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Suppressed recombination around the MXC3 locus, a major gene for resistance to poplar leaf rust

机译:抑制MXC3基因座周围的重组,MXC3基因座是抗杨树叶锈病的主要基因

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摘要

A positional cloning strategy is being implemented in Populus for the isolation of the dominant MXC3 allele, which confers resistance to poplar leaf rust caused by Melampsora×columbiana (pathotype 3). AFLP markers were used to saturate the chromosomal region around the MXC3 locus in a large (n=1,902) Populus trichocarpa×P. deltoides (T×D) mapping pedigree segregating 1:1 for rust resistance and susceptibility. The high-resolution linkage map developed around the MXC3 locus contains 19 AFLP markers and spans a genetic distance of 2.73 cM. Of the 19 AFLP markers, seven were found to co-segregate with the locus. One co-segregating AFLP marker, CCG.GCT_01, was converted to an STS marker (BVS1) and used to identify a physical contig of overlapping BAC clones from the MXC3 region. Genetic and physical mapping of markers isolated from the BAC contig failed to delimit the MXC3 locus within a 300-kb interval defined by the overlapping BAC clones. This result indicates a >25-fold reduction in recombination frequency in the MXC3 region compared to the average rate of recombination for the Populus genome.
机译:在杨树中正在实施位置克隆策略以分离优势MXC3等位基因,该基因赋予对Melampsora×columbiana(致病型3)引起的杨树叶锈病的抗性。 AFLP标记用于使毛果杨(Populus trichocarpa×P)大(n = 1,902)中MXC3基因座周围的染色体区域饱和。三角洲(T×D)谱系谱以1:1的比例隔离以防锈性和敏感性。围绕MXC3基因座开发的高分辨率连锁图谱包含19个AFLP标记,遗传距离为2.73 cM。在19个AFLP标记中,发现有7个与基因座共分离。将一个共同分离的AFLP标记CCG.GCT_01转换为STS标记(BVS1),并用于从MXC3区识别重叠的BAC克隆的物理重叠群。从BAC重叠群中分离出的标记的遗传和物理图谱未能在由重叠BAC克隆定义的300 kb间隔内划定MXC3基因座。该结果表明,与胡杨基因组的平均重组率相比,MXC3区域的重组频率降低了> 25倍。

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  • 来源
    《Theoretical and Applied Genetics》 |2001年第8期|1129-1137|共9页
  • 作者单位

    Center for Urban Horticulture Box 354115 3501 NE 41st St. University of Washington Seattle WA 98195-4115 USA e-mail: toby@u.washington.edu Tel.: +206 616-1796 Fax: +206 685-2692;

    Department of Forest Resources University of Idaho Moscow Idaho 83844-1183 USA;

    Boyce Thompson Institute of Plant Research Tower Road Cornell University Campus Ithaca NY 14853 USA;

    Genome Sequence Centre B.C. Cancer Research Centre Vancouver V5Z-4E6 B.C. Canada;

    Center for Urban Horticulture Box 354115 3501 NE 41st St. University of Washington Seattle WA 98195-4115 USA e-mail: toby@u.washington.edu Tel.: +206 616-1796 Fax: +206 685-2692;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Keywords Map-based cloning; Hybrid poplar; Plant disease resistance;

    机译:关键词基于图谱的克隆;杂种杨;植物抗病性;

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