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首页> 外文期刊>Theoretical and Applied Genetics >Tagging and mapping of a rice gall midge resistance gene, Gm8, and development of SCARs for use in marker-aided selection and gene pyramiding
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Tagging and mapping of a rice gall midge resistance gene, Gm8, and development of SCARs for use in marker-aided selection and gene pyramiding

机译:水稻gall抗性基因Gm8的标记和作图以及用于标记辅助选择和基因金字塔的SCAR的开发

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摘要

Using amplified fragment length polymorphisms (AFLPs) and random amplified polymorphic DNAs (RAPDs), we have tagged and mapped Gm8, a gene conferring resistance to the rice gall midge (Orseolia oryzae), a major insect pest of rice, onto rice chromosome 8. Using AFLPs, two fragments, AR257 and AS168, were identified that were linked to the resistant and susceptible phenotypes, respectively. Another resistant phenotype-specific marker, AP19587, was also identified using RAPDs. SCAR primers based on the sequence of the fragments AR257 and AS168 failed to reveal polymorphism between the resistant and the susceptible parents. However, PCR using primers based on the regions flanking AR257 revealed polymorphism that was phenotype-specific. In contrast, PCR carried out using primers flanking the susceptible phenotype-associated fragment AS168 produced a monomorphic fragment. Restriction digestion of these monomorphic fragments revealed polymorphism between the susceptible and resistant parents. Nucleotide BLAST searches revealed that the three fragments show strong homology to rice PAC and BAC clones that formed a contig representing the short arm of chromosome 8. PCR amplification using the above-mentioned primers on a larger population, derived from a cross between two indica rice varieties, Jhitpiti (resistant parent) and TN1 (susceptible parent), showed that there is a tight linkage between the markers and the Gm8 locus. These markers, therefore, have potential for use in marker-aided selection and pyramiding of Gm8 along with other previously tagged gall midge resistance genes [Gm2, Gm4(t), and Gm7].
机译:使用扩增的片段长度多态性(AFLP)和随机扩增的多态性DNA(RAPD),我们将Gm8标记并定位到了水稻第8号染色体上,该基因赋予了对水稻主要害虫稻,(Orseolia oryzae)的抗性。使用AFLP,鉴定了两个片段AR257和AS168,它们分别与抗性和易感表型相关。还使用RAPD鉴定了另一种抗性表型特异性标记AP19587 。基于片段AR257和AS168的序列的SCAR引物未能揭示抗性和易感亲本之间的多态性。然而,使用基于AR257侧翼区域的引物进行的PCR显示了表型特异性的多态性。相反,使用与易感表型相关的片段AS168侧翼的引物进行的PCR产生单态片段。这些单态片段的限制性消化揭示了易感和抗性亲本之间的多态性。核苷酸BLAST搜索表明,这三个片段与水稻PAC和BAC克隆显示出强烈的同源性,后者形成了代表8号染色体短臂的重叠群。使用上述引物在较大的种群上进行PCR扩增,来源于两个from稻之间的杂交。 Jhitpiti(抗性亲本)和TN1(易感亲本)的变种表明,标记与Gm8基因座之间存在紧密的联系。因此,这些标记物具有与其他先前标记的胆resistance抗性基因[Gm2,Gm4(t)和Gm7]一起用于Gm8的标记辅助选择和金字塔化的潜力。

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  • 来源
    《Theoretical and Applied Genetics》 |2004年第7期|1377-1384|共8页
  • 作者单位

    International Centre for Genetic Engineering and Biotechnology (ICGEB);

    International Centre for Genetic Engineering and Biotechnology (ICGEB);

    Department of Plant Breeding and Genetics Indira Gandhi Agricultural University;

    Department of Plant Breeding and Genetics Indira Gandhi Agricultural University;

    International Centre for Genetic Engineering and Biotechnology (ICGEB);

    International Centre for Genetic Engineering and Biotechnology (ICGEB);

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