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首页> 外文期刊>Theoretical and Applied Genetics >Mapping QTL associated with resistance to Fusarium head blight in the Nanda2419 × Wangshuibai population. I. Type II resistance
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Mapping QTL associated with resistance to Fusarium head blight in the Nanda2419 × Wangshuibai population. I. Type II resistance

机译:绘制与Nanda2419×王水白种群对枯萎病抗性相关的QTL。一,二类抗性

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摘要

Scab disease caused by Fusarium spp. has been a major concern for both wheat producers and consumers. Deployment of scab-resistant varieties is the major strategy to curb this disease. To identify the scab resistance genes in wheat cv. Wangshuibai, we produced a F6:7 recombinant inbred line (RIL) population by crossing Wangshuibai with the scab-susceptible cultivar Nanda2419. The RILs were evaluated for scab resistance in the field by single floret inoculation in two replicates in 2002 and one replicate in 2003. The number of diseased spikelets (NDS) and the length of diseased rachides (LDR) were investigated to reflect the Type II resistance. Among 654 simple sequence repeat (SSR) markers surveyed, 326 were found to be polymorphic between the parents. A partial molecular map was constructed with these markers that covered over 2,210 cM of the wheat genome. Six chromosome regions showed association with both NDS and LDR in a one-way anova analysis, even though the variation explained by them varied between the two traits. Eight intervals were detected for their association with Type II resistance through interval mapping, five of which were not identified in single-point analysis. The quantitative trait loci (QTL) with large effects were the ones in the interval of Xgwm533-3–Xgwm533-1 on chromosome 3B and in the interval of Xwmc539–Xbarc024 on chromosome 6B, whose alleles favoring resistance originate from Wangshuibai. In addition, a QTL whose resistance allele originated from Nanda2419 was consistently detected in the interval of Xs1021m–Xgwm47-1 on chromosome 2B. These results suggest that Wangshuibai is the major source for Type II resistance in this population. The markers associated with these QTL would facilitate the use of scab-resistant genes of Wangshuibai in scab resistance breeding programs of wheat.
机译:由镰刀菌属引起的疮病。一直是小麦生产者和消费者关注的主要问题。部署抗结ab病的品种是遏制这种疾病的主要策略。为了鉴定小麦cv中的抗结ab性基因。 Wangshuibai,我们通过将Wangshuibai与易患ab病的Nanda2419杂交,产生了F6:7 重组近交系(RIL)种群。在2002年通过两次小花接种和2003年一次小花接种对RIL进行了田间sc疮抗性评估。研究了患病小穗的数量(NDS)和患病ra的长度(LDR)以反映II型抗药性。在调查的654个简单序列重复(SSR)标记中,有326个在父母之间存在多态性。使用这些标记构建了覆盖2220 cM小麦基因组的部分分子图。六个染色体区域在单向方差分析中显示了与NDS和LDR的关联,即使它们解释的变异在两个特征之间有所不同。通过间隔作图检测到八个间隔与II型耐药相关,其中五个在单点分析中未发现。影响最大的数量性状基因座(QTL)位于3B染色体上的Xgwm533-3–Xgwm533-1区间,以及6B染色体上的Xwmc539–Xbarc024的区间,其有利于抗性的等位基因起源于王水白。此外,在2B号染色体上Xs1021m–Xgwm47-1的区间内,始终检测到一个抗性等位基因来自Nanda2419的QTL。这些结果表明,王水白是该人群中II型抗药性的主要来源。与这些QTL相关的标记将促进王水白抗结ab基因在小麦抗结breed育种计划中的使用。

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  • 来源
    《Theoretical and Applied Genetics》 |2004年第7期|1504-1511|共8页
  • 作者单位

    National Key Lab of Crop Genetics and Germplasm Enhancement College of Agricultural Sciences Nanjing Agricultural University;

    National Key Lab of Crop Genetics and Germplasm Enhancement College of Agricultural Sciences Nanjing Agricultural University;

    National Key Lab of Crop Genetics and Germplasm Enhancement College of Agricultural Sciences Nanjing Agricultural University;

    National Key Lab of Crop Genetics and Germplasm Enhancement College of Agricultural Sciences Nanjing Agricultural University;

    National Key Lab of Crop Genetics and Germplasm Enhancement College of Agricultural Sciences Nanjing Agricultural University;

    National Key Lab of Crop Genetics and Germplasm Enhancement College of Agricultural Sciences Nanjing Agricultural University;

    National Key Lab of Crop Genetics and Germplasm Enhancement College of Agricultural Sciences Nanjing Agricultural University;

    National Key Lab of Crop Genetics and Germplasm Enhancement College of Agricultural Sciences Nanjing Agricultural University;

    National Key Lab of Crop Genetics and Germplasm Enhancement College of Agricultural Sciences Nanjing Agricultural University;

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