首页> 外文期刊>Theoretical and Applied Genetics >High-resolution mapping of a new brown planthopper (BPH) resistance gene, Bph18(t), and marker-assisted selection for BPH resistance in rice (Oryza sativa L.)
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High-resolution mapping of a new brown planthopper (BPH) resistance gene, Bph18(t), and marker-assisted selection for BPH resistance in rice (Oryza sativa L.)

机译:水稻新飞虱抗性基因Bph18(t)的高分辨率图谱以及水稻(Oryza sativa L.)水稻抗BPH的标记辅助选择

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摘要

Brown planthopper (BPH) is a destructive insect pest of rice in Asia. Identification and the incorporation of new BPH resistance genes into modern rice cultivars are important breeding strategies to control the damage caused by new biotypes of BPH. In this study, a major resistance gene, Bph18(t), has been identified in an introgression line (IR65482-7-216-1-2) that has inherited the gene from the wild species Oryza australiensis. Genetic analysis revealed the dominant nature of the Bph18(t) gene and identified it as non-allelic to another gene, Bph10 that was earlier introgressed from O. australiensis. After linkage analysis using MapMaker followed by single-locus ANOVA on quantitatively expressed resistance levels of the progenies from an F2 mapping population identified with marker allele types, the Bph18(t) gene was initially located on the subterminal region of the long arm of chromosome 12 flanked by the SSR marker RM463 and the STS marker S15552. The corresponding physical region was identified in the Nipponbare genome pseudomolecule 3 through electronic chromosome landing (e-landing), in which 15 BAC clones covered 1.612 Mb. Eleven DNA markers tagging the BAC clones were used to construct a high-resolution genetic map of the target region. The Bph18(t) locus was further localized within a 0.843-Mb physical interval that includes three BAC clones between the markers R10289S and RM6869 by means of single-locus ANOVA of resistance levels of mapping population and marker-gene association analysis on 86 susceptible F2 progenies based on six time-point phenotyping. Using gene annotation information of TIGR, a putative resistance gene was identified in the BAC clone OSJNBa0028L05 and the sequence information was used to generate STS marker 7312.T4A. The marker allele of 1,078 bp completely co-segregated with the BPH resistance phenotype. STS marker 7312.T4A was validated using BC2F2 progenies derived from two temperate japonica backgrounds. Some 97 resistant BC2F2 individuals out of 433 screened completely co-segregated with the resistance-specific marker allele (1,078 bp) in either homozygous or heterozygous state. This further confirmed a major gene-controlled resistance to the BPH biotype of Korea. Identification of Bph18(t) enlarges the BPH resistance gene pool to help develop improved rice cultivars, and the PCR marker (7312.T4A) for the Bph18(t) gene should be readily applicable for marker-assisted selection (MAS).
机译:褐飞虱(BPH)是亚洲水稻的一种毁灭性害虫。鉴定和结合新的BPH抗性基因到现代水稻品种中是控制新的BPH生物型引起的损害的重要育种策略。在这项研究中,已经在渗入系(IR65482-7-216-1-2)中鉴定出主要的抗性基因Bph18(t),该系已从野生物种Oryza australiensis继承了该基因。遗传分析揭示了Bph18(t)基因的显性性质,并将其鉴定为另一个基因Bph10的非等位基因,而Bph10则是早先从澳洲稻中渗入的。在使用MapMaker和单基因座ANOVA对通过标记等位基因类型鉴定的F2 群体的后代定量表达的抗性水平进行连锁分析后,Bph18(t)基因最初位于长链的亚末端区域12号染色体的臂侧接SSR标记RM463和STS标记S15552。通过电子染色体着陆(e-landing)在日本晴基因组假分子3中鉴定出相应的物理区域,其中15个BAC克隆覆盖1.612 Mb。标记BAC克隆的11个DNA标记用于构建目标区域的高分辨率遗传图谱。 Bph18(t)基因座进一步定位在一个0.843-Mb的物理区间内,该区间通过定位群体的抗性单位方差分析和对86个易感F2的标记基因关联分析,在标记R10289S和RM6869之间包括三个BAC克隆。 后代基于六个时间点表型。利用TIGR的基因注释信息,在BAC克隆OSJNBa0028L05中鉴定出一个抗性基因,并将序列信息用于生成STS标记7312.T4A。 1,078 bp的标记等位基因与BPH抗性表型完全共分离。利用来自两个温带粳稻背景的BC2 F2 后代对STS标记7312.T4A进行了验证。筛选出的433个中有97个抗性BC2 F2 个体与纯合或杂合状态的抗性特异性标记等位基因(1,078 bp)完全共分离。这进一步证实了对韩国BPH生物型的主要基因控制的抗性。 Bph18(t)的鉴定扩大了BPH抗性基因库,以帮助发展改良的水稻品种,并且Bph18(t)基因的PCR标记(7312.T4A)应该容易适用于标记辅助选择(MAS)。

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  • 来源
    《Theoretical and Applied Genetics》 |2006年第2期|288-297|共10页
  • 作者单位

    Plant Breeding Genetics and Biotechnology Division International Rice Research InstituteGenetics and Breeding Division National Institute of Crop Science RDA;

    Plant Breeding Genetics and Biotechnology Division International Rice Research InstituteGenetics and Breeding Division National Institute of Crop Science RDA;

    Genetics and Breeding Division National Institute of Crop Science RDA;

    Genetics and Breeding Division National Institute of Crop Science RDA;

    Plant Breeding Genetics and Biotechnology Division International Rice Research Institute;

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