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Identification of bakanae disease resistance loci in japonica rice through genome wide association study

机译:基因组宽协会研究鉴定粳稻粳稻的抗病抗病基因座

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Background Bakanae disease, caused by seed-borne Fusarium species, mainly F. fujikuroi , is a rice disease whose importance is considerably increasing in several rice growing countries, leading to incremental production losses. ResultsA germplasm collection of japonica rice was screened for F. fujikuroi resistance, allowing the identification of accessions with high-to-moderate levels of resistance to bakanae . A GWAS approach uncovered two genomic regions highly associated with the observed phenotypic variation for response to bakanae infection on the short arm of chromosome 1 (named as qBK1_628091 ) and on the long arm of chromosome 4 (named as qBK4_31750955 ). High levels of phenotypic resistance to bakanae were associated to the cumulated presence of the resistant alleles at the two resistance loci, suggesting that they can provide useful levels of disease protection in resistance breeding. A fine comparison with the genomic positions of qBK1_628091 and qBK4_31750955 with respect to the QTLs for bakanae resistance reported in the literature suggests that the resistant loci here described represent new genomic regions associated to F. fujikuroi resistance. A search for candidate genes with a putative role in bakanae resistance was conducted considering all the annotated genes and F. fujikuroi -related DEGs included in the two genomic regions highlighting several gene functions that could be involved in resistance, thus paving the way to the functional characterization of the resistance loci. ConclusionsNew effective sources for bakanae resistance were identified on rice chromosomes 1 and 4 and tools for resistance breeding are provided.
机译:背景,由种子传播的镰刀菌,主要是F. Fujikuroi引起的疾病是一种稻瘟病,其重要性在几米生长国家的重要性增加,导致生产损失增量。培养出粳稻的结果培育率为F.Fijikuroi抗性,允许鉴定具有高度至中等抗性水平的抗癌。 GWAS方法发现了与观察到的表型变异高度相关的基因组区域,以应对染色体短臂的Bakanae感染(命名为QBK1_628091)和染色体4的长臂(命名为QBK4_31750955)。对Bakanae的高水平表型抗性与两种抗性基因座的抗性等位基因的累积存在相关,表明它们可以提供抗性育种的有用水平的疾病保护水平。与QBK1_628091和QBK4_31750955相对于文献中的QTL的QTL的基因组位置的细比较表明,这里的抗性基因座代表了与F.Fijikuroi抗性相关的新基因组区域。考虑到在抗Bakanae抗性中具有推定作用的候选基因的搜索,考虑到两个基因组区域中包含的所有注释的基因和F.Fujikuroi相关的次数,突出了可能参与抵抗的几种基因功能,从而铺平到功能的途径阻力位点的表征。结论在水稻染色体1和4上鉴定了抗巴基纳抗性的有效来源,提供了抗性育种的工具。

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