Inheritance of resistance to rice stripe virus in rice line 'BL 1'

文献类型: 外文期刊

第一作者: Ise, K

作者: Ise, K;Ishikawa, K;Li, CY;Ye, CR

作者机构:

关键词: blast;Oryza sativa L.;resistance gene;rice stripe virus;small brown plant hopper

期刊名称:EUPHYTICA ( 影响因子:1.895; 五年影响因子:2.181 )

ISSN: 0014-2336

年卷期: 2002 年 127 卷 2 期

页码:

收录情况: SCI

摘要: Rice stripe is the most serious virus disease in temperate rice-growing countries. The most economical and environmentally safe practice for controlling this disease is virus-resistant cultivars. 'BL 1' is an elite germplasm line with the blast resistance gene Pib, and has been used as a differential line for testing the pathogenicity of the blast fungus. We found that certain progenies from BL 1 showed resistance to both blast and rice stripe virus (RSV). The objectives of this study were to evaluate the RSV resistance in the field and under artificial conditions, to assess the reaction to the insect vector (small brown planthopper, SBPH), and to examine its inheritance and its relationship to blast resistance in BL 1. BL 1 was susceptible to SBPH, but resistant to RSV in field and artificial inoculation tests. The inheritance of RSV resistance in F-3 lines from the cross Nipponbare (NPB)/BL 1 was studied using artificial inoculation with a population of viruliferous SBPH. A serological assay for RSV infection using an enzyme-linked immunosorbent assay (ELISA) was used. RSV resistance in BL 1 was controlled by a single major gene with incomplete dominance. The locus responsible for RSV resistance was genetically independent of the blast resistance gene Pib. The resistance gene for RSV infection in BL 1 was also independent of Stvb-i, a gene widely distributed in resistant Japanese cultivars. Resistance to RSV must be diversified in rice cultivars considering the potential for future emergence of new RSV strains. The new resistance gene identified in BL 1, which has improved plant type and blast resistance, is considered useful for breeding RSV-resistant cultivars in japonica rice.

分类号:

  • 相关文献

[1]Detection and fine mapping of two quantitative trait loci for partial resistance to stripe virus in rice (Oryza sativa L.). Zhang, Ying-Xin,Wang, Qi,Jiang, Ling,Wang, Bao-Xiang,Liu, Ling-Long,Shen, Ying-Yue,Cheng, Xia-Nian,Wan, Jian-Min,Wan, Jian-Min.

[2]Blast-Resistance Inheritance of Space-Induced Rice Lines and Their Genomic Polymorphism by Microsatellite Markers. Xiao Wu-ming,Yang Qi-yun,Zhu Xiao-yuan,Xiao Wu-ming,Chen Zhi-qiang,Wang Hui,Guo Tao,Liu Yong-zhu. 2009

[3]Silicon-enhanced resistance to rice blast is attributed to silicon-mediated defence resistance and its role as physical barrier. Sun, Wanchun,Zhang, Jie,Fan, Qionghua,Xue, Gaofeng,Li, Zhaojun,Liang, Yongchao,Sun, Wanchun.

[4]Substitution mapping of QTLs for blast resistance with SSSLs in rice (Oryza sativa L.). Zhang, Yuexiong,Shan, Zelin,Qiao, Weihua,Xie, Qingjun,Zhu, Haitao,Zhang, Zemin,Zeng, Ruizhen,Ding, Xiaohua,Zhang, Guiquan,Yang, Jianyuan,Chen, Shen,Zhu, Haitao,Zhang, Zemin,Zeng, Ruizhen,Zhang, Guiquan. 2012

[5]Cloning and analysis of the full-length Rubisco large subunit (rbcL) cDNA from Ulva linza (Chlorophyceae, Chlorophyta). Ying, Cheng-Qi,Yin, Shun-Ji,Shen, Yi,He, Pei-Min,Ying, Cheng-Qi,Lin, Sen-Jie.

[6]A comparison of virus genome sequences with their host silkworm, Bombyx mori. Tang, Xu-Dong,Yue, Ya-Jie,Wang, Wei,Li, Nan,Shen, Zhong-Yuan,Tang, Xu-Dong,Yue, Ya-Jie,Shen, Zhong-Yuan,Tang, Xu-Dong,Yue, Ya-Jie,Wang, Wei,Li, Nan,Shen, Zhong-Yuan.

