文献类型: 外文期刊
作者: Huang, Shengcai 1 ; Xin, Shichao 2 ; Xie, Guoqiang 3 ; Han, Jiao 1 ; Liu, Zhonglai 3 ; Wang, Bing 1 ; Zhang, Shuqing 1 ;
作者机构: 1.Chinese Acad Agr Sci, Inst Agr Resources & Reg Planning, Lab Plant Nutr & Biol, Beijing 100081, Peoples R China
2.Chinese Acad Trop Agr Sci, Rubber Res Inst, Key Lab Rubber Biol & Genet Resources, Minist Agr, Haikou 571011, Hainan, Peoples R China
3.Jiujiang Acad Agr Sci, Jiujiang 332101, Jiangxi, Peoples R China
4.Guangling 5 Middle Sch, Datong 037500, Shanxi, Peoples R China
期刊名称:CROP JOURNAL ( 影响因子:4.407; 五年影响因子:5.687 )
ISSN: 2095-5421
年卷期: 2020 年 8 卷 3 期
页码:
收录情况: SCI
摘要: Plant mitochondrial phosphate transporters regulate phosphate transport and ATP synthesis. Determining whether they function in abiotic stress response process would shed light on their response to salt stress. We used the CRISPR/Cas9 gene-editing system to mutagenize two mitochondrial phosphate transporters, OsMPT3;1 and OsMPT3;2, to investigate their regulatory roles under salt stress. Two cas9 (CRISPR-associated protein 9)-free homozygous mutants, mpt33 and mpt30, were confirmed to be stable. Both OsMPT3;1 and OsMPT3;2 were markedly induced by salt stress, and their mutagenesis strongly inhibited growth and development, especially under salt stress. Mutagenesis sharply reduced the accumulation of ATP, phosphate, calcium, soluble sugar, and proline and increased osmotic potential, malondialdehyde, and Na+/K+ ratio under salt stress. Both mutants demonstrate normal growth and development in the presence of ATP, revealing high sensitivity to exogenous ATP under salt stress. The mutants showed lowered rates of Na+ efflux but also of K+ and Ca2+ influx under salt stress. Mutagenesis of OsMPT3;2 altered the enrichment profiles of differentially expressed genes involved mainly in synthesis of secondary metabolites, metabolism of glycolysis, pyruvate, tricarboxylic acid cycle, in response to salt stress. The mutant displayed significant accumulation differences in 14 metabolites involved in 17 metabolic pathways, and strongly up-regulated the accumulation of glutamine, a precursor in proline synthesis, under salt stress. These findings suggest that the OsMPT3 gene modulates phosphate transport and energy supply for ATP synthesis and triggers changes in accumulation of ions and metabolites participating in osmotic regulation in rice under salt stress, thus increasing rice salt tolerance. This study demonstrates the effective application of CRISPR/Cas9 gene-editing to the investigation of plant functional genes. (C) 2020 Crop Science Society of China and Institute of Crop Science, CAAS. Production and hosting by Elsevier B.V. on behalf of KeAiCommunications Co., Ltd.
