量性状基因座(QTL)作图。在所有实验中,10 号染色体上的单个主要 QTL(qPcub-10.3-10.4)与抗性一致相关,而 8 号染色体上的第二个主要 QTL(qPcub-8.3)仅在温室实验中鉴定到。这两个主要 QTL 位于相同的染色体(8 和 10)上,但在不同的位置,如先前鉴定的对 P. cubensis Clade 1/mating type A2 抗性的两个主要 QTL(qPcub-8.2 和 qPcub-10.1)。针对这四个主要 QTL 开发了竞争等位基因特异性 PCR(KASP)标记,并通过 QTL 作图在 RIL 群体中进行了验证。这些标记将为甜瓜育种者提供一个高通量基因分型工具包,用于开发对 CDM 具有广泛耐受性的甜瓜品种。