您好,欢迎访问江苏省农业科学院 机构知识库!

Detection of Fusarium head blight resistance QTL in a wheat population using bulked segregant analysis

文献类型: 外文期刊

作者: Shen, X 1 ; Zhou, M 2 ; Lu, W 2 ; Ohm, H 2 ;

作者机构: 1.Purdue Univ, Dept Agron, W Lafayette, IN 47907 USA

2.Purdue Univ, Dept Agron, W Lafayette, IN 47907 USA; Jiangsu Acad Agr Sci, Inst Genet & Physiol, Nanjing, Peoples R China

关键词: wheat;Fusarium head blight (FHB);quantitative trait loci (QTL);simple sequence repeat (SSR)

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 6 期

页码:

收录情况: SCI

摘要: A population of 218 recombinant inbred lines (RILs) was developed from the cross of two wheat (Triticum aestivum L.) cultivars, 'Ning 894037' and 'Alondra'. Ning 894037 has resistance to Fusarium head blight (FHB) and Alondra is moderately susceptible. Response of the RILs and their parental lines to FHB infection was evaluated with point inoculation in four experiments both in greenhouse and in field conditions. Distribution of disease severity in the population is continuous, indicating quantitative inheritance of resistance to FHB. Bulked segregant analysis and QTL mapping based on simple sequence repeat (SSR) markers revealed three chromosome regions that are responsible for FHB resistance. A chromosome region on 3BS accounted for 42.5% of the phenotypic variation for FHB resistance. Additional QTLs were located on chromosomes 2D and 6B. These three QTLs jointly accounted for 51.6% of the phenotypic variation. SSR markers linked to the QTLs influencing resistance to FHB have potential for use in breeding programs.

  • 相关文献

[1]Jellyfish Green Fluorescent Protein (GFP) as a Reporter for Fusarium gramminearum Development on Wheat. Liu Tai-guo,Xu Ying,Gao Li,Liu Bo,Chen Wan-quan,Chen Huai-gu. 2014

[2]Diversity, population structure, and evolution of local peach cultivars in China identified by simple sequence repeats. Shen, Z. J.,Zhang, Z.,Shen, Z. J.,Ma, R. J.,Cai, Z. X.,Yu, M. L.. 2015

[3]Genome-wide association study of resistance to rough dwarf disease in maize. Weng, Jianfeng,Zhang, Degui,Zhang, Xiaocong,Shi, Liyu,Hao, Zhuanfang,Xie, Chuanxiao,Li, Mingshun,Ci, Xiaoke,Bai, Li,Li, Xinhai,Zhang, Shihuang,Yang, Xiaoyan,Meng, Qingchang,Yuan, Jianhua,Guo, Xinping.

[4]QTL mapping of dehiscence length at the basal part of thecae related to heat tolerance of rice (Oryza sativa L.). Zhao, Ling,Zhao, Chun-Fang,Zhou, Li-Hui,Lin, Jing,Zhao, Qing-Yong,Zhu, Zhen,Chen, Tao,Yao, Shu,Wang, Cai-Lin,Zhao, Ling,Zhao, Chun-Fang,Zhou, Li-Hui,Lin, Jing,Zhao, Qing-Yong,Zhu, Zhen,Chen, Tao,Yao, Shu,Hasegawa, Toshihiro,Matsui, Tsutomu.

[5]Different Tolerance in Bread Wheat, Durum Wheat and Barley to Fusarium Crown Rot Disease Caused by Fusarium pseudograminearum. Liu, Yaxi,Wei, Yuming,Zheng, Youliang,Liu, Yaxi,Ma, Jun,Yan, Wei,Liu, Chunji,Ma, Jun,Yan, Guijun,Yan, Wei,Zhou, Meixue,Zhou, Meixue. 2012

[6]Mapping of a wheat resistance gene to yellow mosaic disease by amplified fragment length polymorphism and simple sequence repeat markers. Nie, H,He, ZT,Chen, XL,Han, YP,Wang, JR,Li, X,Han, CG,Yu, JL. 2005

[7]Change of Defensive-related Enzyme in Wheat Crown Rot Seedlings Infected by Fusarium graminearum. Zhang, P.,Zhou, M. P.,Zhang, X.,Huo, Y.,Ma, H. X.. 2013

