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Genetic analysis of durable resistance to Magnaporthe oryzae in the rice accession Gigante Vercelli identified two blast resistance loci

机译:水稻品种Gigante Vercelli对稻瘟病菌的持久抗性的遗传分析确定了两个稻瘟病抗性位点

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Rice cultivars exhibiting durable resistance to blast, the most important rice fungal disease provoking up to 30 % of rice losses, are very rare and searching for sources of such a resistance represents a priority for rice-breeding programs. To this aim we analyzed Gigante Vercelli (GV) and Vialone Nano (VN), two temperate japonica rice cultivars in Italy displaying contrasting response to blast, with GV showing a durable and broad-spectrum resistance, whereas VN being highly susceptible. An SSR-based genetic map developed using a GV x VN population segregating for blast resistance identified two blast resistance loci, localized to the long arm of chromosomes 1 and 4 explaining more than 78 % of the observed phenotypic variation for blast resistance. The pyramiding of two blast resistance QTLs was therefore involved in the observed durable resistance in GV. Mapping data were integrated with information obtained from RNA-seq expression profiling of all classes of resistance protein genes (resistance gene analogs, RGAs) and with the map position of known cloned or mapped blast resistance genes to search candidates for the GV resistant response. A co-localization of RGAs with the LOD peak or the marker interval of the chromosome 1 QTL was highlighted and a valuable tool for selecting the resistance gene during breeding programs was developed. Comparative analysis with known blast resistance genes revealed co-positional relationships between the chromosome 1 QTL with the Pi35/Pish blast resistance alleles and showed that the chromosome 4 QTL represents a newly identified blast resistance gene. The present genetic analysis has therefore allowed the identification of two blast resistance loci in the durable blast-resistant rice cultivar GV and tools for molecular selection of these resistance genes.
机译:表现出对稻瘟病的持久抗性的水稻品种非常罕见,稻瘟病是最重要的水稻真菌病害,可导致水稻损失高达30%,寻找这种抗性的来源是水稻育种计划的重点。为此,我们分析了意大利的两个温带粳稻品种Gigante Vercelli(GV)和Vialone Nano(VN),它们对稻瘟病的反应不同,其中GV表现出耐久和广谱抗性,而VN极易感。一个基于SSR的遗传图谱,使用针对瘟疫抗性的GV x VN种群进行分离,鉴定出两个瘟病抗性基因座,位于染色体1和4的长臂上,解释了观察到的瘟疫抗性表型变异的78%以上。因此,两个防爆抗性QTL的金字塔参与了GV中观察到的持久抗性。映射数据与从所有类型的抗性蛋白基因(抗性基因类似物,RGA)的RNA-seq表达谱获得的信息整合在一起,并与已知的克隆或映射的blast抗性基因的图谱位置整合在一起,以寻找GV抗性应答的候选对象。突出显示了RGA与1号QTL的LOD峰或标记间隔的共定位,并开发了一种在育种程序中选择抗性基因的有价值的工具。与已知的抗稻瘟病基因的比较分析揭示了染色体1 QTL与Pi35 / Pish稻瘟病抗性等位基因之间的共位关系,并表明4号染色体QTL代表了一个新近鉴定的抗稻瘟病基因。因此,目前的遗传分析已允许在持久的抗稻瘟病品种GV中鉴定出两个抗稻瘟病基因座,并为这些抗性基因的分子选择提供了工具。

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