数字农科院2.0

Mapping resistant QTLs for rice sheath blight disease with a doubled haploid population

文献类型: 外文期刊

作者: ZENG Yu-xiang ; XIA Ling-zhi +; WEN Zhi-hua +; JI Zhi-juan ; ZENG Da-li ; QIAN Qian *; YANG Chang-deng *

作者机构:

关键词: rice;sheath blight;quantitative trait locus;resistance

期刊名称: Journal of Integrative Agriculture

ISSN: 2095-3119

年卷期: 2015 年 14 卷 5 期

页码:

收录情况: JCR(2021版) ; CSCD(2020-2021年度) ; 农林核心(2020版) ; 科技核心(2020版)

摘要: Sheath blight (SB) disease, caused by Rhizoctonia solani Kuhn, is one of the most serious diseases causing rice (Oryza sativa L.) yield loss worldwide. A doubled haploid (DH) population was constructed from a cross between a japonica variety CJ06 and an indica variety TN1, and to analyze the quantitative trait loci (QTLs) for SB resistance under three different environments (environments 1-3). Two traits were recorded to evaluate the SB resistance, namely lesion height (LH) and disease rating (DR). Based on field evaluation of SB resistance and a genetic map constructed with 214 markers, a total of eight QTLs were identified for LH and eight QTLs for DR under three environments, respectively. The QTLs for LH were anchored on chromosomes 1, 3, 4, 5, 6, and 8, and explained 4.35-17.53% of the phenotypic variation. The SB resistance allele of qHNLH4 from TN1 decreased LH by 3.08 cm, and contributed to 17.53% of the variation at environment 1. The QTL for LH (qHZaLH8) detected on chromosome 8 in environment 2 explained 16.71% of the variation, and the resistance allele from CJ06 reduced LH by 4.4 cm. Eight QTLs for DR were identified on chromosomes 1, 5, 6, 8, 9, 11, and 12 under three conditions with the explained variation from 2.0 to 11.27%. The QTL for DR (qHZaDR8), which explained variation of 11.27%, was located in the same interval as that of qHZaLH8, both QTLs were detected in environment 2. A total of six pairs of digenic epistatic loci for DR were detected in three conditions, but no epistatic locus was observed for LH. In addition, we detected 12 QTLs for plant height (PH) in three environments. None of the PH-QTLs were co-located with the SB-QTLs. The results facilitate our understanding of the genetic basis for SB resistance in rice.

分类号:

  • 相关文献

[1]The way to a more precise sheath blight resistance QTL in rice. Zeng, Yuxiang,Ji, Zhijuan,Yang, Changdeng.

[2]Expression of signalling and defence-related genes mediated by over-expression of JERF1, and increased resistance to sheath blight in rice. Li, Y.,Liu, W.,Ming, J.,Liu, S.,Li, X.,Zhang, H.,Huang, R..

[3]Cytological observation and transcriptome analysis reveal dynamic changes of Rhizoctonia solani colonization on leaf sheath and different genes recruited between the resistant and susceptible genotypes in rice. Sanglin Liu,Tianya Wang,Guoxian Meng,Jiahao Liu,Dibai Lu,Xiangdong Liu,Yuxiang Zeng. 2022

[4]Cytological observation and transcriptome analysis reveal dynamic changes of Rhizoctonia solani colonization on leaf sheath and different genes recruited between the resistant and susceptible genotypes in rice. Sanglin Liu,Tianya Wang,Guoxian Meng,Jiahao Liu,Dibai Lu,Xiangdong Liu,Yuxiang Zeng. 2025

[5]QTL mapping and genomic selection for Fusarium ear rot resistance using two F-2:3 populations in maize. Guo, Zifeng,Wang, Shanhong,Li, Wen-Xue,Liu, Jiacheng,Guo, Wei,Xu, Mingliang,Xu, Yunbi. 2022

[6]甘蓝型油菜BnEIN3基因的克隆及菌核病诱导表达研究(英文). 许李明,黄军艳,刘学群,覃瑞,刘胜毅. 2009

[7]水稻淡褐斑叶突变体lbsll的遗传分析与基因定位. 奉保华,杨杨,施勇烽,林璐,陈洁,黄奇娜,魏彦林,HeiLEUNG,吴建利. 2012

[8]OsBTF3转基因水稻对病原茵侵染的反应和防卫基因的表达分析. 陈华民,吴茂森,何晨阳. 2012

[9]Mapping of Quantitative Trait Loci for Contents of Macro- and Microelements in Milled Rice (Oryza sativa L.). Yu, Yong-Hong,Shao, Ya-Fang,Liu, Jie,Fan, Ye-Yang,Sun, Cheng-Xiao,Cao, Zhao-Yun,Zhuang, Jie-Yun.

