Mapping of the heading date gene HdAey2280 in Aegilops tauschii

文献类型: 外文期刊

第一作者: Liu Guo-xiang

作者: Liu Guo-xiang;Zhang Li-chao;Xia Chuan;Jia Ji-zeng;Zhang Jun-cheng;Zhang Qiang;Dong Chun-hao;Kong Xiu-ying;Liu Xu

作者机构:

关键词: Aegilops tauschii;heading date;molecular markers;HdAey2280

期刊名称:JOURNAL OF INTEGRATIVE AGRICULTURE ( 影响因子:2.848; 五年影响因子:2.979 )

ISSN: 2095-3119

年卷期: 2016 年 15 卷 12 期

页码:

收录情况: SCI

摘要: An optimum heading date is essential for sustainable crop productivity and ensuring high yields. In the present study, F-2:3, populations were generated by crossing an early-heading accession, Y2280, with a late-heading accession, Y2282. The heading dates of the F-2 and F-3 populations were investigated in a field study. Using publicly available simple sequence repeat (SSR) markers, the early heading date gene HdAey2280 was mapped onto Aegilops tauschii chromosome 7DS between the flanking markers wmc438 and barc126 at distances of 15 and 9.1 cM, respectively. Further analysis indicated that HdAey2280 is a novel heading date gene. New SSR markers were developed based on the Ae. tauschii draft genome sequence, resulting in four new markers that were linked to the heading date gene HdAey2280. The closest distance of these markers was 1.9 cM away from the gene. The results collected in this study will serve as a framework for map-based cloning and marker-assisted selection in wheat breeding programs in the future.

分类号:

  • 相关文献

[1]Discovery, evaluation and distribution of haplotypes of the wheat Ppd-D1 gene. Guo, Zhiai,Song, Yanxia,Zhou, Ronghua,Jia, Jizeng,Guo, Zhiai,Ren, Zhenglong.

[2]Diversity in D-genome synthetic hexaploid wheat association panel for seedling emergence traits under salinity stress. Khan, Zeeshan,Qazi, Javaria,Rasheed, Awais,Rasheed, Awais,Mujeeb-Kazi, Abdul.

[3]Inheritance in hexaploid wheat of genes for hairy auricles and hairy leaf sheath derived from Aegilops tauschii Coss.. Wu, BH,Hu, XR,Ye, Y,Zhang, Y. 1999

[4]Differentiation of the high molecular weight glutenin subunit D-t x2.1 of Aegilops tauschii indicated by partial sequences of its encoding gene and SSR markers. Yang, WY,Lu, BR. 2005

[5]Synthetic hexaploid wheat and its utilization for wheat genetic improvement in China. Li, Jun,Wei, Huiting,Hu, Xiaorong,Zou, Yuchun,Liu, Dengcai,Zhang, Lianquan,Zheng, Youliang,He, Zhouhu,He, Zhouhu,Liu, Dengcai. 2009

[6]Synthetic hexaploid wheat enhances variation and adaptive evolution of bread wheat in breeding processes. Wan, Hong-Shen,Yang, Wu-Yun,Li, Jun,Wan, Hong-Shen,Yang, Wu-Yun. 2014

[7]Random amplified polymorphism of DNA analysis in Aegilops tauschii. Kong, LR,Dong, YC,Jia, JZ. 1998

[8]Relationships of Aegilops tauschii revealed by DNA fingerprints: The evidence for agriculture exchange between China and the West. Wei, Huiting,Li, Jun,Yang, Wuyun,Peng, Zhengsong,Zhao, Zhijun. 2008

[9]Identification of SNPs and development of allelic specific PCR markers for high molecular weight glutenin subunit D(t)x1.5 from Aegilops tauschii through sequence characterization. Yang, WY,Zhang, WJ,Lu, BR. 2005

[10]Comparing two approaches for introgression of germplasm from Aegilops tauschii into common wheat. Cox, Thomas S.,Wu, Jizhong,Wang, Shuwen,Cai, Jin,Zhong, Qiaofeng,Fu, Bisheng,Cox, Thomas S.,Wang, Shuwen. 2017

[11]Analysis of Genetic Diversity in Synthetic Wheat Assemblage (T. turgidumxAegilops tauschii; 2n=6x=42; AABBDD) for Winter Wheat Breeding. Hanif, Uzma,Kazi, Alvina Gul,Afzal, Fakiha,Khalid, Maria,Rasheed, Awais,Munir, Muhammad,Mujeeb-Kazi, Abdul.

