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首页> 外文期刊>Theoretical and Applied Genetics >Identification and linkage mapping of complementary recessive genes causing hybrid breakdown in an intraspecific rice cross
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Identification and linkage mapping of complementary recessive genes causing hybrid breakdown in an intraspecific rice cross

机译:鉴定和连锁作图在种内水稻杂交中引起杂种分解的互补隐性基因

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摘要

One outcome of hybrid breakdown is poor growth, which we observed as a reduction in the number of panicles per plant and in culm length in an F2 population derived from a cross between the genetically divergent rice (Oryza sativa L.) cultivars ‘Sasanishiki’ (japonica) and ‘Habataki’ (indica). Quantitative trait locus (QTL) analysis of the two traits and two-way ANOVA of the detected QTLs suggested that the poor growth was due mainly to an epistatic interaction between genes at QTLs located on chromosomes 2 and 11. The poor growth was likely to result when a plant was homozygous for the ‘Habataki’ allele at the QTL on chromosome 2 and homozygous for the ‘Sasanishiki’ allele at the QTL on chromosome 11. The results suggest that the poor growth found in the F2 population was due to hybrid breakdown of a set of complementary genes. To test this hypothesis and determine the precise chromosomal location of the genes causing the hybrid breakdown, we performed genetic analyses using a chromosome segment substitution line, in which a part of chromosome 2 from ‘Habataki’ was substituted into the genetic background of ‘Sasanishiki’. The segregation patterns of poor growth in plants suggested that both of the genes underlying the hybrid breakdown were recessive. The gene on chromosome 2, designated hybrid breakdown 2 (hbd2), was mapped between simple sequence repeat markers RM3515 and RM3730. The gene on chromosome 11, hbd3, was mapped between RM5824 and RM1341.
机译:杂交失败的一个结果是生长不良,我们观察到这是由于遗传上不同的水稻(Oryza sativa L.)品种之间杂交产生的F2 群体的单株穗数和茎长的减少。 “ Sasanishiki”(日本)和“ Habataki”(印度)。对两个性状的定量性状基因座(QTL)分析和检测到的QTL的双向方差分析表明,不良的生长主要是由于位于2号和11号染色体上的QTL的基因之间存在上位性相互作用。当植物在2号染色体QTL的'Habataki'等位基因纯合而在11号染色体QTL的'Sasanishiki'等位基因纯合时。结果表明,在F2 种群中发现生长较差对一组互补基因进行杂交分解。为了验证这一假设并确定导致杂种破坏的基因的精确染色体位置,我们使用染色体区段替代系进行了遗传分析,其中将“ Habataki”的2号染色体的一部分替换为“ Sasanishiki”的遗传背景。植物生长不良的分离模式表明,杂种分解的两个基因都是隐性的。 2号染色体上的基因被称为杂合分解2(hbd2),位于简单序列重复标记RM3515和RM3730之间。 11号染色体hbd3上的基因位于RM5824和RM1341之间。

著录项

  • 来源
    《Theoretical and Applied Genetics》 |2007年第2期|179-186|共8页
  • 作者单位

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

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

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

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

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

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

    Oryzan sativa; Poor growth; Epistatic interaction; Linkage mapping; QTL mapping;

    机译:水稻;生长不良;上生相互作用;连锁图谱;QTL图谱;

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