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Genetic analysis of soil-borne cereal mosaic virus response in durum wheat: evidence for the role of the major quantitative trait locus QSbm.ubo-2BS and of minor quantitative trait loci.

机译:硬粒小麦中土壤传播的谷物花叶病毒反应的遗传分析:主要数量性状基因座 QSbm.ubo-2BS 和次要数量性状基因座的作用的证据。

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Genetic analysis of Soil-Borne Cereal Mosaic Virus (SBCMV) resistance in durum wheat was carried out using a population of 180 recombinant inbred lines (RILs) obtained from Simeto (susceptible) x Levante (resistant). The RILs were characterized for SBCMV response in the field under severe and uniform SBCMV infection in two growing seasons and genotyped with simple sequence repeat (SSR) and Diversity Arrays TechnologyReg. markers. Transgressive segregation was observed for disease reaction as estimated by symptom severity scores and virus concentration in leaves. Heritability of the disease response was high, with h2 values consistently above 80%. A major quantitative trait locus (QTL) (QSbm.ubo-2BS) in the distal telomeric region of chromosome 2BS accounted for 60-70% of the phenotypic variation for symptom severity, 40-55% for virus concentration and 15-30% for grain yield. The favorable allele was contributed by Levante. Seven additional QTL influenced SBCMV resistance, with the low-susceptibility allele contributed by Levante at five QTL and by Simeto at the remaining two. The meta-QTL analysis carried out using the data from two mapping populations (Simeto x Levante and Meridiano x Claudio) suggests that in both populations SBCMV resistance is likely controlled by QSbm.ubo-2BS. Our results confine QSbm.ubo-2BS to a c. 2-cM-wide interval flanked by SSR markers that are already being used for marker-assisted selection.Digital Object Identifier http://dx.doi.org/10.1007/s11032-011-9673-8
机译:使用从Simeto(易感)x Levante(抗性)获得的180个重组自交系(RIL),对硬粒小麦中的土壤-波恩谷物花叶病毒(SBCMV)抗性进行了遗传分析。在两个生长季节中,在严重和均匀的SBCMV感染下,在野外对RIL进行SBCMV反应的表征,并使用简单序列重复(SSR)和多样性阵列技术进行基因分型。标记。通过症状严重程度评分和叶片中病毒浓度估计,可以观察到疾病反应的过度分离。疾病反应的遗传力很高, h 2 值始终高于80%。 2BS染色体远端端粒区域的主要数量性状基因座(QTL)( QSbm.ubo-2BS )占症状严重性表型变异的60-70%,病毒占40-55%浓度和谷物产量的15-30%。有利的等位基因由Levante贡献。七个额外的QTL影响了SBCMV耐药性,其中Levante在五个QTL上贡献了低敏感性等位基因,在Simeto其余两个上则贡献了Simeto。使用来自两个作图种群(Simeto x Levante和Meridiano x Claudio)的数据进行的meta-QTL分析表明,在这两个种群中,SBCMV抗性可能受 QSbm.ubo-2BS 控制。我们的结果将 QSbm.ubo-2BS 限制为c。 2厘米宽的间隔两侧是已经用于标记辅助选择的SSR标记数字对象标识符http://dx.doi.org/10.1007/s11032-011-9673-8

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