Genetic Analysis and Mapping of the Dominant Dwarfing Gene D-53 in Rice

文献类型: 外文期刊

第一作者: Wei, LR

作者: Wei, LR;Xu, JC;Li, XB;Qian, Q;Zhu, LH

作者机构:

关键词: dominant dwarf gene;genetic analysis;genetic mapping;rice

期刊名称:JOURNAL OF INTEGRATIVE PLANT BIOLOGY ( 影响因子:7.061; 五年影响因子:6.002 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: The dwarfing gene D-53 is one of a few dominant genes for dwarfing in rice (Oryza sativa L.). In the present study, our genetic analysis confirmed that mutant characteristics including dwarfing, profuse tillering, thin stems and small panicles are allcontrolled by the dominant D-53 gene. We measured the length of each internode of KL908, a D-53-carrying line, and classified the dwarfism of KL908 into the dn-type. In addition, we measured elongation of the second sheath and alpha-amylase activity inthe endosperm, and we characterized KL908 as a dwarf mutant that was neither gibberellic acid-deficient nor gibberellic acid-insensitive. Using a large F_2 population obtained by crossing KL908 with a wild-type variety, NJ6, the D-53 gene was mapped to the terminal region of the short arm of chromosome 11, with one simple sequence repeat marker, Ds3, co-segregating, and the other, K81114, located 0.6 cM away.

分类号: Q94

  • 相关文献

[1]A paracentric inversion suppresses genetic recombination at the FON3 locus with breakpoints corresponding to sequence gaps on rice chromosome 11L. Jiang, Li,Zhang, Wenli,Xia, Zhihui,Jiang, Guanghuai,Qian, Qian,Li, Aili,Cheng, Zhukuan,Zhu, Lihuang,Mao, Long,Zhai, Wenxue. 2007

[2]The genetic analysis and germplasm identification of the gametophytes of Undaria pinnatifida (Phaeophyceae) with RAPD method. Wang, Di,Wang, Xiuliang,Li, Dapeng,Wang, Feijiu,Duan, Delin.

[3]Genetic fine mapping and candidate gene analysis of the Gossypium hirsutum Ligon lintless-1 (Li1) mutant on chromosome 22(D). Yurong Jiang,Mingquan Ding,Yuefen Cao,Fen Yang,Hua Zhang,Shae He,Huaqin Dai,Huanfeng Hao,Junkang Rong.

[4]QTL mapping for fiber quality traits across multiple generations and environments in upland cotton. Fu-Ding Sun,Jian-Hong Zhang,Shu-Fang Wang,Wan-Kui Gong,Yu-Zhen Shi,Ai-Ying Liu,Jun-Wen Li,Ju-Wu Gong,Hai-Hong Shang,You-Lu Yuan.

[5]Identification of the resistance gene to powdery mildew in Chinese wheat landrace Baiyouyantiao. Feng Jing,Fan Jie-ru,Zhou Yi-lin,Xu Xiao-dan,Ma Zhan-hong,Liu Zhi-yong,Li Qiang. 2018

[6]Genetic analysis and QTL mapping of maize yield and associate agronomic traits under semi-arid land condition. Guo, Jiufeng,Zhang, Jinpeng,Wang, Guoying,Wang, Guoying,Guo, Jiufeng,Su, Guoqin. 2008

[7]Inheritance and mapping of male sterility restoration gene in upland japonica restorer lines. Tao, DY,Xu, P,Li, J,Hu, FY,Yang, YQ,Zhou, JW,Tan, XL,Jones, MP. 2004

[8]Genomic distribution and characterization of EST-derived resistance gene analogs (RGAs) in sugarcane. Rossi, M,Araujo, PG,Paulet, F,Garsmeur, O,Dias, VM,Chen, H,Van Sluys, MA,D'Hont, A. 2003

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

[10]Identification and gene mapping of a soybean chlorophyll-deficient mutant. Zhang, H.,Zhang, D.,Han, S.,Zhang, X.,Yu, D.,Han, S.. 2011

[11]Semidwarf gene sdk has pleiotropic effects on rice (Oryza sativa L.) plant architecture. Yang, XiaoMing,Jiang, Ling,Yang, Chao,Li, Hui,Liu, LingLong,Wan, JianMin,Wan, JianMin.

[12]Fine mapping of the fg gene using the interspecific cross of Gossypium hirsutum x Gossypium barbadense. Li, Fuzhen,Qiu, Xinmian,Wang, Lina,Hu, Xilian. 2010

[13]Molecular Mapping of the Major Resistance Quantitative Trait Locus qHS2.09 with Simple Sequence Repeat and Single Nucleotide Polymorphism Markers in Maize. Weng, Jianfeng,Hao, Zhuanfang,Xie, Chuanxiao,Li, Mingshun,Zhang, Degui,Bai, Li,Liu, Changlin,Zhang, Shihuang,Li, Xinhai,Liu, Xianjun,Wang, Zhenhua,Zhang, Lin,Wang, Jianjun.

[14]Heterozygosities and genetic relationship of tea cultivars revealed by simple sequence repeat markers and implications for breeding and genetic mapping programs. Tan, L. Q.,Qi, G. N.,Chen, S. X.,Zou, Y.,Zhang, C. C.,Wang, L. Y.,Wei, K.,Wu, L. Y.,Cheng, H.,Wang, L. Y.,Wei, K.,Cheng, H.. 2015

[15]The potato R10 resistance specificity to late blight is conferred by both a single dominant R gene and quantitative trait loci. Xu, Jianfei,Pang, Wanfu,Bian, Chunsong,Duan, Shaoguang,Liu, Jie,Huang, Sanwen,Jin, Liping,Qu, Dongyu,Wang, Jiajia. 2013

[16]A 1,681-locus consensus genetic map of cultivated cucumber including 67 NB-LRR resistance gene homolog and ten gene loci. Yang, Luming,Li, Dawei,Li, Yuhong,Weng, Yiqun,Li, Dawei,Li, Yuhong,Gu, Xingfang,Huang, Sanwen,Garcia-Mas, Jordi,Weng, Yiqun. 2013

[17]Preliminary Study on Mapping of Genes Controlling Staminate Flower Expression and QTL Analysis of the Ratio of Pistillate Flowers in Melon (Cucumis melo L.). Luan, Feishi,Sheng, Yunyan,Lu, Xuqiang. 2010

[18]Localization of genes for lateral branch and female sex expression and construction of a molecular linkage map in cucumber (Cucumis sativus L.) with RAPD markers. Li, XZ,Pan, JS,Wang, G,Tian, LB,Si, LT,Wu, AZ,Cai, R. 2005

[19]Characterization and mapping of novel chlorophyll deficient mutant genes in durum wheat. Li, Ning,Jia, Jizeng,Xia, Chuan,Liu, Xu,Kong, Xiuying.

[20]SSR marker-based mapping and linkage analysis of Bombyx mori thermotolerance gene. Zhao, Yuan,Wu, Yang-Chun,Zhu, Ya-Hong,Zhao, Yuan,Zhang, Jiang.

作者其他论文 更多>>