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首页> 外文期刊>Theoretical and Applied Genetics >Analysis of T-DNA-Xa21 loci and bacterial blight resistance effects of the transgene Xa21 in transgenic rice
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Analysis of T-DNA-Xa21 loci and bacterial blight resistance effects of the transgene Xa21 in transgenic rice

机译:转基因水稻中T-DNA-Xa21基因座和转基因Xa21的抗白叶枯病作用分析

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摘要

The genetic loci and phenotypic effects of the transgene Xa21, a bacterial blight (BB) resistance gene cloned from rice, were investigated in transgenic rice produced through an Agrobacterium-mediated transformation system. The flanking sequences of integrated T-DNAs were isolated from Xa21 transgenic rice lines using thermal asymmetric interlaced PCR. Based on the analysis of 24 T-DNA- Xa21 flanking sequences, T-DNA loci in rice could be classified into three types: the typical T-DNA integration with the definite left and right borders, the T-DNA integration linked with the adjacent vector backbone sequences and the T-DNA integration involved in a complicated recombination in the flanking sequences. The T-DNA integration in rice was similar to that in dicotyledonous genomes but was significantly different from the integration produced through direct DNA transformation approaches. All three types of integrated transgene Xa21 could be stably inherited and expressed the BB resistance through derived generations in their respective transgenic lines. The flanking sequences of the typical T-DNA integration consisted of actual rice genomic DNA and could be used as probes to locate the transgene on the rice genetic map. A total of 15 different rice T-DNA flanking sequences were identified. They displayed restriction fragment length polymorphisms (RFLPs) between two rice varieties, ZYQ8 and JX17, and were mapped on rice chromosomes 1, 3, 4, 5, 7, 9, 10, 11 and 12, respectively, by using a double haploid population derived from a cross between ZYQ8 and JX17. The blast search and homology comparison of the rice T-DNA flanking sequences with the rice chromosome-anchored sequence database confirmed the RFLP mapping results. On the basis of genetic mapping of the T-DNA- Xa21 loci, the BB resistance effects of the transgene Xa21 at different chromosome locations were investigated using homozygous transgenic lines with only one copy of the transgene. Among the transgenic lines, no obvious position effects of the transgene Xa21 were observed. In addition, the BB resistance levels of the Xa21 transgenic plants with different transgene copy numbers and on different genetic backgrounds were also investigated. It was observed that genetic background (or genome) effects were more obvious than dosage effects and position effects on the BB resistance level of the transgenic plants.
机译:在通过农杆菌介导的转化系统生产的转基因水稻中,研究了转基因Xa21的遗传基因座和表型效应,Xa21是从水稻克隆的细菌白叶枯病(BB)抗性基因。使用热不对称交错PCR从Xa21转基因水稻品系中分离出整合的T-DNA的侧翼序列。根据对24个T-DNA-Xa21侧翼序列的分析,水稻中的T-DNA基因座可分为三种类型:典型的具有明确左右边界的T-DNA整合,与相邻T-DNA整合的T-DNA整合。载体主链序列和参与侧翼序列复杂重组的T-DNA整合。水稻中的T-DNA整合与双子叶基因组相似,但与直接DNA转化方法产生的整合明显不同。整合的转基因Xa21的所有三种类型都可以通过各自的转基因系中的衍生世代稳定地遗传并表达BB抗性。典型的T-DNA整合的侧翼序列由实际的水稻基因组DNA组成,可以用作在水稻遗传图谱上定位转基因的探针。总共鉴定了15种不同的水稻T-DNA侧翼序列。他们显示了两个水稻品种ZYQ8和JX17之间的限制性片段长度多态性(RFLP),并使用双单倍体群体分别定位在水稻染色体1、3、4、5、7、9、10、11和12上。从ZYQ8和JX17之间的交叉衍生而来。水稻T-DNA侧翼序列与水稻染色体锚定序列数据库的blast搜索和同源性比较证实了RFLP作图结果。基于T-DNA-Xa21基因座的遗传图谱,使用仅具有一个转基因拷贝的纯合转基因品系,研究了转基因Xa21在不同染色体位置的BB抗性作用。在转基因品系中,未观察到转基因Xa21的明显位置效应。另外,还研究了具有不同转基因拷贝数和不同遗传背景的Xa21转基因植物的BB抗性水平。观察到,遗传背景(或基因组)效应比剂量效应和位置效应对转基因植物的BB抗性更为明显。

著录项

  • 来源
    《Theoretical and Applied Genetics》 |2004年第3期|534-542|共9页
  • 作者单位

    National Key Laboratory of Plant Genomics Institute of Genetics and Developmental Biology Chinese Academy of Sciences;

    National Key Laboratory of Plant Genomics Institute of Genetics and Developmental Biology Chinese Academy of Sciences;

    National Key Laboratory of Plant Genomics Institute of Genetics and Developmental Biology Chinese Academy of Sciences;

    National Key Laboratory of Plant Genomics Institute of Genetics and Developmental Biology Chinese Academy of Sciences;

    National Key Laboratory of Plant Genomics Institute of Genetics and Developmental Biology Chinese Academy of Sciences;

    National Key Laboratory of Plant Genomics Institute of Genetics and Developmental Biology Chinese Academy of Sciences;

    National Key Laboratory of Plant Genomics Institute of Genetics and Developmental Biology Chinese Academy of Sciences;

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