您好,欢迎访问北京市农林科学院 机构知识库!

Microsatellite mapping of the powdery mildew resistance gene Pm5e in common wheat (Triticum aestivum L.)

文献类型: 外文期刊

作者: Huang, XQ 1 ; Wang, LX 2 ; Xu, MX 2 ; Roder, MS 2 ;

作者机构: 1.IPK, D-06466 Gatersleben, Germany

2.IPK, D-06466 Gatersleben, Germany; Beijing Acad Agr & Forestry Sci, Crop Inst, Beijing 100083, Peoples R China

关键词: bulked segregant analysis;genetic mapping;marker-assisted selection;microsatellite markers;powdery mildew resistance;Triticum aestivum

期刊名称:THEORETICAL AND APPLIED GENETICS ( 影响因子:5.699; 五年影响因子:5.565 )

ISSN: 0040-5752

年卷期: 2003 年 106 卷 5 期

页码:

收录情况: SCI

摘要: Powdery mildew, caused by Erysiphe graminis DM f. sp. tritici (Em. Marchal), is one of the most important diseases of common wheat world-wide. Chinese wheat variety 'Fuzhuang 30' carries the powdery mildew resistance gene Pm5e and has proven to be a valuable resistance source of powdery mildew for wheat breeding. Microsatellite markers were employed to identify the gene Pm5e in a F-2 progeny from the cross 'Nongda 15' (susceptible) x 'Fuzhuang 30' (resistant). The gene Pm5e was mapped in the distal region of chromosome 7BL. Seven microsatellite markers were found to be linked to the gene Pm5e, of which two codominant markers Xgwm783 and Xgwm1267 were relatively close to Pm5e with a linkage distance of 11.0 cM and 6.6 cM, respectively. It is possible to use the 136-bp allele of Xgwm1267 in 'Fuzhuang 30' for marker-assisted selection during the wheat resistance breeding process for facilitation of gene pyramiding. The mapping information in the present study provides a starting point for fine mapping of the Pm5 locus and map-based cloning to clarify the molecular structure and function of the different alleles at the Pm5 locus. A microsatellite linkage map of chromosome 7B was constructed with 20 microsatellite loci, nine on the short arm and 11 on the long arm. This information will be very useful for further mapping of agronomically important genes of interest on chromosome 7B.

  • 相关文献

[1]Mapping the BrPur gene for purple leaf color on linkage group A03 of Brassica rapa. Wang, Weihong,Zhang, Deshuang,Yu, Shuancang,Liu, Jin,Wang, Dan,Zhang, Fenglan,Yu, Yangjun,Zhao, Xiuyun,Lu, Guixiang,Su, Tongbing,Wang, Weihong,Zhang, Deshuang,Yu, Shuancang,Liu, Jin,Wang, Dan,Zhang, Fenglan,Yu, Yangjun,Zhao, Xiuyun,Lu, Guixiang,Su, Tongbing.

[2]Identification and validation of a core set of microsatellite markers for genetic diversity analysis in watermelon, Citrullus lanatus Thunb. Matsum. & Nakai. Zhang, Haiying,Wang, Hui,Guo, Shaogui,Ren, Yi,Gong, Guoyi,Xu, Yong,Weng, Yiqun.

[3]Expression analysis and genetic mapping of three SEPALLATA-like genes from peach (Prunus persica (L.) Batsch). Xu, Yong,Zhang, Lin,Ma, Rong-Cai,Xu, Yong,Zhang, Lin,Xie, Hua,Zhang, Yan-Qiu,Ma, Rong-Cai,Oliveira, M. Margarida.

[4]Whole-Genome Mapping Reveals Novel QTL Clusters Associated with Main Agronomic Traits of Cabbage (Brassica oleracea var. capitata L.). Lv, Honghao,Liu, Xing,Han, Fengqing,Fang, Zhiyuan,Yang, Limei,Zhuang, Mu,Liu, Yumei,Li, Zhansheng,Zhang, Yangyong,Wang, Qingbiao. 2016

[5]Allelic Variation at the TaZds-A1 Locus on Wheat Chromosome 2A and Development of a Functional Marker in Common Wheat. Dong Chang-hai,Ma Zhi-ying,Dong Chang-hai,Xia Xian-chun,Zhang Li-ping,He Zhong-hu,He Zhong-hu,Zhang Li-ping. 2012

[6]Identification and characterization of a subset of microRNAs in wheat (Triticum aestivum L.). Su, Chun,Gao, Shiqing,Tang, Yimiao,Zhao, Changping,Li, Lei,Su, Chun,Yang, Xiaozeng,Li, Lei.

[7]Protective function of narrow grass hedges on soil and water loss on sloping croplands in Northern China. Xiao, Bo,Wang, Qing-hai,Wu, Ju-ying,Huang, Chuan-wei,Yu, Ding-fang,Xiao, Bo.

[8]Genetic analysis and chromosome mapping of a thermo-sensitive genic male sterile gene in wheat. Ru, Zhen-Gang,Hu, Tie-Zhu,Zhang, Li-Ping,Zhao, Chang-Ping,Liu, Hong-Yu,Yang, Qing-Kai,Weng, Man-Li,Wang, Bin.

作者其他论文 更多>>