首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Mapping QTL for agronomic traits under two levels of salt stress in a new constructed RIL wheat population
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Mapping QTL for agronomic traits under two levels of salt stress in a new constructed RIL wheat population

机译:在新建的Ril小麦人群中,在两种盐压力下进行QTL进行农艺性状

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Key message QTL for 15 agronomic traits under two levels of salt stress in dry salinity field were mapped in a new constructed RIL population utilizing a Wheat55K SNP array. Furthermore, eight QTL were validated in a collected natural population. Soil salinity is one of the major abiotic stresses causing serious impact on crop growth, development and yield. As one of the three most important crops in the world, bread wheat (Triticum aestivumL.) is severely affected by salinity, too. In this study, an F(7)recombinant inbred line (RIL) population derived from a cross between high-yield wheat cultivar Zhongmai 175 and salt-tolerant cultivar Xiaoyan 60 was constructed. The adult stage performances of the RIL population and their parent lines under low and high levels of salt stress were evaluated for three consecutive growing seasons. Utilizing a Wheat55K SNP array, a high-density genetic linkage map spinning 3250.71 cM was constructed. QTL mapping showed that 90 stable QTL for 15 traits were detected, and they were distributed on all wheat chromosomes except 4D, 6B and 7D. These QTL individually explained 2.34-32.43% of the phenotypic variation with LOD values ranging from 2.68 to 47.15. It was found that four QTL clusters were located on chromosomes 2D, 3D, 4B and 6A, respectively. Notably, eight QTL from the QTL clusters were validated in a collected natural population. Among them,QPh-4Bwas deduced to be an allele ofRht-B1. In addition, three kompetitive allele-specific PCR (KASP) markers derived from SNPs were successfully designed for three QTL clusters. This study provides an important base for salt-tolerant QTL (gene) cloning in wheat, and the markers, especially the KASP markers, will be useful for marker-assisted selection in salt-tolerant wheat breeding.
机译:利用Wheat55K单核苷酸多态性(SNP)阵列,在新构建的RIL群体中定位了两种盐胁迫水平下干旱盐碱地15个农艺性状的关键信息QTL。此外,在收集的自然群体中验证了8个QTL。土壤盐分是影响作物生长发育和产量的主要非生物胁迫之一。作为世界上三种最重要的作物之一,面包小麦(Triticum aestivumL.)也受到盐度的严重影响。本研究构建了高产小麦品种中麦175与耐盐品种小偃60杂交的F(7)重组自交系群体。对RIL群体及其亲本在低盐胁迫和高盐胁迫下连续三个生长季的成虫期表现进行了评价。利用Wheat55K单核苷酸多态性芯片构建了一个3250.71cm的高密度遗传连锁图谱。QTL定位结果表明,共检测到15个性状的90个稳定QTL,它们分布在除4D、6B和7D外的所有小麦染色体上。这些QTL分别解释了2.34-32.43%的表型变异,LOD值在2.68到47.15之间。发现四个QTL簇分别位于染色体2D、3D、4B和6A上。值得注意的是,在收集的自然群体中验证了来自QTL簇的八个QTL。其中,QPh-4BW被认为是HT-B1的一个等位基因。此外,我们还成功地为三个QTL簇设计了三个来自SNP的kompetitive等位基因特异性PCR(KASP)标记。本研究为小麦耐盐QTL(基因)的克隆提供了重要基础,这些标记,尤其是KASP标记,将有助于小麦耐盐育种中的标记辅助选择。

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    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Cell &

    Chromosome Engn Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Cell &

    Chromosome Engn Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Cell &

    Chromosome Engn Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Cell &

    Chromosome Engn Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Cell &

    Chromosome Engn Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Cell &

    Chromosome Engn Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Cell &

    Chromosome Engn Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Cell &

    Chromosome Engn Beijing 100101 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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