Genetic Dissection of Rice Ratooning Ability Using an Introgression Line Population and Substitution Mapping of a Pleiotropic Quantitative Trait Locus qRA5
文献类型: 外文期刊
作者: Hu, Hui 1 ; Gao, Ruoyu 1 ; He, Liping 1 ; Liang, Famao 2 ; Li, Zhixin 1 ; Xu, Junying 1 ; Yang, Longwei 1 ; Wang, Chongrong 3 ; Liu, Zhangyong 1 ; Xu, Jianlong 4 ; Qiu, Xianjin 1 ;
作者机构: 1.Yangtze Univ, Coll Agr, Hubei Collaborat Innovat Ctr Grain Ind, Jingzhou 434025, Peoples R China
2.Yichang Acad Agr Sci, Yichang 443004, Peoples R China
3.Guangdong Acad Agr Sci, Rice Res Inst, Guangdong Prov Key Lab New Technol Rice Breeding, Guangzhou 510640, Peoples R China
4.Chinese Acad Agr Sci, Inst Crop Sci, Beijing 100081, Peoples R China
5.Chinese Acad Agr Sci, Agr Genom Inst Shenzhen, Guangdong Lab Lingnan Modern Agr, Shenzhen Branch, Shenzhen 518120, Peoples R China
关键词: rice ratooning ability; introgression line; quantitative trait locus; pleiotropic effect; substitution mapping
期刊名称:PLANTS-BASEL ( 影响因子:4.658; 五年影响因子:4.827 )
ISSN:
年卷期: 2022 年 11 卷 9 期
页码:
收录情况: SCI
摘要: Ratooning ability is a key factor that influences ratoon rice yield, in the area where light and temperature are not enough for second season rice. In the present study, an introgression line population derived from Minghui 63 as the recipient parent and 02428 as the donor parent was developed, and a high-density bin map containing 4568 bins was constructed. Nine ratooning-ability-related traits were measured, including maximum tiller number, panicle number, and grain yield per plant in the first season and ratoon season, as well as three secondary traits, maximum tiller number ratio, panicle number ratio, and grain yield ratio. A total of 22 main-effect QTLs were identified and explained for 3.26-18.63% of the phenotypic variations in the introgression line population. Three genomic regions, including 14.12-14.65 Mb on chromosome 5, 4.64-5.76 Mb on chromosome 8, and 10.64-15.52 Mb on chromosome 11, were identified to simultaneously control different ratooning-ability-related traits. Among them, qRA5 in the region of 14.12-14.65 Mb on chromosome 5 was validated for its pleiotropic effects on maximum tiller number and panicle number in the first season, as well as its maximum tiller number ratio, panicle number ratio, and grain yield ratio. Moreover, qRA5 was independent of genetic background and delimited into a 311.16 kb region by a substitution mapping approach. These results will help us better understand the genetic basis of rice ratooning ability and provide a valuable gene resource for breeding high-yield ratoon rice varieties.
