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首页> 外文期刊>Theoretical and Applied Genetics >Genetic dissection of a genomic region for a quantitative trait locus, Hd3, into two loci, Hd3a and Hd3b, controlling heading date in rice
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Genetic dissection of a genomic region for a quantitative trait locus, Hd3, into two loci, Hd3a and Hd3b, controlling heading date in rice

机译:将数量性状基因座Hd3的基因组区域进行遗传解剖,分为两个基因座Hd3a和Hd3b,控制水稻的抽穗期

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摘要

The rice photoperiod sensitivity gene Hd3 was originally detected as a heading date-related quantitative trait locus localized on chromosome 6 of rice. High-resolution linkage mapping of Hd3 was performed using a large segregating population derived from advanced backcross progeny between a japonica variety, Nipponbare, and an indica variety, Kasalath. To determine the genotype of Hd3, we employed progeny testing under natural field and short-day conditions. As a result, two tightly linked loci, Hd3a and Hd3b, were identified in the Hd3 region. Nearly-isogenic lines for Hd3a and Hd3b were selected from progeny using marker-assisted selection. The inheritance mode of both Hd3a and Hd3b was found to be additive. Analysis of daylength response in nearly-isogenic lines of Hd3a and Hd3b showed that the Kasalath allele at Hd3a promotes heading under short-day conditions while that at Hd3b causes late heading under long-day and natural field conditions.
机译:水稻光周期敏感性基因Hd3最初是作为定位在水稻第6号染色体上的与抽穗期相关的数量性状基因座而检测到的。 Hd3的高分辨率连锁作图是使用来自粳稻品种Nipponbare和in稻品种Kasalath之间的先进回交后代的大量隔离种群进行的。为了确定Hd3的基因型,我们在自然环境和短日条件下进行了后代测试。结果,在Hd3区域中发现了两个紧密连接的基因座Hd3a和Hd3b。使用标记辅助选择从后代中选择Hd3a和Hd3b的近等基因系。发现Hd3a和Hd3b的继承模式都是可加的。 Hd3a和Hd3b的近等基因系的日长响应分析表明,Hd3a的Kasalath等位基因在短日条件下促进抽穗,而Hd3b的Kasalath等位基因在长日和自然田间条件下导致晚抽穗。

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  • 来源
    《Theoretical and Applied Genetics》 |2002年第5期|772-778|共7页
  • 作者单位

    Institute of the Society for Techno-innovation of Agriculture Forestry and Fisheries Tsukuba Ibaraki 305-0854 Japan;

    Bio-oriented Technology Research Advancement Institution Omiya Saitama 331-8537 Japan;

    Institute of the Society for Techno-innovation of Agriculture Forestry and Fisheries Tsukuba Ibaraki 305-0854 Japan;

    Department of Molecular Genetics National Institute of Agrobiological Sciences 2-1-2 Kannondai Tsukuba Ibaraki 305-8602 Japan;

    Department of Molecular Genetics National Institute of Agrobiological Sciences 2-1-2 Kannondai Tsukuba Ibaraki 305-8602 Japan;

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  • 正文语种 eng
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  • 关键词

    Oryza sativa L. QTL Photoperiod sensitivity Nearly-isogenic line Linkage analysis;

    机译:QTL光周期敏感性近等基因系连锁分析;杂种优势。;

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