Quantitative trait loci analysis for rice seed vigor during the germination stage

文献类型: 外文期刊

第一作者: Wang, Zhou-fei

作者: Wang, Zhou-fei;Wang, Jian-fei;Bao, Yong-mei;Wang, Fu-hua;Zhang, Hong-sheng;Wang, Fu-hua

作者机构:

关键词: Rice;Recombinant inbred line (RIL) population;Seed vigor;Quantitative trait locus (QTL);Germination

期刊名称:JOURNAL OF ZHEJIANG UNIVERSITY-SCIENCE B ( 影响因子:3.066; 五年影响因子:3.057 )

ISSN: 1673-1581

年卷期: 2010 年 11 卷 12 期

页码:

收录情况: SCI

摘要: Seed vigor is an important characteristic of seed quality, and rice cultivars with strong seed vigor are desirable in direct-sowing rice production for optimum stand establishment. In the present study, the quantitative trait loci (QTLs) of three traits for rice seed vigor during the germination stage, including germination rate, final germination percentage, and germination index, were investigated using one recombinant inbred line (RIL) population derived from a cross between japonica Daguandao and indica IR28, and using the multiple interval mapping (MIM) approach. The results show that indica rice presented stronger seed vigor during the germination stage than japonica rice. A total of ten QTLs, and at least five novel alleles, were detected to control rice seed vigor, and the amount of variation (R (2)) explained by an individual QTL ranged from 7.5% to 68.5%, with three major QTLs with R (2)> 20%. Most of the QTLs detected here are likely to coincide with QTLs for seed weight, seed size, or seed dormancy, suggesting that the rice seed vigor might be correlated with seed weight, seed size, and seed dormancy. At least five QTLs are novel alleles with no previous reports of seed vigor genes in rice, and those major or minor QTLs could be used to significantly improve the seed vigor by marker-assisted selection (MAS) in rice.

分类号:

  • 相关文献

[1]QTL Mapping in Three Connected Populations Reveals a Set of Consensus Genomic Regions for Low Temperature Germination Ability in Zea mays L.. Li, Xuhui,Wang, Guihua,Li, Li,Jia, Guangyao,Ren, Lisha,Wang, Jianhua,Gu, Riliang,Fu, Junjie,Wang, Guoying,Lubberstedt, Thomas. 2018

[2]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

[3]A novel functional gene associated with cold tolerance at the seedling stage in rice. Zhao, Junliang,Zhang, Shaohong,Dong, Jingfang,Yang, Tifeng,Mao, Xingxue,Liu, Qing,Wang, Xiaofei,Liu, Bin,Zhao, Junliang,Zhang, Shaohong,Dong, Jingfang,Yang, Tifeng,Mao, Xingxue,Liu, Qing,Wang, Xiaofei,Liu, Bin. 2017

[4]Identification of salt-tolerant QTLs with strong genetic background effect using two sets of reciprocal introgression lines in rice. Cheng, Lirui,Wang, Yun,Meng, Lijun,Hu, Xia,Cui, Yanru,Sun, Yong,Zhu, Linghua,Xu, Jianlong,Li, Zhikang,Wang, Yun,Ali, Jauhar,Li, Zhikang.

[5]Identification of QTLs associated with salt or alkaline tolerance at the seedling stage in rice under salt or alkaline stress. Liang, Jing-long,Zhao, Zheng-wu,Zhang, Tao,Liang, Jing-long,Qu, Ying-ping,Ma, Xiao-ding,Cao, Gui-lan,Han, Long-zhi,Yang, Chun-gang,Zhang, San-yuan.

