Mapping QTLs for hybrid sterility in three AA genome wild species of Oryza

文献类型: 外文期刊

第一作者: Yang, Ying

作者: Yang, Ying;Zhou, Jiawu;Li, Jing;Xu, Peng;Zhang, Yu;Tao, Dayun

作者机构:

关键词: hybrid sterility;quantitative trait locus (QTL);O. nivara;O. rufipogon;O. barthii;O. sativa

期刊名称:BREEDING SCIENCE ( 影响因子:2.086; 五年影响因子:2.632 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: In order to know the genetic nature of hybrid sterility further, three populations, a BC4F2 population derived from Oryza nivara crossed with Yundao 1, a BC4F2 population derived from O. rufipogon crossed with Yundao 1, and a BC10F1 population derived from a cross between O. barthii and Dianjingyou 1 were developed, respectively. Three hybrid sterility QTLs, qHS-6a, qHS-6b, and qHS-6c, detected from those three populations, were mapped into the region between RM190 and RM510, RM190 and RM3414, RM190 and RM587 on chromosome 6, respectively. These QTLs showed collinearity, and explained 88.24%, 61.52%, 44.46% of the phenotypic variance in pollen fertility and 80.60%, 35.20%, 29.01% of the phenotypic variance in spikelet fertility, respectively. In all three crosses, the gametes carrying Yundao 1 or Dianjingyou 1 alleles were eliminated by gametes carrying the wild species alleles. Comparison of the location and the mode of gene action of three QTLs correspond to the S1 locus indicates a common and conserved hybrid sterility locus in AA genome specie playing an important role in reproductive barriers in Oryza. Fine mapping of these QTLs would lead to understand the micro-collinearity and evolutionary relationship among Oryza species.

分类号: S33

  • 相关文献

[1]Whole genome deep sequencing revealed host impact on population structure, variation and evolution of Rice stripe virus. Lu, Lina,Zhou, Xueping,Wu, Jianxiang,Wu, Sanling,Jiang, Jun,Liang, Jingting,Zhou, Xueping. 2018

[2]Molecular mapping of a pollen killer gene S29(t) in Oryza Glaberrima and co-linear analysis with S22 in O-Glumaepatula. Hu, Fengyi,Xu, Peng,Deng, Xianneng,Zhou, Jiawu,Li, Jing,Tao, Dayun. 2006

[3]The role of S1-g allele from Oryza glaberrima in improving interspecific hybrid sterility between O. sativa and O. glaberrima. Deng, Xianneng,Zhou, Jiawu,Xu, Peng,Li, Jing,Hu, Fengyi,Tao, Dayun,Deng, Xianneng. 2010

[4]Developing rice lines possessing neutral alleles at sterility loci to improve the width of compatibility. Lu, CG,Zou, JS,Ikehashi, H. 2004

[5]Hybrid Sterility in Rice (Oryza sativa L.) Involves the Tetratricopeptide Repeat Domain Containing Protein. Yu, Yang,Zhao, Zhigang,Shi, Yanrong,Tian, Hua,Liu, Linglong,Bian, Xiaofeng,Xu, Yang,Shen, Yumin,Wang, Chaolong,Yu, Xiaowen,Wang, Chunming,Jiang, Ling,Wan, Jianmin,Zheng, Xiaoming,Gan, Lu,Zhang, Xin,Guo, Xiuping,Wang, Jiulin,Wan, Jianmin,Ikehashi, Hiroshi.

[6]Fine mapping of pss1, a pollen semi-sterile gene in rice (Oryza sativa L.). Li, Wanchang,Jiang, Ling,Zhou, Shirong,Wang, Chunming,Liu, Linglong,Chen, Liangming,Ikehashi, Hiroshi,Wan, Jianmin.

[7]Fine mapping of S32(t), a new gene causing hybrid embryo sac sterility in a Chinese landrace rice (Oryza sativa L.). Chen, Liangming,Jiang, Ling,Zhu, Susong,Zhao, Zhigang,Liu, Shijia,Su, Ning,Zhai, Huqu,Ikehashi, Hiroshi,Wan, Jianmin.

[8]Fine mapping of a gene causing hybrid pollen sterility between Yunnan weedy rice and cultivated rice (Oryza sativa L.) and phylogenetic analysis of Yunnan weedy rice. Wang, Yong,Zhong, Zheng Zheng,Zhao, Zhi Gang,Jiang, Ling,Bian, Xiao Feng,Zhang, Wen Wei,Liu, Ling Long,Wan, Jian Min,Wan, Jian Min,Ikehashi, H..

