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Mapping of Major Fusarium Head Blight Resistance from Canadian Wheat cv. AAC Tenacious

机译:主要镰刀头部头部的映射从加拿大小麦CV的抗性。 AAC顽强

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摘要

Fusarium head blight (FHB) is one of the most devastating wheat disease due to its direct detrimental effects on grain-yield, quality and marketability. Resistant cultivars offer the most effective approach to manage FHB; however, the lack of different resistance resources is still a major bottleneck for wheat breeding programs. To identify and dissect FHB resistance, a doubled haploid wheat population produced from the Canadian spring wheat cvs AAC Innova and AAC Tenacious was phenotyped for FHB response variables incidence and severity, visual rating index (VRI), deoxynivalenol (DON) content, and agronomic traits days to anthesis (DTA) and plant height (PHT), followed by single nucleotide polymorphism (SNP) and simple sequence repeat (SSR) marker genotyping. A high-density map was constructed consisting of 10,328 markers, mapped on all 21 chromosomes with a map density of 0.35 cM/marker. Together, two major quantitative trait loci for FHB resistance were identified on chromosome 2D from AAC Tenacious; one of these loci on 2DS also colocated with loci for DTA and PHT. Another major locus for PHT, which cosegregates with locus for low DON, was also identified along with many minor and epistatic loci. QTL identified from AAC Tenacious may be useful to pyramid FHB resistance.
机译:Fusarium Head Blight(FHB)是由于其对粮食产量,质量和可销售性的直接不利影响而最具疣的小麦疾病之一。抗性品种提供最有效的管理FHB方法;然而,缺乏不同的抵抗资源仍然是小麦养殖计划的主要瓶颈。为了识别和剖析FHB抗性,从加拿大春小麦CVS AAC Innova和AAC产生的双倍倍细种群对于FHB响应变量的发病率和严重程度,视觉评级指数(VRI),脱氧性苯酚(Don)内容和农艺性状而表现对于花分脉(DTA)和植物高(PHT)的日子,其次是单核苷酸多态性(SNP)和简单的序列重复(SSR)标记基因分型。构建高密度图,由10,328个标记构成,映射在所有21个染色体上,地图密度为0.35cm /标记。在AAC顽强的染色体2D上鉴定了两种主要定量性状基因座,从AAC顽强; 2ds上的其中一个基因座也与DTA和PHT的基因座进行了分解。除了许多未成年人和背景基因座,还鉴定了庞大的PHT的另一个主要基因座,其中具有低Don的轨迹。从AAC顽强识别的QTL可能对金字塔FHB电阻有用。

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