[7]Identification of TT2 gene from floral transcriptome in Fagopyrum tataricum. Zhou, Mei-Liang,Shao, Ji-Rong,Zhou, Mei-Liang,Tang, Yi-Xiong,Wu, Yan-Min,Zhou, Mei-Liang,Zhang, Kai-Xuan,Tang, Yu,Li, Fa-Liang,Yang, Pei-Yan.

[8]Pyramiding blast, bacterial blight and brown planthopper resistance genes in rice restorer lines. Ji Zhi-juan,Qian Qian,Ji Zhi-juan,Zeng Yu-xiang,Liang Yang,Yang Chang-deng,Qian Qian,Yang Shu-dong. 2016

[9]Genetic analysis and breeding use of blast resistance in a japonica rice mutant R917. Zhang, MX,Xu, JL,Luo, RT,Shi, D,Li, ZK. 2003

[10]Molecular identification and phylogenetic analysis of a viral RNA associated with the Chinese tobacco bushy top disease complex. Mo, X-H,Chen, J-P,Mo, X-H,Chen, J-P,Mo, X-H,Chen, Z-B.

[11]Complex genetic networks underlying the defensive system of rice (Oryza sativa L.) to Xanthomonas oryzae pv. oryzae. Li, ZK,Arif, M,Zhong, DB,Fu, BY,Xu, JL,Domingo-Rey, J,Ali, J,Vijayakumar, CHM,Yu, SB,Khush, GS.

[12]Authentication and traceability of fish maw products from the market using DNA sequencing. Wen, Jing,Zeng, Ling,Sun, Yulin,Chen, Daohai,Xu, Youhou,Luo, Peng,Zhao, Zhe,Yu, Zonghe,Fan, Sigang.

[13]Production of transgenic rice new germplasm with strong resistance against two isolations of Rice stripe virus by RNA interference. Ma, Jin,Song, Yunzhi,Wu, Bin,Li, Kaidong,Zhu, Changxiang,Wen, Fujiang,Jiang, Mingsong. 2011

[14]Production of marker-free and RSV-resistant transgenic rice using a twin T-DNA system and RNAi. Jiang, Yayuan,Sun, Lin,Li, Kaidong,Song, Yunzhi,Zhu, Changxiang,Jiang, Mingsong.

[15]Virus resistance obtained in transgenic tobacco and rice by RNA interference using promoters with distinct activity. Zhang, C.,Song, Y.,Jiang, F.,Jiang, Y.,Zhu, C.,Wen, F.,Li, G..

[16]Dimeric artificial microRNAs mediate high resistance to RSV and RBSDV in transgenic rice plants. Sun, Lin,Lin, Chao,Du, Jinwen,Song, Yunzhi,Liu, Hongmei,Zhou, Shumei,Wen, Fujiang,Zhu, Changxiang,Jiang, Mingsong.

[17]Overexpression of OsCIPK30 Enhances Plant Tolerance to Rice stripe virus. Liu, Zhiyang,Li, Xuejuan,Sun, Feng,Zhou, Tong,Zhou, Yijun,Liu, Zhiyang,Li, Xuejuan,Sun, Feng,Zhou, Tong,Zhou, Yijun. 2017

[18]Rice Stripe Virus Interferes with S-acylation of Remorin and Induces Its Autophagic Degradation to Facilitate Virus Infection. Xu, Yi,Li, Chenyang,Wu, Jianxiang,Zhou, Xueping,Li, Chenyang,Zhou, Xueping,Li, Yi,Xu, Yi. 2018

[19]Characterization and subcellular localization of an RNA silencing suppressor encoded by Rice stripe tenuivirus. Xiong, Ruyi,Wu, Jianxiang,Zhou, Xueping,Zhou, Yijun. 2009

[20]RNA interference of E75 nuclear receptor gene suppresses transmission of rice stripe virus in Laodelphax striatellus. Fang, Ying,Lee, Seok Hee,Kim, Jong Hoon,Park, Dong Hwan,Park, Min Gu,Woo, Ra Mi,Lee, Bo Ram,Kim, Woo Jin,Je, Yeon Ho,Choi, Jae Young,Je, Yeon Ho,Li, Shuo. 2017

作者其他论文 更多>>