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Rice Genome Resequencing Reveals a Major Quantitative Trait Locus for Resistance to Bakanae Disease Caused by Fusarium fujikuroi

机译:水稻基因组重测序揭示了对富士镰刀菌引起的巴卡那病抗性的主要定量性状基因座

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摘要

Bakanae disease (BD), caused by the fungal pathogen Fusarium fujikuroi, has become a serious threat in rice-cultivating regions worldwide. In the present study, quantitative trait locus (QTL) mapping was performed using F2 and F3 plants derived after crossing a BD-resistant and a BD-susceptible Korean japonica rice variety, ‘Samgwang’ and ‘Junam’, respectively. Resequencing of ‘Junam’ and ‘Samgwang’ genomes revealed 151,916 DNA polymorphisms between the two varieties. After genotyping 188 F2 plants, we constructed a genetic map comprising 184 markers, including 175 kompetitive allele-specific PCR markers, eight cleaved amplified polymorphic sequence (CAPS) markers, and a derived CAPS (dCAPS) marker. The degree of BD susceptibility of each F2 plant was evaluated on the basis of the mortality rate measured with corresponding F3 progeny seedlings by in vitro screening. Consequently, qFfR9, a major QTL, was discovered at 30.1 centimorgan (cM) on chromosome 9 with a logarithm of the odds score of 60.3. For the QTL interval, 95% probability lay within a 7.24–7.56 Mbp interval. In this interval, we found that eight genes exhibited non-synonymous single nucleotide polymorphisms (SNPs) by comparing the ‘Junam’ and ‘Samgwang’ genome sequence data, and are possibly candidate genes for qFfR9; therefore, qFfR9 could be utilized as a valuable resource for breeding BD-resistant rice varieties.
机译:由真菌病原菌Fusarium fujikuroi引起的Bakanae病(BD)已成为全球水稻种植地区的严重威胁。在本研究中,定量性状位点(QTL)定位是使用分别与抗BD和对BD敏感的韩国粳稻品种Samgwang和Junam杂交后得到的F2和F3植物进行的。对'Junam'和'Samgwang'基因组的重新测序揭示了两个变种之间的151,916个DNA多态性。对188个F2植物进行基因分型后,我们构建了一个包含184个标记的遗传图谱,其中包括175个竞争性等位基因特异性PCR标记,八个裂解的扩增多态序列(CAPS)标记和一个衍生的CAPS(dCAPS)标记。通过在体外筛选中,用相应的F3后代幼苗测得的死亡率来评估每种F2植物的BD易感性程度。因此,在9号染色体上以30.1厘摩(cM)发现了主要的QTL qFfR9,对数得分为60.3。对于QTL间隔,95%的概率位于7.24–7.56 Mbp间隔内。在此间隔内,通过比较'Junam'和'Samgwang'基因组序列数据,我们发现八个基因表现出非同义的单核苷酸多态性(SNP),并且可能是qFfR9的候选基因。因此,qFfR9可作为育种抗BD水稻的宝贵资源。

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