Detection of Drought-Related Loci in Rice at Reproductive Stage Using Selected Introgressed Lines

文献类型: 外文期刊

第一作者: Chen Man-yuan

作者: Chen Man-yuan;Shi Ying-yao;Yao Da-nian;Chen Man-yuan;Fu Bin-ying;Xu Jian-long;Zhu Ling-hua;Gao Yong-ming;Li Zhi-kang;Ali, J.;Zhao Ming-fu;Jiang Yun-zhu;Li Zhi-kang

作者机构:

关键词: rice;drought tolerance;introgression lines (ILs);quantitative trait loci (QTL);hidden diversity

期刊名称:AGRICULTURAL SCIENCES IN CHINA ( 影响因子:0.82; 五年影响因子:0.997 )

ISSN: 1671-2927

年卷期: 2011 年 10 卷 1 期

页码:

收录情况: SCI

摘要: The present study was carried out to illustrate high-efficient detection of quantitative trait loci (QTLs) with selected introgression lines (ILs) and the existence of 'hidden genes' conferring drought tolerance (DT). 52 selected DT ILs, derived from BC(2)F(2) population developed by crossing and backcrossing the susceptible recurrent parent (RP) IR64 with the susceptible donor Khazar were planted under irrigation and drought condition. Four important agronomic traits, e.g., grain yield (GY), heading date (HD), panicle numbers per plant (PN), and plant height (PH) were evaluated and 83 SSR polymorphic molecular markers were used for genotypic analysis. Chi-square test based on genetic hitch-hiking and one-way analysis of variances (ANOVA) were used to detect drought-related loci. Nine and 36 loci were detected by chi-square test and one-way ANOVA, respectively. Five common loci were observed by comparing the results of the two methods, among which two QTLs linked with RM7, and RM241 were detected under irrigation condition, both of the favorable alleles were from RP and explained 13% phenotypic variation (PV) for GY and 28% PV for PH, respectively. The other three QTLs linked with RM163, RM18, and RM270 were detected under drought condition, the favorable alleles were all from the donor and explained 10, 24, and 19% PV for HD, PH, and PH, respectively. Five common loci were observed by comparing the results of chi-square test and one-way ANOVA including two QTLs (one for GY and one for PH) under irrigation condition and three QTLs (one for HD and two for PH) under drought condition. By combining phenotypic and genotypic analysis, drought escape could be inferred as the main mechanism for drought tolerance in the present study. The results in present study suggested that the selected ILs population analyzed by chi-square test and one-way ANOVA was quite effective for DT QTL detection with low inputs and could also produce useful materials for breeding with wide genetic diversity for drought tolerance.

分类号:

  • 相关文献

[1]Yield performances of japonica introgression lines selected for drought tolerance in a BC breeding programme. He, Y. X.,Zheng, T. Q.,Wang, L. F.,Gao, Y. M.,Zhai, H. Q.,Xu, J. L.,Zhu, L. H.,Li, Z. K.,He, Y. X.,Xu, Z. J.,He, Y. X.,Hao, X. B.,Hua, Z. T.,Li, Z. K.. 2010

[2]Dissection of genetic overlap of salt tolerance QTLs at the seedling and tillering stages using backcross introgression lines in rice. Zang JinPing,Sun Yong,Wang Yun,Yang Jing,Li Fang,Zhou YongLi,Zhu LingHua,Xu JianLong,Jessica, Reys,Mohammadhosein, Fotokian,Li ZhiKang.

[3]Construction of a new set of rice chromosome segment substitution lines and identification of grain weight and related traits QTLs. Bian, Jian Min,Jiang, Ling,Liu, Ling Long,Wei, Xiang Jin,Xiao, Yue Hua,Zhang, Lu Jun,Zhao, Zhi Gang,Wan, Jian Min,Zhai, Hu Qu,Wan, Jian Min. 2010

[4]Mapping QTLs for heading synchrony in a doubled haploid population of rice in two environments. Ma, Liangyong,Yang, Changdeng,Zeng, Dali,Cai, Jing,Li, Ximing,Ji, Zhijuan,Qian, Qian,Ma, Liangyong,Xia, Yingwu,Bao, Jinsong,Ma, Liangyong,Xia, Yingwu,Bao, Jinsong. 2009

[5]Overexpression of an ERF transcription factor TSRF1 improves rice drought tolerance. Quan, Ruidang,Hu, Shoujing,Zhang, Haiwen,Zhang, Zhijin,Huang, Rongfeng,Quan, Ruidang,Zhang, Haiwen,Zhang, Zhijin,Huang, Rongfeng,Quan, Ruidang,Zhang, Haiwen,Zhang, Zhijin,Huang, Rongfeng,Hu, Shoujing,Zhang, Zhili.

