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Genome-Wide Association Studies of Anthracnose and Angular Leaf Spot Resistance in Common Bean (Phaseolus vulgaris L.)

机译:菜豆炭疽病和角叶斑病抗性的全基因组关联研究

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摘要

The common bean (Phaseolus vulgaris L.) is the world’s most important legume for human consumption. Anthracnose (ANT; Colletotrichum lindemuthianum) and angular leaf spot (ALS; Pseudocercospora griseola) are complex diseases that cause major yield losses in common bean. Depending on the cultivar and environmental conditions, anthracnose and angular leaf spot infections can reduce crop yield drastically. This study aimed to estimate linkage disequilibrium levels and identify quantitative resistance loci (QRL) controlling resistance to both ANT and ALS diseases of 180 accessions of common bean using genome-wide association analysis. A randomized complete block design with four replicates was performed for the ANT and ALS experiments, with four plants per genotype in each replicate. Association mapping analyses were performed for ANT and ALS using a mixed linear model approach implemented in TASSEL. A total of 17 and 11 significant statistically associations involving SSRs were detected for ANT and ALS resistance loci, respectively. Using SNPs, 21 and 17 significant statistically associations were obtained for ANT and angular ALS, respectively, providing more associations with this marker. The SSR-IAC167 and PvM95 markers, both located on chromosome Pv03, and the SNP scaffold00021_89379, were associated with both diseases. The other markers were distributed across the entire common bean genome, with chromosomes Pv03 and Pv08 showing the greatest number of loci associated with ANT resistance. The chromosome Pv04 was the most saturated one, with six markers associated with ALS resistance. The telomeric region of this chromosome showed four markers located between approximately 2.5 Mb and 4.4 Mb. Our results demonstrate the great potential of genome-wide association studies to identify QRLs related to ANT and ALS in common bean. The results indicate a quantitative and complex inheritance pattern for both diseases in common bean. Our findings will contribute to more effective screening of elite germplasm to find resistance alleles for marker-assisted selection in breeding programs.
机译:普通豆(菜豆)是世界上人类食用的最重要的豆类。炭疽病(ANT;炭疽菌)和角叶斑病(ALS;假单孢菌)是导致普通豆产量大幅下降的复杂疾病。取决于品种和环境条件,炭疽病和角状叶斑病感染可大大降低作物产量。这项研究旨在评估连锁不平衡水平,并使用全基因组关联分析确定定量抗180个普通豆对ANT和ALS病的抗性位点(QRL)。针对ANT和ALS实验,进行了具有四个重复的随机完整区组设计,每个基因型每个重复有四个植物。使用在TASSEL中实施的混合线性模型方法对ANT和ALS进行了关联映射分析。分别针对ANT和ALS耐药基因座检测到总共17和11个涉及SSR的重要统计学关联。使用SNP,分别获得了ANT和角度ALS的21个和17个显着的统计学关联,从而提供了与该标记的更多关联。均位于染色体Pv03上的SSR-IAC167和PvM95标记以及SNP支架00021_89379与这两种疾病均相关。其他标记分布在整个普通豆基因组中,染色体Pv03和Pv08显示与ANT抗性相关的基因座数量最多。染色体Pv04是最饱和的,具有与ALS抗性相关的六个标记。该染色体的端粒区域显示了四个标记,位于大约2.5 Mb和4.4 Mb之间。我们的结果证明了全基因组关联研究在鉴定与普通豆中的ANT和ALS相关的QRL方面的巨大潜力。结果表明普通豆中两种病的定量和复杂遗传模式。我们的发现将有助于更有效地筛选优良种质,以找到抗性等位基因,以在育种计划中进行标记辅助选择。

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