[9]Molecular analysis of an additional case of hybrid sterility in rice (Oryza sativa L.). Zhao, Z. G.,Zhang, Y. H.,Bian, X. F.,Wang, Y.,Jiang, L.,Liu, X.,Chen, L. M.,Liu, S. J.,Zhang, W. W.,Wan, J. M.,Zhu, S. S.,Wan, J. M.,Ikehashi, H..

[10]Fine mapping of S37, a locus responsible for pollen and embryo sac sterility in hybrids between Oryza sativa L. and O-glaberrima Steud. Shen, Yumin,Zhao, Zhigang,Ma, Hongyang,Bian, Xiaofeng,Yu, Yang,Yu, Xiaowen,Chen, Haiyuan,Liu, Linglong,Zhang, Wenwei,Jiang, Ling,Wan, Jianmin,Wan, Jianmin,Zhou, Jiawu,Tao, Dayun.

[11]The origin of weedy rice Ludao in China deduced by genome wide analysis of its hybrid sterility genes. Zhu, SS,Jiang, L,Wang, CM,Zhai, HQ,Li, DT,Wan, JM. 2005

[12]A genome-wide analysis of wide compatibility in rice and the precise location of the S-5 locus in the molecular map. Liu, KD,Wang, J,Li, HB,Xu, CG,Liu, AM,Li, XH,Zhang, QF. 1997

[13]Identification of a new hybrid sterility gene in rice (Oryza sativa L.). Zhao, Zhigang,Wang, Chunming,Jiang, Ling,Zhu, Susong,Ikehashi, Hiroshi,Wan, Jianmin. 2006

[14]Fine mapping of a gene responsible for pollen semi-sterility in hybrids between Oryza sativa L. and O. glaberrima Steud. Wang, Jiankang,Wan, Jianmin,Zhang, Yunhui,Zhao, Zhigang,Zhou, Jiawu,Jiang, Ling,Bian, Xiaofeng,Wang, Yong,Wang, Chaolong,Zhong, Zhengzheng,Wan, Jianmin,Zhou, Jiawu,Tao, Dayun.

[15]A new gene controlling hybrid sterility between Oryza sativa and Oryza longistaminata. Li, Jing,Xu, Peng,Zhou, Jiawu,Hu, Fengyi,Deng, Xianneng,Deng, Wei,Tao, Dayun,Zhao, Jiying.

[16]Genome-Wide Discovery of Microsatellite Markers from Diploid Progenitor Species, Arachis duranensis and A. ipaensis, and Their Application in Cultivated Peanut (A. hypogaea). Zhao, Chuanzhi,Qiu, Jingjing,Wang, Jiangshan,Ren, Xuezhen,Xia, Han,Wan, Shubo,Wang, Xingjun,Zhao, Chuanzhi,Qiu, Jingjing,Wang, Jiangshan,Ren, Xuezhen,Xia, Han,Wan, Shubo,Wang, Xingjun,Qiu, Jingjing,Ma, Changle,Wang, Xingjun,Agarwal, Gaurav,Guo, Baozhu,Agarwal, Gaurav,Varshney, Rajeev K.,Pandey, Manish K.,Bertioli, David J.. 2017

[17]Genetic Dissection of Novel QTLs for Resistance to Leaf Spots and Tomato Spotted Wilt Virus in Peanut (Arachis hypogaea L.). Pandey, Manish K.,Wang, Hui,Khera, Pawan,Guo, Baozhu,Pandey, Manish K.,Khera, Pawan,Vishwakarma, Manish K.,Kale, Sandip M.,Varshney, Rajeev K.,Pandey, Manish K.,Wang, Hui,Khera, Pawan,Culbreath, Albert K.,Guo, Baozhu,Holbrook, C. Corley,Wang, Xingjun. 2017

[18]Novel pleiotropic loci controlling panicle architecture across environments in japonica rice (Oryza sativa L.). Guo, Yuan,Hong, Delin,Guo, Yuan. 2010

[19]QTL mapping for the paste viscosity characteristics in rice (Oryza sativa L.). Bao, JS,Zheng, XW,Xia, YW,He, P,Shu, QY,Lu, X,Chen, Y,Zhu, LH. 2000

[20]Haplotype, molecular marker and phenotype effects associated with mineral nutrient and grain size traits of TaGS1 a in wheat. Guo, Ying,Sun, Jinjie,Zhang, Guizhi,Wang, Yingying,Kong, Fanmei,Zhao, Yan,Li, Sishen,Guo, Ying,Wang, Yingying. 2013

作者其他论文 更多>>