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Unravelling the genetic basis of Fusarium seedling rot resistance in the MAGIC maize population: novel targets for breeding

机译:阐明MAGIC玉米种群中枯萎病幼苗抗腐性的遗传基础:新的育种目标

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摘要

Fungal infection by Fusarium verticillioides is cause of prevalent maize disease leading to substantial reductions in yield and grain quality worldwide. Maize resistance to the fungus may occur at different developmental stages, from seedling to maturity. The breeding of resistant maize genotypes may take advantage of the identification of quantitative trait loci (QTL) responsible for disease resistance already commenced at seedling level. The Multi-parent Advance Generation Intercross (MAGIC) population was used to conduct high-definition QTL mapping for Fusarium seedling rot (FSR) resistance using rolled towel assay. Infection severity level, seedling weight and length were measured on 401 MAGIC maize recombinant inbred lines (RILs). QTL mapping was performed on reconstructed RIL haplotypes. One-fifth of the MAGIC RILs were resistant to FSR and 10 QTL were identified. For FSR, two QTL were detected at 2.8 Mb and 241.8 Mb on chromosome 4, and one QTL at 169.6 Mb on chromosome 5. Transcriptomic and sequencing information generated on the MAGIC founder lines was used to guide the identification of eight candidate genes within the identified FSR QTL. We conclude that the rolled towel assay applied to the MAGIC maize population provides a fast and cost-effective method to identify QTL and candidate genes for early resistance to F. verticillioides in maize.
机译:黄萎病菌引起的真菌感染是普遍的玉米病的病因,导致全球单产和粮食质量大幅下降。玉米对真菌的抗性可能发生在从幼苗到成熟的不同发育阶段。抗性玉米基因型的育种可以利用鉴定已经在幼苗水平开始引起疾病抗性的数量性状基因座(QTL)的优势。使用滚动毛巾测定法,使用多亲本代杂交(MAGIC)群体进行镰刀菌幼苗腐烂(FSR)抗性的高清晰度QTL作图。在401 MAGIC玉米重组自交系(RIL)上测量感染的严重程度,幼苗重量和长度。对重构的RIL单倍型进行QTL作图。五分之一的MAGIC RIL对FSR有抗性,并鉴定出10个QTL。对于FSR,在4号染色体上检测到两个QTL,分别位于2.8 Mb和241.8 Mb处,而在5号染色体上检测到一个QTL,其在169.6 Mb处被用于在MAGIC奠基人品系上生成的转录组学和测序信息用于指导已鉴定的八个候选基因的鉴定。 FSR QTL。我们得出的结论是,应用于MAGIC玉米种群的卷纸毛巾测定法提供了一种快速且经济高效的方法来鉴定QTL和候选基因,从而对玉米中的F. verticillioides产生早期抗性。

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