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Genome-wide association study of heading and flowering dates and construction of its prediction equation in Chinese common wheat

机译:中国普通小麦标题和开花日期和开花日期的基因组协会研究与普通小麦预测方程的构建

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摘要

Heading date is one of the most important traits in wheat breeding as it affects adaptation and yield potential. A genome-wide association study (GWAS) using the 90K iSelect SNP genotyping assay indicated that a total of 306 loci were significantly associated with heading and flowering dates in 13 environments in Chinese common wheat from the Yellow and Huai wheat region. Of these, 105 loci were significantly correlated with both heading and flowering dates and were found in clusters on chromosomes 2, 5, 6, and 7. Based on differences in distribution of the vernalization and photoperiod genes among chromosomes, arms, or block regions, 13 novel, environmentally stable genetic loci were associated with heading and flowering dates, including RAC875_c41145_189 on 1DS, RAC875_c50422_299 on 2BL, and RAC875_c48703_148 on 2DS, that accounted for more than 20% phenotypic variance explained (PVE) of the heading/flowering date in at least four environments. GWAS and t test of a combination of SNPs and vernalization and photoperiod alleles indicated that the Vrn-B1, Vrn-D1, and Ppd-D1 genes significantly affect heading and flowering dates in Chinese common wheat. Based on the association of heading and flowering dates with the vernalization and photoperiod alleles at seven loci and three significant SNPs, optimal linear regression equations were established, which show that of the seven loci, the Ppd-D1 gene plays the most important role in modulating heading and flowering dates in Chinese wheat, followed by Vrn-B1 and Vrn-D1. Additionally, three novel genetic loci (RAC875_c41145_189, Excalibur_c60164_137, and RAC875_c50422_299) also show important effect on heading and flowering dates. Therefore, Ppd-D1, Vrn-B1, Vrn-D1, and the novel genetic loci should be further investigated in terms of improving heading and flowering dates in Chinese wheat. Further quantitative analysis of an F-10 recombinant inbred lines population identified a major QTL that controls heading and flowering dates within the Ppd-D1 locus with PVEs of 28.4% and 34.0%, respectively; this QTL was also significantly associated with spike length, peduncle length, fertile spikelets number, cold resistance, and tiller number.
机译:标题日期是小麦育种中最重要的特征之一,因为它影响适应和产量潜力。使用90K Iselect SNP基因分型测定法的基因组 - 宽协会研究(GWAs)表明,总共306个基因座与黄色和淮麦地区的中国普通小麦中的13个环境中的标题和开花日期显着相关。其中,105个基因座与标题和开花日期显着相关,并且在染色体2,5,6和7的簇中被发现。基于染色体,臂或块区域之间的葡萄化和光周期基因分布的差异, 13新颖的环境稳定基因座与标题和开花日期相关,包括RAC875_C41145_189在1DS,2DS上的RAC875_C50422_299和RAC875_C48703_148,其占标题/开花日期的超过20%的表型方差(PVE)至少四个环境。 SNP和vernalization和Pheropheriod等位基因组合的Gwas和T测试表明,VRN-B1,VRN-D1和PPD-D1基因显着影响中国常见小麦的标题和开花日期。基于七个基因座和三个重要的SNPS的春天和光周期等位基因的标题和开花日期的关联,建立了最佳的线性回归方程,表明PPD-D1基因在调制中起最重要的作用在中国小麦的标题和开花日期,其次是VRN-B1和VRN-D1。另外,三个新型遗传基因座(RAC875_C41145_189,EXCARIBUR_C60164_137和RAC875_C50422_299也对标题和开花日期显示出重要的影响。因此,应进一步研究PPD-D1,VRN-B1,VRN-D1和新型遗传基因座,改善中国小麦的标题和开花日期。对F-10重组自交系群体的进一步定量分析鉴定了一种主要QTL,可分别控制PPD-D1基因座内的标题和开花日期,分别为28.4%和34.0%;该QTL也与尖峰长,花梗长,肥沃的尖峰数,耐寒性和分蘖数显着相关。

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    Henan Agr Univ Collaborat Innovat Ctr Henan Grain Crops Natl Key Lab Wheat &

    Maize Crop Sci Agron Coll 15 Longzihu Coll Dist Zhengzhou 450046 Henan Peoples R China;

    Henan Agr Univ Collaborat Innovat Ctr Henan Grain Crops Natl Key Lab Wheat &

    Maize Crop Sci Agron Coll 15 Longzihu Coll Dist Zhengzhou 450046 Henan Peoples R China;

    Henan Agr Univ Collaborat Innovat Ctr Henan Grain Crops Natl Key Lab Wheat &

    Maize Crop Sci Agron Coll 15 Longzihu Coll Dist Zhengzhou 450046 Henan Peoples R China;

    Henan Agr Univ Collaborat Innovat Ctr Henan Grain Crops Natl Key Lab Wheat &

    Maize Crop Sci Agron Coll 15 Longzihu Coll Dist Zhengzhou 450046 Henan Peoples R China;

    Henan Agr Univ Collaborat Innovat Ctr Henan Grain Crops Natl Key Lab Wheat &

    Maize Crop Sci Agron Coll 15 Longzihu Coll Dist Zhengzhou 450046 Henan Peoples R China;

    Henan Agr Univ Collaborat Innovat Ctr Henan Grain Crops Natl Key Lab Wheat &

    Maize Crop Sci Agron Coll 15 Longzihu Coll Dist Zhengzhou 450046 Henan Peoples R China;

    Henan Agr Univ Collaborat Innovat Ctr Henan Grain Crops Natl Key Lab Wheat &

    Maize Crop Sci Agron Coll 15 Longzihu Coll Dist Zhengzhou 450046 Henan Peoples R China;

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  • 正文语种 eng
  • 中图分类 医学遗传学;
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