[6]Identification of quantitative trait loci for the dead leaf rate and the seedling dead rate under alkaline stress in rice. Qi, Dongling,Cao, Guilan,Han, Longzhi,Qi, Dongling,Guo, Guizhen,Zhang, Junguo,Zhang, Sanyuan,Han, Longzhi,Lee, Myung-Chul,Suh, Seok-Cheol,Zhou, Qingyang. 2008

[7]Natural variation reveals that OsSAP16 controls low-temperature germination in rice. Wang, Xiang,Zou, Baohong,Shao, Qiaolin,Cui, Yongmei,Lu, Shan,Zhang, Yan,Huang, Ji,Hua, Jian,Huang, Quansheng,Hua, Jian. 2018

[8]Genome-wide association study of salt tolerance at the seed germination stage in rice. Wu, Zhichao,Zhang, Xiaojing,Wang, Mingming,Zhang, Congshun,Zhang, Fan,Zhou, Yongli,Li, Zhikang,Shi, Yingyao,Gao, Lingling,Zhou, Yongli,Li, Zhikang. 2017

[9]Allelopathic effects of Hemistepta lyrata on the germination and growth of wheat, sorghum, cucumber, rape, and radish seeds. Gao, Xingxiang,Li, Mei,Gao, Zongjun,Li, Changsong,Sun, Zuowen.

[10]Research on tomato seed vigor based on X-ray digital image. Zhao Xueguan,Gao Yuanyuan,Wang Xiu,Li Cuiling,Wang, Songlin,Feng Qingcun,Zhao Xueguan,Gao Yuanyuan,Wang Xiu,Li Cuiling,Wang, Songlin,Feng Qingcun,Zhao Xueguan,Gao Yuanyuan,Wang Xiu,Li Cuiling,Wang, Songlin,Feng Qingcun. 2016

[11]Regulation of Seed Vigor by Manipulation of Raffinose Family Oligosaccharides in Maize and Arabidopsis thaliana. Li, Tao,Zhang, Yumin,Wang, Dong,Liu, Ying,Zhao, Tianyong,Li, Tao,Zhang, Yumin,Wang, Dong,Liu, Ying,Zhao, Tianyong,Dirk, Lynnette M. A.,Downie, A. Bruce,Goodman, Jack,Wang, Jianmin,Wang, Guoying. 2017

[12]PLANT GROWTH REGULATORS IN SEED COATING AGENT AFFECT SEED GERMINATION AND SEEDLING GROWTH OF SWEET CORN. Suo, H. C.,Li, W.,Liu, J. H.,Hu, J. G.,Li, Z. J.,Zhang, X. L.,Xie, J.,Zheng, J. R.,Wang, K. H.,Li, Z. J.,Ashraf, U.. 2017

[13]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

[14]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

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

[16]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

[17]Three QTLs from Lycopersicon peruvianum confer a high level of resistance to Clavibacter michiganensis ssp michiganensis. van Heusden, AW,Koornneef, M,Voorrips, RE,Bruggemann, W,Pet, G,Vrielink van Ginkel, R,Chen, X,Lindhout, P. 1999

[18]Identification of QTLs for cold tolerance at seedling stage in rice (Oryza sativa L.) using two distinct methods of cold treatment. Zhang, Shaohong,Liu, Bin,Zhao, Junliang,Wang, Xiaofei,Yang, Tifeng,Huang, Zhanghui,Zheng, Jingsheng,Peng, Shaobing,Leung, Hei. 2014

[19]Identification and validation of a novel major QTL for harvest index in rice (Oryza sativa L.). Zhang, Shaohong,He, Xiuying,Zhao, Junliang,Cheng, Yongsheng,Chen, Yuehan,Yang, Tifeng,Dong, Jingfang,Wang, Xiaofei,Liu, Qing,Liu, Wei,Mao, Xingxue,Fu, Hua,Chen, Zhaoming,Liao, Yaoping,Liu, Bin,Zhang, Shaohong,He, Xiuying,Zhao, Junliang,Cheng, Yongsheng,Chen, Yuehan,Yang, Tifeng,Dong, Jingfang,Wang, Xiaofei,Liu, Qing,Liu, Wei,Mao, Xingxue,Fu, Hua,Chen, Zhaoming,Liao, Yaoping,Liu, Bin,Xie, Zhimei,Xie, Zhimei. 2017

[20]Identification of QTLs for seedling vigor in winter wheat. Li, Xing-Mao,Wang, Hua-Jun,Li, Xing-Mao,Chen, Xin-Min,Xiao, Yong-Gui,Xia, Xian-Chun,Wang, De-Sen,He, Zhong-Hu,Li, Xing-Mao,He, Zhong-Hu.

作者其他论文 更多>>