- 相关文献
作者其他论文 更多>>
-
Comparative study of volatile organic compound profiles in aromatic and non-aromatic rice cultivars using HS-GC-IMS and their correlation with sensory evaluation
作者:Xiong, Yin;Tian, Xuhong;Wu, Muci;Zheng, Xingfei;Chen, Junxiao;Zhou, Lei;Xu, Deze;You, Aiqing;Wang, Chongrong;Wang, Jingyi;Gilard, Veronique
关键词:Aromatic rice; Non -aromatic rice; HS-GC -IMS; Sensory evaluation; Correlation analysis
-
Historical Trends Analysis of Main Agronomic Traits in South China Inbred Indica Rice Varieties since Dwarf Breeding
作者:Feng, Xiaomin;Zhang, Qiang;Liu, Zhixia;Jiang, Yijun;Yu, Ning;Luan, Xin;Li, Wenlong;Shan, Miaomiao;Zhao, Ying;Nie, Wenlong;Chen, Kai;Xu, Jianlong;Li, Wenlong;Shan, Miaomiao;Lin, Qingshan
关键词:South China; inbred indica rice; heading date; yield; plant type; trait evolution
-
A prolific and robust whole-genome genotyping method using PCR amplification via primer-template mismatched annealing
作者:Zhao, Sheng;Wang, Liqun;Luo, Minxuan;Zhi, Haijian;Zhao, Sheng;Zhang, Cuicui;Luo, Minxuan;Zhang, Peng;Wang, Yue;Malik, Waqar Afzal;Chen, Peng;Lu, Hong;Xiang, Yong;Liu, Yuwen;Ruan, Jue;Qian, Qian;Chang, Yuxiao;Qiu, Xianjin;Wang, Chongrong
关键词:background selection; foreground genotyping; primer-template mismatched annealing; marker-assisted breeding; whole-genome genotyping
-
From Green Super Rice to green agriculture: Reaping the promise of functional genomics research
作者:Yu, Sibin;Peng, Shaobing;Zhang, Chaopu;Xiao, Jinghua;Zhang, Qifa;Ali, Jauhar;Zhou, Shaochuan;Ren, Guangjun;Xie, Huaan;Xu, Jianlong;Li, Zhikang;Yu, Xinqiao;Luo, Lijun;Zhou, Fasong;Zheng, Ruifeng;Ma, Liangyong;Yuan, Dingyang;Li, Zefu;Chen, Dazhou;Zhao, Zhigang;Chu, Chengcai;Liu, Guifu;You, Aiqing;Wei, Yu;Zhu, Susong;Gu, Qiongyao;He, Guangcun;Li, Shigui;Liu, Changhua;Li, Zhikang;Zhou, Fasong
关键词:rice; functional genomics; Green Super Rice; genomic breeding; nutritious crops; sustainable agriculture
-
Dominant early heading without yield drag in a sister-line BC breeding progeny DEH_229 is controlled by multiple genetic factors with main-effect loci
作者:Faruquee, Muhiuddin;Zhang, Qiang;Zhang, Lubiao;Xu, Linyun;Wang, Wensheng;Chen, Jiansan;Xu, Jianlong;Li, Zhikang;Fu, Binying;Zheng, Tianqing;Xu, Jianlong;Li, Zhikang;Fu, Binying;Zhang, Qiang
关键词:Dominant early heading; Yield drag; Sister-line BC breeding; Multiple genetic factors; Cryptic genetic variation (CGV); Rice (Oryza sativa L.)
-
