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Ancestral QTL Alleles from Wild Emmer Wheat Improve Drought Resistance and Productivity in Modern Wheat Cultivars

机译:野生Emmer小麦的祖先QTL等位基因可提高现代小麦品种的抗旱性和生产力

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摘要

Wild emmer wheat (Triticum turgidum ssp. dicoccoides) is considered a promising source for improving stress resistances in domesticated wheat. Here we explored the potential of selected quantitative trait loci (QTLs) from wild emmer wheat, introgressed via marker-assisted selection, to enhance drought resistance in elite durum (T. turgidum ssp. durum) and bread (T. aestivum) wheat cultivars. The resultant near-isogenic lines (BC3F3 and BC3F4) were genotyped using SNP array to confirm the introgressed genomic regions and evaluated in two consecutive years under well-watered (690–710 mm) and water-limited (290–320 mm) conditions. Three of the introgressed QTLs were successfully validated, two in the background of durum wheat cv. Uzan (on chromosomes 1BL and 2BS), and one in the background of bread wheat cvs. Bar Nir and Zahir (chromosome 7AS). In most cases, the QTL x environment interaction was validated in terms of improved grain yield and biomass—specifically under drought (7AS QTL in cv. Bar Nir background), under both treatments (2BS QTL), and a greater stability across treatments (1BL QTL). The results provide a first demonstration that introgression of wild emmer QTL alleles can enhance productivity and yield stability across environments in domesticated wheat, thereby enriching the modern gene pool with essential diversity for the improvement of drought resistance.
机译:野生Emmer小麦(Triticum turgidum ssp。dicoccoides)被认为是改善驯化小麦抗逆性的有前途的来源。在这里,我们探索了通过标记辅助选择从野生Emmer小麦中选择的数量性状基因座(QTL)的潜力,以增强硬质硬质小麦(T. turgidum ssp。durum)和面包(T. aestivum)小麦品种的抗旱性。使用SNP阵列对所得的近等基因系(BC3F3和BC3F4)进行基因分型,以确认基因渗入的基因组区域,并在充水(690–710 mm)和水有限(290–320 mm)的条件下连续两年进行评估。成功地验证了三个渗入的QTL,其中两个在硬粒小麦简历中得到了验证。乌山(在1BL和2BS号染色体上),以及在面包小麦CVS背景中的一个。 Bar Nir和Zahir(7AS染色体)。在大多数情况下,QTL x环境之间的相互作用已通过提高谷物产量和生物量的方式进行了验证-特别是在干旱条件下(Bar Nir背景下为7AS QTL),两种处理方式均有效(2BS QTL),且两种处理方式均具有更高的稳定性(1BL) QTL)。结果提供了第一个证明,即野生Emmer QTL等位基因的渗入可以提高驯化小麦在不同环境中的生产力和产量稳定性,从而丰富了现代基因库,具有丰富的多样性,可提高抗旱性。

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