[12]Five Fatty Acyl-Coenzyme A Reductases Are Involved in the Biosynthesis of Primary Alcohols in Aegilops tauschii Leaves. Wang, Meiling,Wu, Hongqi,Li, Chunlian,Wang, Yong,Wang, Zhonghua,Xu, Jing. 2017

[13]Identification and Mapping of Two New Genes Conferring Resistance to Powdery Mildew from Aegilops tauschii (Coss.) Schmal. Sun, Xiao-Li,Liu, Di,Zhang, Hai-Quan,Huo, Na-Xin,Zhou, Rong-Hua,Jia, Ji-Zeng.

[14]QTL Detection and Epistasis Analysis for Heading Date Using Single Segment Substitution Lines in Rice (Oryza sativa L.). Li Guang-xian,Li Si-shen,Chen Ai-hua,Liu Xu,Wang Wen-ying,Ding Han-feng,Li Jun,Liu Wei,Yao Fang-yin,Li Guang-xian. 2014

[15]Detection of epistatic interactions of three QTLs for heading date in rice using single segment substitution lines. Ding, Han-Feng,Liu, Xu,Li, Run-Fang,Wang, Wen-Ying,Zhang, Y.,Zhang, Xiao-Dong,Yao, Fang-Yin,Li, Guang-Xian,Jiang, Ming-Song,Ding, Han-Feng.

[16]Fine mapping of a minor-effect QTL, DTH12, controlling heading date in rice by up-regulation of florigen genes under long-day conditions. Zhong, Zhengzheng,Zhang, Xin,Cheng, Zhijun,Wang, Jiulin,Wan, Jianmin,Zhong, Zhengzheng,Wu, Weixun,Wang, Hongjun,Chen, Liping,Liu, Linglong,Wang, Chunming,Zhao, Zhigang,Lu, Guangwen,Gao, He,Wei, Xiangjin,Yu, Chuanyuan,Chen, Mingjiang,Shen, Yingyue,Jiang, Ling,Wan, Jianmin. 2014

[17]Brassinosteroid (BR) biosynthetic gene lhdd10 controls late heading and plant height in rice (Oryza sativa L.). Liu, X.,Feng, Z. M.,Zhou, C. L.,Ren, Y. K.,Mou, C. L.,Wu, T.,Yang, C. Y.,Liu, S. J.,Jiang, L.,Wan, J. M.,Wan, J. M..

[18]Fine mapping of DTH3b, a minor heading date QTL potentially functioning upstream of Hd3a and RFT1 under long-day conditions in rice. Chen, Liping,Wu, Weixun,Liu, Linglong,Lu, Guangwen,Wang, Jiulin,Jiang, Ling,Zhai, Huqu,Wan, Jianmin,Zhong, Zhengzheng,Jin, Mingna,Tan, Junjie,Sheng, Peike,Wang, Dan,Cheng, Zhijun,Wang, Jiulin,Zhang, Xin,Guo, Xiuping,Wu, Fuqing,Lin, Qibing,Zhu, Shanshan,Wu, Chuanyin,Wan, Jianmin.

[19]Combinations of the Ghd7, Ghd8 and Hd1 genes largely define the ecogeographical adaptation and yield potential of cultivated rice. Zhou, Xiangchun,Yan, Wenhao,Zhang, Zhanyi,Lu, Li,Han, Zhongmin,Zhao, Hu,Liu, Haiyang,Song, Pan,Hu, Yong,Shen, Guojing,He, Qin,Wang, Gongwei,Xing, Yongzhong,Zhang, Jia,Zhou, Xiangchun,Yan, Wenhao,Zhang, Zhanyi,Lu, Li,Han, Zhongmin,Zhao, Hu,Liu, Haiyang,Song, Pan,Hu, Yong,Shen, Guojing,He, Qin,Wang, Gongwei,Xing, Yongzhong,Guo, Sibin,Gao, Guoqing.

[20]Genetic mapping of a QTL controlling source-sink size and heading date in rice. Cheng, Shihua.

作者其他论文 更多>>