[6]An ethylene response factor OsWR1 responsive to drought stress transcriptionally activates wax synthesis related genes and increases wax production in rice. Wang, Youhua,Wan, Liyun,Zhang, Lixia,Zhang, Zhijin,Zhang, Haiwen,Quan, Ruidang,Zhou, Shirong,Huang, Rongfeng,Wang, Youhua,Zhang, Zhijin,Zhang, Haiwen,Quan, Ruidang,Zhou, Shirong,Huang, Rongfeng,Wang, Youhua,Zhang, Zhijin,Zhang, Haiwen,Quan, Ruidang,Zhou, Shirong,Huang, Rongfeng.

[7]Phytochrome B control of total leaf area and stomatal density affects drought tolerance in rice. Liu, Jing,Wang, Baoshan,Liu, Jing,Zhou, Jinjun,Xie, Xianzhi,Zhang, Fang,Chen, Fan,Zhou, Jinjun,Xie, Xianzhi.

[8]Comparative transcriptome sequencing of tolerant rice introgression line and its parents in response to drought stress. Huang, Liyu,Zhang, Fan,Zhang, Fan,Wang, Wensheng,Zhou, Yongli,Fu, Binying,Li, Zhikang,Zhang, Fan. 2014

[9]Characterization of Transcription Factor Gene &ITOsDRAP1&IT Conferring Drought Tolerance in Rice. Huang, Liyu,Wang, Yinxiao,Wang, Wensheng,Zhao, Xiuqin,Qin, Qiao,Sun, Fan,Hu, Fengyi,Fu, Binying,Li, Zhikang,Huang, Liyu,Zhao, Yan,Li, Zichao,Fu, Binying,Li, Zhikang. 2018

[10]QTLs affecting morph-physiological traits related to drought tolerance detected in overlapping introgression lines of rice (Oryza sativa L.). Zhao, Xiu-Qin,Xu, Jian-Long,Zhao, Ming,Zhu, Ling-Hua,Fu, Bin-Ying,Gao, Yong-Ming,Li, Zhi-Kang,Zhao, Xiu-Qin,Xu, Jian-Long,Lafitte, Renee,Fu, Bin-Ying,Gao, Yong-Ming,Li, Zhi-Kang. 2008

[11]The OsABF1 transcription factor improves drought tolerance by activating the transcription of COR413-TM1 in rice. Zhang, Chunyu,Li, Cong,Liu, Jun,Yu, Chunsheng,Li, Hongyu,Zhao, Tao,Liu, Bin,Lv, Yandong.

[12]Dissection of genetic effects of quantitative trait loci (QTL) in transgenic cotton. Yongshan Zhang,Shuxun Yu,Xiangmo Guo,Zhiwei Wang,Qinglian Wang,Li Chu. 2008

[13]Quantitative trait loci analysis of Verticillium wilt resistance in interspecific backcross populations of Gossypium hirsutum x Gossypium barbadense. Yuzhen Shi,Baocai Zhang,Aiying Liu,Wentan Li,Junwen Li,Quanwei Lu,Zhen Zhang,Shaoqi Li,Wankui Gong,Haihong Shang,Juwu Gong,Tingting Chen,Qun Ge,Tao Wang,Heqin Zhu,Zhi Liu,Youlu Yuan. 2016

[14]Progress of genome wide association study in domestic animals. Zhang, Hui,Wang, Zhipeng,Wang, Shouzhi,Li, Hui,Zhang, Hui,Wang, Zhipeng,Wang, Shouzhi,Li, Hui. 2012

[15]Detection of Fusarium head blight resistance QTL in a wheat population using bulked segregant analysis. Shen, X,Zhou, M,Lu, W,Ohm, H. 2003

[16]Mapping of QTLs associated with important agronomic traits using three populations derived from a super hybrid rice Xieyou9308. Liang, Yongshu,Zhan, Xiaodeng,Gao, Zhiqiang,Lin, Zechuan,Yang, Zhanlie,Zhang, Yinxin,Shen, Xihong,Cao, Liyong,Cheng, Shihua,Liang, Yongshu,Zhan, Xiaodeng,Gao, Zhiqiang,Lin, Zechuan,Yang, Zhanlie,Zhang, Yinxin,Shen, Xihong,Cao, Liyong,Cheng, Shihua. 2012

[17]Mining of Candidate Maize Genes for Nitrogen Use Efficiency by Integrating Gene Expression and QTL Data. Liu, Ruixiang,Zhang, Hao,Zhao, Pu,Zhang, Zuxin,Liu, Ruixiang,Zhang, Zuxin,Zheng, Yonglian,Liang, Wenke,Tian, Zhigang.

[18]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.

[19]Clustered QTL for source leaf size and yield traits in rice (Oryza sativa L.). Wang, Peng,Zhou, Guilin,Cui, Kehui,Yu, Sibin,Wang, Peng,Zhou, Guilin,Cui, Kehui,Li, Zhikang,Yu, Sibin,Li, Zhikang.

[20]Importance of over-dominance as the genetic basis of heterosis in rice. Zhuang, JY,Fan, YY,Wu, JL,Xia, YW,Zheng, KL.

作者其他论文 更多>>