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Identification of Novel Quantitative Trait Loci Linked to Crown Rot Resistance in Spring Wheat

机译:与春小麦冠腐病抗性相关的新型数量性状基因座的鉴定

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摘要

Crown rot (CR), caused by various Fusarium species, is a major disease in many cereal-growing regions worldwide. Fusarium culmorum is one of the most important species, which can cause significant yield losses in wheat. A set of 126 advanced International Maize and Wheat Improvement Center (CIMMYT) spring bread wheat lines were phenotyped against CR for field crown, greenhouse crown and stem, and growth room crown resistance scores. Of these, 107 lines were genotyped using Diversity Array Technology (DArT) markers to identify quantitative trait loci linked to CR resistance by genome-wide association study. Results of the population structure analysis grouped the accessions into three sub-groups. Genome wide linkage disequilibrium was large and declined on average within 20 cM (centi-Morgan) in the panel. General linear model (GLM), mixed linear model (MLM), and naïve models were tested for each CR score and the best model was selected based on quarantine-quarantine plots. Three marker-trait associations (MTAs) were identified linked to CR resistance; two of these on chromosome 3B were associated with field crown scores, each explaining 11.4% of the phenotypic variation and the third MTA on chromosome 2D was associated with greenhouse stem score and explained 11.6% of the phenotypic variation. Together, these newly identified loci provide opportunity for wheat breeders to exploit in enhancing CR resistance via marker-assisted selection or deployment in genomic selection in wheat breeding programs.
机译:由各种镰刀菌引起的冠腐病(CR)是全世界许多谷物种植地区的主要疾病。枯萎镰刀菌是最重要的物种之一,可导致小麦的大量减产。对一组126个先进的国际玉米和小麦改良中心(CIMMYT)春季面包小麦品系针对CR的表型,以测定田间冠,温室冠和茎以及生长室冠的抗性得分。其中,使用多样性阵列技术(DArT)标记对107个品系进行了基因分型,以通过全基因组关联研究鉴定与CR抗性相关的定量性状基因座。种群结构分析结果将种质分为三个亚组。全基因组连锁不平衡很大,并且在小组中平均下降了20 cM(厘摩根)。针对每个CR分数测试了通用线性模型(GLM),混合线性模型(MLM)和朴素模型,并根据隔离检疫图选择了最佳模型。鉴定出三个与CR抗性相关的标志性状关联(MTA);染色体3B上的其中两个与田间冠状评分相关,每个解释了11.4%的表型变异,而染色体2D上的第三个MTA与温室茎评分相关,并解释了11.6%的表型变异。这些新近确定的基因座共同为小麦育种者提供了机会,可通过标记辅助选择或在小麦育种计划中进行基因组选择来增强CR抗性。

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