[10]Mapping QTLs related to rice seed storability under natural and artificial aging storage conditions. Ngo Thi Hang,Lin, Qiuyun,Liu, Linglong,Liu, Xi,Liu, Shijia,Wang, Wenyan,Li, Linfang,He, Niqing,Liu, Zhou,Jiang, Ling,Wan, Jianmin,Wan, Jianmin.

[11]Mapping of qGL7-2, a grain length QTL on chromosome 7 of rice. Shao, Gaoneng,Tang, Shaoqing,Luo, Ju,Jiao, Guiai,Wei, Xiangjin,Tang, Ao,Wu, Jianli,Zhuang, Jieyun,Hu, Peisong. 2010

[12]Identification of quantitative trait loci for seed storability in rice (Oryza sativa L.). Li, Linfang,Lin, Qiuyun,Liu, Shijia,Liu, Xi,Wang, Wenyan,Ngo Thi Hang,Liu, Feng,Zhao, Zhigang,Jiang, Ling,Wan, Jianmin. 2012

[13]Identification of QTLs Underlying Folate Content in Milled Rice. Dong Wei,Cheng Zhi-jun,Xu Jian-long,Zheng Tian-qing,Wang Xiao-le,Zhang Hong-zheng,Wang Jie,Wan Jian-min. 2014

[14]Genetic Dissection of Low Phosphorus Tolerance Related Traits Using Selected Introgression Lines in Rice. Xiang Chao,Ren Jie,Zhao Xiu-qin,Ding Zai-song,Zhang Jing,Wang Chao,Zhang Jun-wei,Joseph, Charles Augustino,Zhang Qiang,Pang Yun-long,Gao Yong-ming,Ren Jie,Zhang Jing,Wang Chao,Zhang Jun-wei,Shi Ying-yao,Ren Jie. 2015

[15]Identification and characterization of quantitative trait loci for grain yield and its components under different nitrogen fertilization levels in rice (Oryza sativa L.). Han-hua Tong (3), Liang Chen +, Wei-ping Li +, Han-wei Mei , Yong-zhong Xing , Xing-qiao Yu , Xiao-yan Xu , Shan-qing Zhang , Li-jun Luo *. 2011

[16]Quantitative Trait Locus Analysis for Rice Yield Traits under Two Nitrogen Levels. FENG Yue , ZHAI Rong-rong , LIN Ze-chuan , CAO Li-yong , WEI Xing-hua , CHENG Shi-hua *. 2015

[17]Dissection of the qTGW1.1 region into two tightly-linked minor QTLs having stable effects for grain weight in rice. Hong-Wei Zhang , Ye-Yang Fan , Yu-Jun Zhu , Jun-Yu Chen , Si-Bin Yu , Jie-Yun Zhuang *. 2016

[18]Dissecting the Genetic Basis of Extremely Large Grain Shape in Rice Cultivar 'JZ1560'. Jie-Zheng Ying (2), Ji-Ping Gao , Jun-Xiang Shan , Mei-Zhen Zhu , Min Shi , Hong-Xuan Lin *. 2012

[19]Control of thousand-grain weight by OsMADS56 in rice. Zi Wei Zuo,Zhen Hua Zhang,De Run Huang,Ye Yang Fan,Si Bin Yu,Jie Yun Zhuang,Yu Jun Zhu. 2022

[20]Dissection of Closely Linked Quantitative Trait Locis Controlling Grain Size in Rice. Xue, Pao,Chen, Yu-yu,Wen, Xiao-xia,Wang, Bei-fang,Yang, Qin-qin,Gong, Ke,Kang, Yi-wei,Sun, Lian-ping,Yu, Ping,Cao, Li-yong,Zhang, Ying-xin,Zhan, Xiao-deng,Cheng, Shi-hua. 2022

作者其他论文 更多>>