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Genome-Wide Association Mapping in the Global Diversity Set Reveals New QTL Controlling Root System and Related Shoot Variation in Barley

机译:全球多样性集中的全基因组关联图揭示了新的QTL控制大麦的根系和相关的芽变异

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摘要

The fibrous root system is a visible sign of ecological adaptation among barley natural populations. In the present study, we utilized rich barley diversity to dissect the genetic basis of root system variation and its link with shoot attributes under well-water and drought conditions. Genome-wide association mapping of phenotype data using a dense genetic map (5892 SNP markers) revealed 17 putative QTL for root and shoot traits. Among these, at 14 loci the preeminence of exotic QTL alleles resulted in trait improvements. The most promising QTL were quantified using haplotype analysis at local and global genome levels. The strongest QTL was found on chromosome 1H which accounted for root dry weight and tiller number simultaneously. Candidate gene analysis across the targeted region detected a crucial amino acid substitution mutation in the conserved domain of a WRKY29 transcription factor among genotypes bearing major and minor QTL alleles. Similarly, the drought inducible QTL QRdw.5H (5H, 95.0 cM) seems to underlie 37 amino acid deletion and substitution mutations in the conserved domain of two related genes CBF10B and CBF10A, respectively. The identification and further characterization of these candidate genes will be essential to decipher genetics behind developmental and natural adaptation mechanisms of barley.
机译:纤维根系是大麦自然种群生态适应的明显标志。在本研究中,我们利用丰富的大麦多样性来剖析根系变异的遗传基础及其在井水和干旱条件下与枝条属性的联系。使用致密的遗传图谱(5892 SNP标记)对表型数据进行全基因组关联映射,揭示了17个推定的根和芽性状QTL。其中,在14个基因座处,外来QTL等位基因占优势,导致性状得到改善。使用局部和全局基因组水平的单倍型分析定量了最有前途的QTL。在1H染色体上发现了最强的QTL,它同时解释了根的干重和分number数。跨目标区域的候选基因分析在带有主要和次要QTL等位基因的基因型中的WRKY29转录因子的保守域中检测到关键的氨基酸取代突变。同样,干旱诱导的QTL QRdw.5H(5H,95.0 cM)似乎是两个相关基因CBF10B和CBF10A的保守域中分别存在37个氨基酸的缺失和取代突变。这些候选基因的鉴定和进一步表征对于破译大麦发育和自然适应机制背后的遗传学至关重要。

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