[8]Mapping a resistance gene in wheat cultivar Yangfu 9311 to yellow mosaic virus, using microsatellite markers. Liu, WH,Nie, H,Wang, SB,Li, X,He, ZT,Han, CG,Wang, JR,Chen, XL,Li, LH,Yu, JL. 2005

[9]Genotypically Identifying Wheat Mesophyll Conductance Regulation under Progressive Drought Stress. Olsovska, Katarina,Brestic, Marian,Shao, Hong Bo,Olsovska, Katarina,Kovar, Marek,Brestic, Marian,Zivcak, Marek,Slamka, Pavol,Shao, Hong Bo. 2016

[10]Heme Oxygenase-1 is Associated with Wheat Salinity Acclimation by Modulating Reactive Oxygen Species Homeostasis. Xie, Yanjie,Cui, Weiti,Shen, Wenbiao,Yang, Qing,Xie, Yanjie,Cui, Weiti,Shen, Wenbiao,Yang, Qing,Yuan, Xingxing. 2011

[11]Quantitative trait loci for resistance to Sharp Eyespot (Rhizoctonia cerealis) in recombinant inbred wheat lines from the cross Niavt 14 x Xuzhou 25. Jiang, Yanjie,Zhu, Fangfang,Cai, Shibin,Wu, Jizhong,Zhang, Qiaofeng. 2016

[12]Overexpression of wheat lipid transfer protein gene TaLTP5 increases resistances to Cochliobolus sativus and Fusarium graminearum in transgenic wheat. Li, Zhao,Xu, Huijun,Du, Lipu,Zhang, Zengyan,Zhou, Miaoping.

[13]The wheat AGC kinase TaAGC1 is a positive contributor to host resistance to the necrotrophic pathogen Rhizoctonia cerealis. Zhu, Xiuliang,Yang, Kun,Wei, Xuening,Rong, Wei,Du, Lipu,Ye, Xingguo,Qi, Lin,Zhang, Zengyan,Zhang, Qiaofeng.

[14]Effect of wheat pearling on flour phytase activity, phytic acid, iron, and zinc content. Liu, Zhenghui,Wang, Haiyan,Wang, Xu-E,Xu, Hongyan,Chen, Peidu,Liu, Dajun,Gao, Derong,Zhang, Guoping. 2008

[15]Characterization of a Wheat Heme Oxygenase-1 Gene and Its Responses to Different Abiotic Stresses. Xu, Dao-kun,Jin, Qi-jiang,Xie, Yan-jie,Liu, Ya-hui,Lin, Yu-ting,Shen, Wen-biao,Zhou, Yi-jun. 2011

[16]INHERITANCE AND CHROMOSOMAL LOCATIONS OF MALE-FERTILITY RESTORING GENE TRANSFERRED FROM AEGILOPS-UMBELLULATA ZHUK TO TRITICUM-AESTIVUM L. MA, ZQ,ZHAO, YH,SORRELLS, ME. 1995

[17]Identification of novel quantitative trait loci for resistance to Fusarium seedling blight caused by Microdochium majus and M. nivale in wheat. Ren, Runsheng,Yang, Xingping,Ren, Runsheng,Foulkes, John,Mayes, Sean,Ray, Rumiana V..

[18]A novel, in vivo, indoor method to preserve rice black-streaked dwarf virus in small brown planthopper using wheat seedling as a bridge host. Ren, Chunmei,Cheng, Zhaobang,Yang, Liu,Miao, Qian,Fan, Yongjian,Zhou, Yijun.

[19]Natural occurrence of deoxynivalenol and zearalenone in wheat from Jiangsu province, China. Ji, Fang,Xu, Jianhong,Liu, Xin,Yin, Xianchao,Shi, Jianrong.

[20]MOLECULAR BREEDING FOR WHEAT FUSARIUM HEAD BLIGHT RESISTANCE IN CHINA. M, Hongxiang,Yao, Jinbao,Zhou, Miaoping,Zhang, Xu,Ren, Lijuan,Yu, Giuhong,Lu, Weizhong.

作者其他论文 更多>>