Enhanced Rice Blast Resistance by CRISPR/Cas9-Targeted Mutagenesis of the ERF Transcription Factor Gene OsERF922
文献类型: 外文期刊
作者: Wang, Fujun;Liu, Piqing;Wang, Fujun;Wang, Chunlian;Lei, Cailin;Hao, Wei;Gao, Ying;Zhao, Kaijun;Liu, Yao-Guang
作者机构:
期刊名称: PLOS ONE
ISSN: 1932-6203
年卷期: 2016 年 11 卷 4 期
页码:
收录情况: SCI
摘要: Rice blast is one of the most destructive diseases affecting rice worldwide. The adoption of host resistance has proven to be the most economical and effective approach to control rice blast. In recent years, sequence-specific nucleases (SSNs) have been demonstrated to be powerful tools for the improvement of crops via gene-specific genome editing, and CRISPR/Cas9 is thought to be the most effective SSN. Here, we report the improvement of rice blast resistance by engineering a CRISPR/Cas9 SSN (C-ERF922) targeting the OsERF922 gene in rice. Twenty-one C-ERF922-induced mutant plants (42.0%) were identified from 50 T-0 transgenic plants. Sanger sequencing revealed that these plants harbored various insertion or deletion (InDel) mutations at the target site. We showed that all of the C-ERF922-induced allele mutations were transmitted to subsequent generations. Mutant plants harboring the desired gene modification but not containing the transferred DNA were obtained by segregation in the T-1 and T-2 generations. Six T-2 homozygous mutant lines were further examined for a blast resistance phenotype and agronomic traits, such as plant height, flag leaf length and width, number of productive panicles, panicle length, number of grains per panicle, seed setting percentage and thousand seed weight. The results revealed that the number of blast lesions formed following pathogen infection was significantly decreased in all 6 mutant lines compared with wild-type plants at both the seedling and tillering stages. Furthermore, there were no significant differences between any of the 6 T2 mutant lines and the wild-type plants with regard to the agronomic traits tested. We also simultaneously targeted multiple sites within OsERF922 by using Cas9/Multi-target-sgRNAs (C-ERF922S1S2 and C-ERF922S1S2S3) to obtain plants harboring mutations at two or three sites. Our results indicate that gene modification via CRISPR/Cas9 is a useful approach for enhancing blast resistance in rice.
分类号:
- 相关文献
作者其他论文 更多>>
-
Effects of biochar pyrolysis temperature on soil carbon and nitrogen turnover and life cycle assessment
作者:Gao, Ying;Cui, Haojie;Guo, Haixin
关键词:Biochar property;Pyrolysis temperature;Soil nutrient;Carbon sequestration
-
Whole genome re-sequencing to reveal genetic diversity and to develop snp array in common tobacco
作者:Jiao, Fangchan;Li, Tianbao;Gao, Ying;Sun, Congwei;Wu, Xingfu;Song, Zhongbang;Chen, Xuejun;Li, Yongping;Gao, Lifeng
关键词:Genetic diversity;Genetic transmission;Genome re-sequencing;Nicotiana tabacum;SNP array Nt660YN
-
Organic fertilizer enhances crop yield and soil health by increasing arbuscular mycorrhizal fungi species richness
作者:Wang, Huaisong;Guo, Rui;Xu, Jialing;Yang, Tong;Wang, Mingming;Zhang, Lei;Jiang, Li;Gao, Yingzhi;Guo, Jixun;Shi, Lianxuan;Gao, Ying;Sun, Mingzhou;Zhang, Tao
关键词:crop yield;ecosystem multifunctionality;mycorrhizal network;organic fertilizer;soil microorganisms
-
The F-box protein RCN127 enhances rice tillering and grain yield by mediating the degradation of OsTB1 and OsTCP19
作者:Miao, Rong;Wang, Xin;Feng, Miao;Cheng, Zhijun;Shao, Jiale;Zhou, Chunlei;Qian, Jinsheng;Luo, Yajing;Luo, Wenfan;Luo, Sheng;Lei, Bin;Liu, Xin;Li, Shuai;Ling, Yimin;Wang, Jian;Luo, Tong;Ren, Yulong;Lei, Cailin;Zhu, Shanshan;Zhao, Zhichao;Jiang, Ling;Lin, Qibing;Wan, Jianmin
关键词:rice (Oryza sativa L.);RCN127;tillering;grain yield;OsTB1;OsTCP19
-
Strigolactones Regulate Sugar Allocation to Control Rice Tillering and Root Development via the OsSPL14-OsSHR1-OsSWEET16 Pathway
作者:Feng, Miao;Luo, Wenfan;Luo, Sheng;Miao, Rong;Gu, Manpo;Li, Shuai;Xing, Xinxin;Zhang, Jinhui;Qian, Jinsheng;Liu, Xin;Zhou, Chunlei;Sun, Qi;Luo, Tong;Chen, Nuo;Ren, Yulong;Cheng, Zhijun;Lei, Cailin;Zhao, Zhichao;Zhu, Shanshan;Wang, Xin;Guo, Xiuping;Lin, Qibing;Wan, Jianmin
关键词:root development;strigolactones;sugar allocation;tillering
-
Chromosomal translocations are a significant driver of hybrid sterility in rice
作者:Xie, Zhenwei;Zheng, Hai;Cheng, Siqi;Yu, Hao;Yu, Xiaowen;Wang, Chaolong;Wang, Jian;Yao, Bowen;Jiang, Xiaokang;Hu, Yang;Jian, Anqi;He, Xiaodong;Gao, Junwen;Chen, Minrui;Chen, Yun;Zhu, Yuantao;Ren, Yulong;Cheng, Zhijun;Lei, Cailin;Lin, Qibing;Wang, Xin;Guo, Xiuping;Tian, Yunlu;Liu, Shijia;Liu, Xi;Jiang, Ling;Wu, Chuanyin;Zhu, Shanshan;Zhao, Zhigang;Wan, Jianmin
关键词:hybrid sterility;pseudolinked loci;chromosomal translocation;translocated heterozygotes;pangenome
-
OsBRK1-mediated phosphorylation of OsPFN2 regulates meiotic spindle-actin assembly and rice fertility
作者:Zheng, Hai;Zhao, Zhigang;Zhu, Shanshan;Ren, Yulong;Shen, Jiangfeng;Xun, Ziqi;Yu, Xiaowen;Wang, Chaolong;Yao, Bowen;Cheng, Siqi;Hu, Yang;Zhang, Shihao;Wang, Qiming;Lu, Jiayu;Xie, Zhenwei;Lei, Dekun;Jian, Anqi;Chen, Minrui;Chen, Keyi;Liu, Shijia;Liu, Xi;Tian, Yunlu;Jiang, Lin;Cheng, Zhijun;Lei, Cailin;Lin, Qibing;Guo, Xiupin;Wang, Xin;Wu, Chuanyin;Wang, Haiyang;Huang, Shanjin;Wan, Jianmin
关键词:rice;Oryza sativa;spindle-actin assembly;spindle morphogenesis;pollen development;male sterility