IDENTIFICATION OF QTL UNDERLYING CADMIUM TOLERANCE AT SEEDLING STAGE USING TWO SETS OF RECIPROCAL INTROGRESSION LINES IN RICE
作者:He, Liping;Jiang, Shuochen;Deng, Can;Hu, Hui;Li, Pingping;Wu, Yu;Cao, Huimin;Zhou, Hao;Li, Zhixin;Xu, Junying;Yang, Longwei;Qiu, Xianjin;Xing, Danying;Li, Zhixin;Xu, Junying;Yang, Longwei;Qiu, Xianjin;Xing, Danying;Li, Zhixin;Xu, Junying;Yang, Longwei;Qiu, Xianjin;Xu, Jianlong;Liang, Famao;Wang, Chongrong
关键词:Cd tolerance; introgression line; main-effect QTL; digenic epistatic QTL pair; genetic background; pleiotropic QTL
-
Database Resources of the National Genomics Data Center in 2020
作者:Zhang, Zhang;Zhao, Wenming;Xiao, Jingfa;Bao, Yiming;He, Shunmin;Zhang, Guoqing;Li, Yixue;Zhao, Guoping;Chen, Runsheng;Zeng, Jingyao;Yuan, Na;Zhu, Junwei;Pan, Mengyu;Zhang, Hao;Wang, Qi;Shi, Shuo;Jiang, Meiye;Lu, Mingming;Qian, Qiheng;Gao, Qianwen;Shang, Yunfei;Wang, Jinyue;Du, Zhenglin;Tian, Dongmei;Wang, Pei;Tang, Bixia;Li, Cuiping;Teng, Xufei;Liu, Xiaonan;Zou, Dong;Song, Shuhui;Xiong, Zhuang;Li, Mengwei;Yang, Fei;Ma, Yingke;Sang, Jian;Li, Zhaohua;Li, Rujiao;Wang, Zhonghuang;Zhang, Sisi;Kang, Hailong;Dong, Lili;Ying, Cui;Duan, Guangya;Zhang, Yadong;Zhang, Zhewen;Chen, Tingting;Chen, Xu;Wang, Yanqing;Wu, Song;Gong, Zheng;Chen, Meili;Cao, Jiabao;Liu, Lin;Li, Zhao;Li, Qianpeng;Du, Qiang;Ma, Lina;Niu, Guangyi;Zhang, Yuansheng;Zhu, Tongtong;Hao, Lili;Zhang, Yang;Zhu, Junwen;Zhou, Qing;Kang, Hongen;Lan, Li;Zhang, Xin;Sun, Yubin;Zhai, Shuang;Yu, Lei;Sun, Mingyuan;Chen, Huanxin;Zhang, Zhang;Zhao, Wenming;Xiao, Jingfa;Bao, Yiming;Zeng, Jingyao;Yuan, Na;Zhu, Junwei;Pan, Mengyu;Zhang, Hao;Wang, Qi;Shi, Shuo;Jiang, Meiye;Lu, Mingming;Qian, Qiheng;Gao, Qianwen;Shang, Yunfei;Wang, Jinyue;Du, Zhenglin;Tian, Dongmei;Wang, Pei;Tang, Bixia;Li, Cuiping;Teng, Xufei;Liu, Xiaonan;Zou, Dong;Song, Shuhui;Xiong, Zhuang;Li, Mengwei;Yang, Fei;Ma, Yingke;Sang, Jian;Li, Zhaohua;Li, Rujiao;Wang, Zhonghuang;Zhang, Sisi;Kang, Hailong;Dong, Lili;Ying, Cui;Duan, Guangya;Zhang, Yadong;Zhang, Zhewen;Chen, Tingting;Chen, Xu;Wang, Yanqing;Wu, Song;Gong, Zheng;Chen, Meili;Cao, Jiabao;Liu, Lin;Li, Zhao;Li, Qianpeng;Du, Qiang;Ma, Lina;Niu, Guangyi;Zhang, Yuansheng;Zhu, Tongtong;Hao, Lili;Zhang, Yang;Zhu, Junwen;Zhou, Qing;Kang, Hongen;Lan, Li;Zhang, Xin;Sun, Yubin;Zhai, Shuang;Yu, Lei;Sun, Mingyuan;Chen, Huanxin;Zhang, Zhang;Zhao, Wenming;Xiao, Jingfa;Bao, Yiming;Zeng, Jingyao;Zhang, Hao;Wang, Qi;Shi, Shuo;Jiang, Meiye;Lu, Mingming;Qian, Qiheng;Gao, Qianwen;Shang, Yunfei;Wang, Jinyue;Wang, Pei;Teng, Xufei;Liu, Xiaonan;Zou, Dong;Song, Shuhui;Xiong, Zhuang;Li, Mengwei;Yang, Fei;Ma, Yingke;Sang, Jian;Li, Zhaohua;Li, Rujiao;Zhang, Yadong;Zhang, Zhewen;Wu, Song;Gong, Zheng;Chen, Meili;Cao, Jiabao;Liu, Lin;Li, Zhao;Li, Qianpeng;Du, Qiang;Ma, Lina;Niu, Guangyi;Zhang, Yuansheng;Zhu, Tongtong;Hao, Lili;Zhang, Yang;He, Shunmin;Chen, Runsheng;Zhang, Lili;Niu, Yiwei;Teng, Xueyi;Sun, Xianhui;Wang, Jiajia;Zhang, Peng;Li, Yanyan;Zheng, Yu;Chen, Xiaomin;Xue, Hua;Teng, Yiheng;Kang, Quan;Hao, Yajing;Zhang, Guoqing;Li, Yixue;Zhao, Guoping;Gao, Yang;Zhang, Chao;Yuan, Liyun;Xu, Shuhua;Ning, Zhilin;Lu, Yan;Ling, Yunchao;Cao, Ruifang;Lv, Daqing;Liu, Wan;Zhao, Guoping;Zhao, Guoping;Zhou, Haokui;Fang, Shuangsang;Guo, Jincheng;Wu, Yang;Li, Hui;Zhao, Lianhe;Li, Xiyuan;Sun, Liang;Zhao, Yi;Zhu, Qianghui;Li, Xin;Li, Menghua;Zhang, Zhang;Zhao, Wenming;Xiao, Jingfa;Bao, Yiming;He, Shunmin;Chen, Runsheng;Zhang, Hao;Wang, Qi;Shi, Shuo;Jiang, Meiye;Lu, Mingming;Qian, Qiheng;Gao, Qianwen;Shang, Yunfei;Wang, Jinyue;Wang, Pei;Teng, Xufei;Liu, Xiaonan;Xiong, Zhuang;Li, Mengwei;Yang, Fei;Sang, Jian;Li, Zhaohua;Wang, Zhonghuang;Zhu, Qianghui;Kang, Hailong;Ying, Cui;Duan, Guangya;Li, Menghua;Zhang, Yadong;Wu, Song;Gong, Zheng;Zhang, Lili;Niu, Yiwei;Teng, Xueyi;Sun, Xianhui;Wang, Jiajia;Li, Yanyan;Zheng, Yu;Chen, Xiaomin;Xue, Hua;Teng, Yiheng;Cao, Jiabao;Liu, Lin;Li, Zhao;Li, Qianpeng;Du, Qiang;Niu, Guangyi;Zhang, Yuansheng;Zhu, Tongtong;Wang, Zhennan;Zhang, Yang;Zhou, Qing;Kang, Hongen;Zhang, Yong E.;Zhang, Zhang;Bao, Yiming;Li, Zhaohua;Zhu, Tongtong;Zhi, Xiaoyang;Jiang, Zhao;Klenk, Hans-Peter;Xu, Shuhua;Xu, Shuhua;Xu, Shuhua;Yan, Jun;Wang, Xiangfeng;Li, Zhonghai;Wang, Houling;Zhang, Yi;Xia, Xinli;Guo, Hongwei;Zhao, Yi;Xia, Xinli;Guo, Hongwei;Li, Chen;Wang, Zhennan;Wang, Guoliang;Abbasi, Amir A.;Shireen, Huma;Pervaiz, Nashaiman;Batool, Fatima;Raza, Rabail Z.;Xue, Yongbiao;Hu, Hui;Guo, An-Yuan;Lin, Shaofeng;Xue, Yu;Wang, Chenwei;Ning, Wanshan;Tu, Yiran;Guo, Yaping;Zhang, Qiong;Zhou, Jiaqi;Miao, Ya-Ru;Ruan, Chen;Shi, Ying;Yao, Lan;Tang, Qing;Peng, Di;Zhang, Xinxin;Xiao, Yun;Li, Xia;Wu, Wanying;Ji, Peifeng;Zhao, Fangqing;Luo, Hao;Gao, Feng;Luo, Hao;Gao, Feng;Luo, Hao;Gao, Feng;Yuan, Hao;Zhang, Yong E.;Yuan, Hao;Zhang, Yong E.;Yuan, Hao;Zhang, Yong E.;Huang, Zhou;Cui, Qinghua;Cui, Qinghua;Yuan, Chunhui;Chen, Ming;Jin, Jin-Pu;Tian, Feng;Gao, Ge;Jin, Jin-Pu;Tian, Feng;Gao, Ge;Li, Xiangshang;Li, Chuan-Yun
关键词: