首页> 外文期刊>Frontiers in Plant Science >A Novel QTL for Powdery Mildew Resistance in Nordic Spring Barley ( Hordeum vulgare L. ssp. vulgare) Revealed by Genome-Wide Association Study
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A Novel QTL for Powdery Mildew Resistance in Nordic Spring Barley ( Hordeum vulgare L. ssp. vulgare) Revealed by Genome-Wide Association Study

机译:北欧春季大麦的粉末状抗性的新型QTL(<斜斜体> Hordeum vulgare L. SSP。<斜体> vulgare )透露了基因组 - 范围 - 范围 - 范围 - 范围基因协会研究

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The powdery mildew fungus, Blumeria graminis f. sp. hordei is a worldwide threat to barley ( Hordeum vulgare L. ssp. vulgare ) production. One way to control the disease is by the development and deployment of resistant cultivars. A genome-wide association study was performed in a Nordic spring barley panel consisting of 169 genotypes, to identify marker-trait associations significant for powdery mildew. Powdery mildew was scored during three years (2012–2014) in four different locations within the Nordic region. There were strong correlations between data from all locations and years. In total four QTLs were identified, one located on chromosome 4H in the same region as the previously identified mlo locus and three on chromosome 6H. Out of these three QTLs identified on chromosome 6H, two are in the same region as previously reported QTLs for powdery mildew resistance, whereas one QTL appears to be novel. The top NCBI BLASTn hit of the SNP markers within the novel QTL predicted the responsible gene to be the 26S proteasome regulatory subunit, RPN1, which is required for innate immunity and powdery mildew-induced cell death in Arabidopsis . The results from this study have revealed SNP marker candidates that can be exploited for use in marker-assisted selection and stacking of genes for powdery mildew resistance in barley.
机译:白粉病真菌,Blumeria Graminis F. sp。 Hordei是对大麦的全球威胁(Hordeum Vulgare L. SSP .Vulgare)生产。一种控制疾病的一种方法是通过抗性品种的开发和部署。在由169种基因型组成的北欧春季大麦面板中进行了一种基因组 - 宽协会研究,以鉴定对白粉病的标记性关联。在北欧地区的四个不同地点的三年(2012-2014)中,粉末状霉菌被评分。来自所有地方的数据与年之间存在强烈的相关性。总共鉴定了四个QTL,位于与先前鉴定的MLO基因座和三个在相同区域的染色体4H上的一个QTL。除了染色体6H上鉴定的这三个QTL,如前所述,如前所述,如前所述,QTL用于粉状霉菌抗性,而一个QTL似乎是新颖的。新型QTL内的SNP标记的顶部NCBI BLASTN预测了负责基因,是26S蛋白酶体调节亚基RPN1,其是先天免疫和粉状疾病诱导的拟南芥的细胞死亡所必需的。该研究的结果揭示了SNP标记候选者,可以利用用于在大麦中的粉末状霉菌抗性的标记辅助选择和堆叠基因。

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