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Genetic dissection of heat and drought stress QTLs in phenology-controlled synthetic-derived recombinant inbred lines in spring wheat

机译:春小麦脊髓神经控制合成衍生的重组近交系中的热量和干旱胁迫QTL的遗传解剖

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摘要

Abiotic stresses that affect wheat productionheat (H) and drought (D)often occur concurrently. The genetic dissection of stress tolerance in a population with large range of phenology is difficult due to the confounding effects. We developed a recombinant inbred line (RIL) population of 276 entries with a narrow range of phenology, from a cross between a synthetic-derived parent (SYN-D: Croc 1/Aegilops squarrosa (224)//Opata) and an elite line (Weebill 1) to (a) understand the individual and combined effects of H and D stresses on yield and related traits, (b) identify the genetic basis of individual and combined stress tolerance, and (c) know the genetics of stress tolerance that can be explored from the line SYN-D. Phenotypic analysis indicated that the detrimental effect of combined stresses was greater than their individual effects. We constructed a genetic map2771.5cMof the population with 569 SNPs (231 DArTseq and 338 Illumina bead chip 90K array) and identified 71 QTLs, in which eight were common among stresses. We identified five QTL hotspots for yield and related traits under D, H, and H+D in chromosomes 2A (20.5 to 30.5cM), 3D (92.5 to 108.5cM), 6D (68.5 to 73.5cM), 6D (125.5 to 135.5cM), and 7B (40.5 to 61.5cM). Among the 71 identified QTLs, SYN-D contributed 37 QTLs (52%) and Weebill 1 contributed 34 QTLs (48%). SYN-D also contributed the common thousand-grain weight QTL detected under H, D, and H+D, which can be used in molecular-assisted breeding.
机译:影响小麦培养(H)和干旱(D)的非生物胁迫经常同时发生。由于混淆效应,难度较大的候选群体的群体耐受胁迫的遗传解剖。我们从合成源父母(SYN-D:CROC 1 / Aegilops Squarrosa(224)// Opata)和精英线之间的交叉之间,开发了276个条目的重组近亲(RIL)群体。 (WEEBILL 1)至(a)了解H和D应力对产量和相关性状的个体和组合作用,(b)识别个体和组合应力耐受性的遗传基础,(c)知道应力耐受性的遗传可以从行SYN-D探索。表型分析表明,组合应力的不利影响大于其个体效果。我们构建了具有569个SNP的遗传图2771.5CMOF(231辆Dartseq和338 Illumina珠芯片90K阵列)并确定了71个QTL,其中八个在应力中很常见。我们在染色体2a(20.5至30.5cm)中,在D,H和H + D下鉴定了5个QTL热点,用于D,H和H + D,3D(92.5至108.5cm),6d(68.5至73.5cm),6d(125.5至135.5 CM)和7B(40.5至61.5cm)。在71个识别的QTL中,SYN-D贡献了37个QTL(52%)和WEEBILL 1贡献了34个QTL(48%)。 SYN-D还有助于在H,D和H + D下检测的常见千粒重量QTL,其可用于分子辅助育种。

著录项

  • 来源
    《Molecular Breeding》 |2019年第3期|共18页
  • 作者单位

    Int Maize &

    Wheat Improvement Ctr CIMMYT Global Wheat Program Apdo Postal 6-641 Mexico City 06600 DF Mexico;

    Int Maize &

    Wheat Improvement Ctr CIMMYT Global Wheat Program Apdo Postal 6-641 Mexico City 06600 DF Mexico;

    Syngenta Crop Protect Munchwillen AG Breitenloh 5 CH-4333 Munchwillen Switzerland;

    Int Maize &

    Wheat Improvement Ctr CIMMYT Genet Resources Program Apdo Postal 6-641 Mexico City 06600 DF Mexico;

    Int Maize &

    Wheat Improvement Ctr CIMMYT Global Wheat Program Apdo Postal 6-641 Mexico City 06600 DF Mexico;

    Int Maize &

    Wheat Improvement Ctr CIMMYT Global Wheat Program Apdo Postal 6-641 Mexico City 06600 DF Mexico;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

    Synthetics; QTL; Heat and drought stress; Spring wheat;

    机译:合成;QTL;热量和干旱胁迫;春小麦;

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