Marker-assisted breeding of the rice restorer line Wanhui 6725 for disease resistance, submergence tolerance and aromatic fragrance

文献类型: 外文期刊

第一作者: Luo, Yanchang

作者: Luo, Yanchang;Ong, Kar Hui;Yin, Zhongchao;Luo, Yanchang;Ma, Tingchen;Li, Zefu;Yang, Jianbo;Zhang, Aifang;Yin, Zhongchao

作者机构:

关键词: badh2.1;Pi9;Sub1A;Xa4;Xa21;Xa27;Mianhui 725;Wanhui 6725;Marker-assisted selection

期刊名称:RICE ( 影响因子:4.783; 五年影响因子:5.23 )

ISSN: 1939-8425

年卷期: 2016 年 9 卷

页码:

收录情况: SCI

摘要: Rice is a staple food crop in the world. With the increase in world population and economic development, farmers need to produce more rice in limited field. However, the rice production is frequently affected by biotic and abiotic stresses. The use of natural disease resistance and stress tolerance through genetic breeding is the most efficient and economical way to combat or acclimate to these stresses. In addition, rice with aromatic fragrance can significantly increase market value for its good grain quality. Mianhui 725 (MH725) is an elite restorer line that has been widely used to produce three-line hybrid rice in China. We previously introduced rice bacterial blight resistance genes Xa4 and Xa21 into MH725 and obtained an introgression rice line Wanhui 421 (WH421), which theoretically possesses 96.9% genetic background of MH725. Here we report the introduction and pyramiding of disease resistance genes Xa27 and Pi9, submergence tolerance gene Sub1A and aromatic fragrance gene badh2.1 in WH421 through backcrossing and marker-assisted selection. The newly developed introgression rice line was designated as Wanhui 6725 (WH6725), which theoretically possesses 95.0% genetic background of MH725. WH6725 and its hybrid rice conferred disease resistance to both blast and bacterial blight diseases and showed tolerance to submergence for over 14 days without significant loss of viability. Compared with non-aromatic rice MH725, WH6725 has strong aromatic fragrance. The major important agronomic traits and grain quality of WH6725 and its hybrid rice obtained in field trials were similar to those of MH725 and the control hybrid rice, indicating that WH6725 is as good as MH725 when it is used as a restorer line for three-line hybrid rice production. We have successfully developed a new restorer line WH6725 with disease resistance to rice blast and bacterial blight, tolerance to submergence and aromatic fragrance, which can be used to replace MH725 for hybrid rice production.

分类号:

  • 相关文献

[1]Allele-specific marker-based assessment revealed that the rice blast resistance genes Pi2 and Pi9 have not been widely deployed in Chinese indica rice cultivars. Tian, Dagang,Zhou, Yuanchang,Tian, Dagang,Chen, Zaijie,Chen, Ziqiang,Wang, Feng,Chen, Songbiao,Wang, Zonghua. 2016

[2]XA21-specific induction of stress-related genes following Xanthomonas infection of detached rice leaves. Schwessinger, Benjamin,Liu, Furong,Chen, Huamin,Wei, Tong,Nguyen, Yen P.,Shaker, Isaac W. F.,Ronald, Pamela C.,Thomas, Nicholas C.,Schwessinger, Benjamin,Liu, Furong,Chen, Huamin,Wei, Tong,Nguyen, Yen P.,Shaker, Isaac W. F.,Ronald, Pamela C.,Thomas, Nicholas C.,Schwessinger, Benjamin,Liu, Furong,Wei, Tong,Ronald, Pamela C.,Schwessinger, Benjamin,Chen, Huamin. 2016

[3]Identification and expression analysis of components involved in rice Xa21-mediated disease resistance signalling. Bai, H.,Gan, Q.,Zhu, L. H.,Bai, H.,Bai, H.,Cao, Y. H.,Wu, L.,Lan, J. P.,Wang, X. Y.,Hou, M. M.,Li, L. Y.,Liu, L. J.,Liu, G. Z.,Hao, Y. J.,Yin, C. C..

