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Fine Mapping QTL for Drought Resistance Traits in Rice (Oryza sativa L.) Using Bulk Segregant Analysis

机译:水稻大抗分离特性的水稻抗旱性状的精细定位QTL

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摘要

Drought stress is a major limitation to rice (Oryza sativa L.) yields and its stability, especially in rainfed conditions. Developing rice cultivars with inherent capacity to withstand drought stress would improve rainfed rice production. Mapping quantitative trait loci (QTLs) linked to drought resistance traits will help to develop rice cultivars suitable for water-limited environments through molecular marker-assisted selection (MAS) strategy. However, QTL mapping is usually carried out by genotyping large number of progenies, which is labour-intensive, time-consuming and cost-ineffective. Bulk segregant analysis (BSA) serves as an affordable strategy for mapping large effect QTLs by genotyping only the extreme phenotypes instead of the entire mapping population. We have previously mapped a QTL linked to leaf rolling and leaf drying in recombinant inbred (RI) lines derived from two locally adapted indica rice ecotypes viz., IR20/Nootripathu using BSA. Fine mapping the QTL will facilitate its application in MAS. BSA was done by bulking DNA of 10 drought-resistant and 12 drought-sensitive RI lines. Out of 343 rice microsatellites markers genotyped, RM8085 co-segregated among the RI lines constituting the respective bulks. RM8085 was mapped in the middle of the QTL region on chromosome 1 previously identified in these RI lines thus reducing the QTL interval from 7.9 to 3.8 cM. Further, the study showed that the region, RM212–RM302–RM8085–RM3825 on chromosome 1, harbours large effect QTLs for drought-resistance traits across several genetic backgrounds in rice. Thus, the QTL may be useful for drought resistance improvement in rice through MAS and map-based cloning.
机译:干旱胁迫是水稻(Oryza sativa L.)产量及其稳定性的主要限制,特别是在雨养条件下。发展具有抵御干旱压力的内在能力的水稻品种将提高雨育水稻的产量。绘制与抗旱性状相关的数量性状基因座(QTL),将通过分子标记辅助选择(MAS)策略帮助开发适合于缺水环境的水稻品种。然而,QTL作图通常是通过对大量后代进行基因分型来进行的,这是劳力密集,费时且成本低廉的。通过仅对极端表型进行基因分型而不是对整个作图群体进行基因分型,批量隔离分析(BSA)是一种可用于绘制大效果QTL的可负担策略。我们之前已经在BSA上绘制了源自两个本地适应的rice稻生态型(即IR20 / Nootripathu)的重组近交(RI)系中与卷叶和叶片干燥相关的QTL。 QTL的精细映射将有助于其在MAS中的应用。通过增加10个抗旱和12个干旱敏感RI系的DNA来完成BSA。在343个基因分型的水稻微卫星标记中,RM8085共分离在构成各个大块的RI系中。 RM8085被定位在先前在这些RI系中鉴定的1号染色体上QTL区域的中间,从而将QTL间隔从7.9 cM减少到3.8 cM。此外,研究表明,在第1号染色体上的RM212–RM302–RM8085–RM3825区域具有水稻多个遗传背景中抗旱性状的大效应QTL。因此,通过MAS和基于图谱的克隆,QTL可能有助于水稻的抗旱性提高。

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  • 来源
    《Molecular Biotechnology》 |2011年第1期|p.90-95|共6页
  • 作者单位

    Department of Plant Molecular Biology and Biotechnology, Centre for Plant Molecular Biology, Tamil Nadu Agricultural University, Coimbatore, 641003, India;

    Department of Plant Molecular Biology and Biotechnology, Centre for Plant Molecular Biology, Tamil Nadu Agricultural University, Coimbatore, 641003, India;

    Department of Plant Molecular Biology and Biotechnology, Centre for Plant Molecular Biology, Tamil Nadu Agricultural University, Coimbatore, 641003, India;

    Department of Plant Molecular Biology and Biotechnology, Centre for Plant Molecular Biology, Tamil Nadu Agricultural University, Coimbatore, 641003, India;

    Department of Plant Molecular Biology and Biotechnology, Centre for Plant Molecular Biology, Tamil Nadu Agricultural University, Coimbatore, 641003, India;

    Department of Plant Molecular Biology and Biotechnology, Centre for Plant Molecular Biology, Tamil Nadu Agricultural Univ;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bulk segregant analysis; Fine mapping; Microsatellites; QTLs; MAS; Drought resistance; Rice; Oryza sativa;

    机译:大体分离分析精细作图微卫星QTL MAS抗旱性水稻稻;

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