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Fine Mapping and Candidate Gene Analysis of Resistance Gene RSC3Q to Soybean mosaic virus in Qihuang 1

机译:岐黄1号抗大豆花叶病毒基因RSC3Q的精细定位及候选基因分析

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摘要

Soybean mosaic virus (SMV) disease is one of the most destructive viral diseases in soybean (Glycine max (L.) Merr.). SMV strain SC3 is the major prevalent strain in huang-huai and Yangtze valleys, China. The soybean cultivar Qihuang 1 is of a rich resistance spectrum and has a wide range of application in breeding programs in China. In this study, F1, F2 and F2:3 from Qihuang 1×nannong 1138-2 were used to study inheritance and linkage mapping of the SC3 resistance gene in Qihuang 1. The secondary F2 population and near isogenic lines (nILs) derived from residual heterozygous lines (RhLs) of Qihuang 1×nannong 1138-2 were separatively used in the ifne mapping and candidate gene analysis of the resistance gene. Results indicated that a single dominant gene (designated RSC3Q) controls resistance, which was located on chromosome 13. Two genomic-simple sequence repeat (SSR) markers BARCSOYSSR_13_1114 and BARCSOYSSR_13_1136 were found lfanking the two sides of the RSC3Q. The interval between the two markers was 651 kb. Quantitative real-time PCR analysis of the candidate genes showed that ifve genes (Glyma13g25730, 25750, 25950, 25970 and 26000) were likely involved in soybean SMV resistance. These results would have utility in cloning of RSC3Q resistance candidate gene and marker-assisted selection (MaS) in resistance breeding to SMV.
机译:大豆马赛克病毒(SMV)病是大豆中最具破坏性的病毒疾病之一(甘氨酸Max(L.)Merr。)。 SMV菌株SC3是中国黄淮和长江谷的主要普遍普遍存在菌株。大豆品种Qihuang 1具有丰富的抗谱,在中国的繁殖计划中具有广泛的应用。在本研究中,来自Qihuang 1×Nannong 1138-2的F1,F2和F2:3用于研究QiHuang1中SC3抗性基因的遗传和联系映射。次级F2种群和邻近的等离子体(NIL)衍生自残Qihuang 1×Nanong 1138-2的杂合线(RHL)分别用于IFNE测绘和抗性基因的候选基因分析。结果表明,单一主要基因(指定的RSC3Q)控制抗性,其位于染色体上。两个基因组 - 简单的序列重复(SSR)标记Barcsoysr_1314和Barcsoyssr_13_1136和Barcsoyssr_13_1136在RSC3Q的两侧发现。两个标记之间的间隔为651 kB。候选基因的定量实时PCR分析表明,IFVE基因(Glyma13G25730,25750,25950,25970和26000)可能参与大豆SMV抗性。这些结果将克隆RSC3Q抗性候选基因和标记辅助选择(MAS)的耐受育种的效用。

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  • 来源
    《农业科学学报(英文版)》 |2014年第12期|2608-2615|共8页
  • 作者单位

    National Center for Soybean Improvement/National Key Laboratory for Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, P.R.China;

    National Center for Soybean Improvement/National Key Laboratory for Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, P.R.China;

    National Center for Soybean Improvement/National Key Laboratory for Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, P.R.China;

    National Center for Soybean Improvement/National Key Laboratory for Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, P.R.China;

    National Center for Soybean Improvement/National Key Laboratory for Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, P.R.China;

    National Center for Soybean Improvement/National Key Laboratory for Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, P.R.China;

    National Center for Soybean Improvement/National Key Laboratory for Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, P.R.China;

    National Center for Soybean Improvement/National Key Laboratory for Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, P.R.China;

    National Center for Soybean Improvement/National Key Laboratory for Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, P.R.China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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