[4]Characteristic Expression Analysis of Five WRKY Transcriptional Factors in Rice Leaf Growth and Disease Resistance Reaction. Miao Liu-Yang,Li Li-Yun,Liu Zhao,Liu Yu-Meng,Liu Guo-Zhen,Jiang Guang-Huai,Yang Feng-Huan,He Chen-Yang. 2013

[5]Pyramiding of Pi46 and Pita to improve blast resistance and to evaluate the resistance effect of the two R genes. Xiao Wu-ming,Luo Li-xin,Wang Hui,Guo Tao,Liu Yong-zhu,Zhou Ji-yong,Chen Zhi-qiang,Zhu Xiao-yuan,Yang Qi-yun. 2016

[6]Development of SNP-based dCAPS markers for identifying male sterile gene tms5 in two-line hybrid rice. Song, F. S.,Ni, J. L.,Li, L.,Ni, D. H.,Yang, J. B.,Qian, Y. L.. 2016

[7]SSR markers associated with fertility restoration genes against Triticum timopheevii cytoplasm in Diticum aestivum. Zhou, WC,Kolb, FL,Domier, LL,Wang, SW. 2005

[8]Marker-assisted breeding of Indonesia local rice variety Siputeh for semi-dwarf phonetype, good grain quality and disease resistance to bacterial blight. Luo, Yanchang,Yin, Zhongchao,Zakaria, Sabaruddin,Basyah, Bakhtiar,Luo, Yanchang,Ma, Tingchen,Li, Zefu,Yang, Jianbo,Yin, Zhongchao. 2014

[9]Enhancing phosphorus uptake efficiency through QTL-based selection for root system architecture in maize. Gu, Riliang,Chen, Fanjun,Long, Lizhi,Cai, Hongguang,Liu, Zhigang,Yang, Jiabo,Wang, Lifeng,Mi, Guohua,Zhang, Fusuo,Yuan, Lixing,Gu, Riliang,Li, Huiyong,Li, Junhui,Cai, Hongguang,Wang, Lifeng,Li, Huiyong. 2016

[10]Microsatellite mapping of the powdery mildew resistance gene Pm5e in common wheat (Triticum aestivum L.). Huang, XQ,Wang, LX,Xu, MX,Roder, MS. 2003

[11]Association mapping of quantitative trait loci for yield-related agronomic traits in rice (Oryza sativa L.). Xu Fei-fei,Huang Yan,Tong Chuan,Chen Ya-ling,Bao Jin-song,Jin Liang. 2016

[12]Molecular detection of rye (Secale cereale L.) chromatin in wheat line 07jian126 (Triticum aestivum L.) and its association to wheat powdery mildew resistance. Long, Hai,Zhang, Jie,Deng, Guangbing,Pan, Zhifen,Yu, Maoqun,Yu, Shuiyang,Zhang, Erliang,Yang, Hong,Zhang, Jie.

[13]Development of molecular markers linked to the wheat powdery mildew resistance gene Pm4b and marker validation for molecular breeding. Yi, Y. J.,Li, H. Y.,Wang, F.,Yi, Y. J.,An, L. Z.,Wang, X. L.,Huang, X. Q.. 2008

[14]Marker-assisted selection of two-line hybrid rice for disease resistance to rice blast and bacterial blight. Ni, Dahu,Song, Fengshun,Ni, Jinlong,Yang, Yachun,Wei, Pengcheng,Yang, Jianbo,Li, Li,Zhang, Aifang,Wang, Chunlian,Zhao, Kaijun.

[15]Genotyping-by-sequencing-based genome-wide association studies on Verticillium wilt resistance in autotetraploid alfalfa (Medicago sativa L.). Yu, Long-Xi,Zhang, Tiejun,Zheng, Ping,Main, Dorrie,Rodringuez, Jonas,Zhang, Tiejun.

[16]Enhancing genetic gain in the era of molecular breeding. Xu, Yunbi,Zou, Cheng,Xie, Chuanxiao,Xu, Yunbi,Zhang, Xuecai,Li, Ping,Lu, Yanli,Prasanna, Boddupalli M.,Olsen, Michael S..

[17]Fine mapping and marker-assisted selection (MAS) of a low glutelin content gene in rice. Wang, YH,Liu, SJ,Ji, SL,Zhang, WW,Wang, CM,Jiang, L,Wan, JM.

[18]Genetic dissection of the developmental behaviours of plant height in wheat under diverse water regimes. Wu, Xianshan,Wang, Zhenghang,Chang, Xiaoping,Jing, Ruilian.

[19]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

[20]Marker-assisted selection in breeding silkworm strains with high tolerance to fluoride, scaleless wings, and high silk production. Li, M. W.,Yu, H. J.,Yi, X. L.,Li, J.,Hou, C. X.,Li, M. W.,Hou, C. X.,Dai, F. Y.. 2015

作者其他论文 更多>>