首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >High-resolution mapping of rachis nodes per rachis, a critical determinant of grain yield components in wheat
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High-resolution mapping of rachis nodes per rachis, a critical determinant of grain yield components in wheat

机译:每个rachis的rachis节点的高分辨率映射,小麦中谷物产量组分的临界决定因素

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Key message Exploring large genomic data sets based on the latest reference genome assembly identifies the rice ortholog APO1 as a key candidate gene for number of rachis nodes per spike in wheat. Increasing grain yield in wheat is a key breeding objective worldwide. Several component traits contribute to grain yield with spike attributes being among the most important. In this study, we performed a genome-wide association analysis for 12 grain yield and component traits measured in field trials with contrasting agrochemical input levels in a panel of 220 hexaploid winter wheats. A highly significant, environmentally consistent QTL was detected for number of rachis nodes per rachis (NRN) on chromosome 7AL. The five most significant SNPs formed a strong linkage disequilibrium (LD) block and tagged a 2.23 Mb region. Using pairwise LD for exome SNPs located across this interval in a large worldwide hexaploid wheat collection, we reduced the genomic region for NRN to a 258 Kb interval containing four of the original SNP and six high-confidence genes. The ortholog of one (TraesCS7A01G481600) of these genes in rice was ABBERANT PANICLE ORGANIZATION1 (APO1), which is known to have significant effects on panicle attributes. The APO1 ortholog was the best candidate for NRN and was associated with a 115 bp promoter deletion and two amino acid (C47F and D384 N) changes. Using a large worldwide collection of tetraploid and hexaploid wheat, we found 12 haplotypes for the NRN QTL and evidence for positive enrichment of two haplotypes in modern germplasm. Comparison of five QTL haplotypes in Australian yield trials revealed their relative, context-dependent contribution to grain yield. Our study provides diagnostic SNPs and value propositions to support deployment of the NRN trait in wheat breeding.
机译:基于最新的参考基因组组件探索大型基因组数据集的关键消息将稻米Ortholog APO1识别为小麦上每刺的rachis节点数量的关键候选基因。小麦的粮食产量增加是全世界的关键育种目标。有几个组分特征有助于具有最重要的尖峰属性的粮食产量。在这项研究中,我们对1220个六倍体冬小麦面板中的农业化学进入水平进行了12种谷物产量和组分特征的基因组 - 宽的关联分析。对于染色体7AL上每个rachis(nrn)的rachis节点数量检测到一个非常重要的环境一致的qt1。五种最重要的SNP形成强烈的连锁不平衡(LD)块,并标记为2.23 MB区域。在大型全球六倍体小麦收集中使用成对的exome SNP的exome SNP,我们将NRN的基因组区域降低至含有四个原始SNP和六个高置信基因的258 kB间隔。在水稻中这些基因的一个(Traescs7a01g481600)的正交表现是罕见的胰穗组织1(apo1),已知对胰穗属性产生显着影响。 APO1 Ortholog是NRN的最佳候选者,与115bp启动子缺失和两个氨基酸(C47F和D384N)的变化相关。使用大型全球的四倍体和六倍体小麦的集合,我们发现了NRN QTL的12个单倍型,以及在现代种质中对两种单倍型阳性富集的证据。澳大利亚产量试验中五种QTL单倍型的比较显示了它们对粮食产量的相对,背景依赖性贡献。我们的研究提供了诊断SNP和价值主张,以支持小麦育种中NRN特征的部署。

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    Univ Queensland Queensland Alliance Agr &

    Food Innovat St Lucia Qld 4072 Australia;

    Ctr AgriBiosci DJPR Agr Victoria Res AgriBio Bundoora Vic 3083 Australia;

    Univ Queensland Queensland Alliance Agr &

    Food Innovat St Lucia Qld 4072 Australia;

    Ctr AgriBiosci DJPR Agr Victoria Res AgriBio Bundoora Vic 3083 Australia;

    Justus Liebig Univ IFZ Res Ctr Biosyst Land Use &

    Nutr Dept Plant Breeding Heinrich Buff Ring 26-32 D-35392 Giessen Germany;

    Ctr AgriBiosci DJPR Agr Victoria Res AgriBio Bundoora Vic 3083 Australia;

    Ctr AgriBiosci DJPR Agr Victoria Res AgriBio Bundoora Vic 3083 Australia;

    Ctr AgriBiosci DJPR Agr Victoria Res AgriBio Bundoora Vic 3083 Australia;

    Justus Liebig Univ IFZ Res Ctr Biosyst Land Use &

    Nutr Dept Plant Breeding Heinrich Buff Ring 26-32 D-35392 Giessen Germany;

    Justus Liebig Univ IFZ Res Ctr Biosyst Land Use &

    Nutr Dept Plant Breeding Heinrich Buff Ring 26-32 D-35392 Giessen Germany;

    Ctr AgriBiosci DJPR Agr Victoria Res AgriBio Bundoora Vic 3083 Australia;

    Justus Liebig Univ IFZ Res Ctr Biosyst Land Use &

    Nutr Dept Plant Breeding Heinrich Buff Ring 26-32 D-35392 Giessen Germany;

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  • 正文语种 eng
  • 中图分类 医学遗传学;
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  • 入库时间 2022-08-20 07:32:06

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