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Single and Multi-trait GWAS Identify Genetic Factors Associated with Production Traits in Common Bean Under Abiotic Stress Environments

机译:单性状和多性状GWAS识别非生物胁迫环境下普通豆生产性状的遗传因素

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摘要

The genetic improvement of economically important production traits of dry bean (Phaseolus vulgaris L.), for geographic regions where production is threatened by drought and high temperature stress, is challenging because of the complex genetic nature of these traits. Large scale SNP data sets for the two major gene pools of bean, Andean and Middle American, were developed by mapping multiple pools of genotype-by-sequencing reads and identifying over 200k SNPs for each gene pool against the most recent assembly of the P. vulgaris genome sequence. Moderately sized >Bean >Abiotic >Stress >Evaluation (BASE) panels, consisting of genotypes appropriate for production in Central America and Africa, were assembled. Phylogenetic analyses demonstrated the BASE populations represented broad genetic diversity for the appropriate races within the two gene pools. Joint mixed linear model genome-wide association studies with data from multiple locations discovered genetic factors associated with four production traits in both heat and drought stress environments using the BASE panels. Pleiotropic genetic factors were discovered using a multi-trait mixed model analysis. SNPs within or near candidate genes associated with hormone signaling, epigenetic regulation, and ROS detoxification under stress conditions were identified and can be used as genetic markers in dry bean breeding programs.
机译:对于干旱和高温胁迫威胁生产的地理区域,干豆(菜豆)在经济上重要的生产性状的遗传改良面临挑战,因为这些性状具有复杂的遗传特性。针对豆类两个主要基因库(安第斯和中美洲)的大规模SNP数据集是通过对多个基因型测序测序图谱进行映射并针对P的最新装配为每个基因库鉴定200k SNP来开发的。寻常的基因组序列。中等大小的> B ean > A 生物> S 发ress > E 评估(基础)面板,其中包括适合于在生产中使用的基因型中美洲和非洲聚集了起来。系统发育分析表明,BASE种群代表了两个基因库中适当种族的广泛遗传多样性。联合混合线性模型全基因组关联研究与来自多个地点的数据一起,使用BASE面板发现了与高温和干旱胁迫环境中四个生产性状相关的遗传因素。利用多特征混合模型分析发现了多亲遗传因素。鉴定了在应激条件下与激素信号传导,表观遗传调控和ROS解毒相关的候选基因内或附近的SNP,这些SNP可用作干豆育种计划的遗传标记。

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