- 相关文献
作者其他论文 更多>>
-
Structurally manipulated antioxidant peptides derived from wheat bran: Preparation and identification
作者:Zhuang, Min;Wang, Anqi;Li, Gaoheng;Ke, Sheng;Wang, Xuanyu;Zhou, Zhongkai;Li, Jiaqing;Ning, Ming;Zhou, Zhongkai;Sheng, Zhanwu;Wang, Bing;Zhou, Zhongkai
关键词:Bioactive peptides; Antioxidant activity; Wheat Bran; Cellular model; Molecular docking; Keap1-Nrf2 interaction
-
Overexpression of the EuFPS5 gene in Hevea brasiliensis fails to produce Eucommia rubber but affects the biosynthesis of natural rubber
作者:Xin, Shichao;Hua, Yuwei;Li, Dejun;Udayabhanu, Jinu;Yang, Hong;Wu, Rizhi;Huang, Huasun;Huang, Tiandai;Xin, Shichao;Udayabhanu, Jinu;Huang, Huasun;Huang, Tiandai;Xin, Shichao;Hua, Yuwei;Udayabhanu, Jinu;Wu, Rizhi;Huang, Huasun;Huang, Tiandai
关键词:Rubber biosynthesis; Hevea brasiliensis; Eucommia ulmoides farnesyl diphosphate; synthase 5; Transgenic rubber tree; Farnesyl diphosphate
-
A cluster of mutagenesis revealed an osmotic regulatory role of the OsPIP1 genes in enhancing rice salt tolerance
作者:Tao, Leyuan;Wang, Bing;Li, Wei;Huang, Shengcai;Zhang, Qianru;Cheng, Xianguo;Tao, Leyuan;Wang, Bing;Liu, Laihua;Xin, Shichao;Cui, Jing
关键词:Aquaporin; Multiplex gene editing; CRISPR/Cas9; OsPIP1 genes; Salt tolerance; Rice(Oryza sativa L.)
-
Induction of Axillary Bud Swelling of Hevea brasiliensis to Regenerate Plants through Somatic Embryogenesis and Analysis of Genetic Stability
作者:Wang, Taihua;Chen, Jianmiao;Wang, Taihua;Chen, Jianmiao;Udayabhanu, Jinu;Gu, Xiaochuan;Wu, Rizhi;Xin, Shichao;Chen, Qiuhui;Zhang, Yuanyuan;Yang, Xianfeng;Peng, Suna;Huang, Tiandai;Udayabhanu, Jinu;Gu, Xiaochuan;Wu, Rizhi;Xin, Shichao;Yang, Xianfeng;Peng, Suna;Huang, Tiandai
关键词:Hevea brasiliensis; axillary bud; somatic embryo; regeneration; genetic stability
-
Optimization of the Transformation Protocol for Increased Efficiency of Genetic Transformation in Hevea brasiliensis
作者:Udayabhanu, Jinu;Huang, Tiandai;Xin, Shichao;Cheng, Jing;Hua, Yuwei;Huang, Huasun;Udayabhanu, Jinu;Huang, Tiandai;Xin, Shichao;Cheng, Jing;Hua, Yuwei;Huang, Huasun
关键词:Hevea brasiliensis; cotyledonary somatic embryos; Agrobacterium-mediated transformation; GUS staining; transmission electron microscopy
-
Identification and Functional Evaluation of Three Polyubiquitin Promoters from Hevea brasiliensis
作者:Xin, Shichao;Udayabhanu, Jinu;Dai, Xuemei;Hua, Yuwei;Fan, Yueting;Huang, Huasun;Huang, Tiandai;Xin, Shichao;Udayabhanu, Jinu;Dai, Xuemei;Hua, Yuwei;Fan, Yueting;Huang, Huasun;Huang, Tiandai
关键词:rubber tree; constitutive promoter; cis-acting elements; Agrobacterium-mediated transformation; protoplast transformation; transgene expression
-
Use of a novel R2R3-MYB transcriptional activator of anthocyanin biosynthesis as visual selection marker for rubber tree (Hevea brasiliensis) transformation
作者:Huang, Tiandai;Xin, Shichao;Fang, Yongjun;Chen, Tao;Chang, Jiao;Ko, Nay Chi Ko;Huang, Huasun;Hua, Yuwei;Huang, Tiandai;Xin, Shichao;Fang, Yongjun;Chen, Tao;Chang, Jiao;Ko, Nay Chi Ko;Huang, Huasun;Hua, Yuwei;Huang, Tiandai;Xin, Shichao;Fang, Yongjun;Chen, Tao;Chang, Jiao;Ko, Nay Chi Ko;Huang, Huasun;Hua, Yuwei
关键词:Hevea brasiliensis (rubber tree); Anthocyanin; R2R3-MYB; Somatic embryo; Rubber tree transformation; Visual selection marker



