Overexpression of Wild Soybean Expansin Gene GsEXLB14 Enhanced the Tolerance of Transgenic Soybean Hairy Roots to Salt and Drought Stresses
文献类型: 外文期刊
作者: Wang, Linlin 1 ; Zhang, Tong 1 ; Li, Cuiting 1 ; Zhou, Changjun 2 ; Liu, Bing 2 ; Wu, Yaokun 2 ; He, Fumeng 1 ; Xu, Yongqing 1 ; Li, Fenglan 1 ; Feng, Xu 1 ;
作者机构: 1.Northeast Agr Univ, Coll Life Sci, Harbin 150030, Peoples R China
2.Heilongjiang Acad Agr Sci, Daqing Branch, Daqing 163316, Peoples R China
3.Northeast Agr Univ, Coll Agr, Harbin 150030, Peoples R China
关键词: wild soybean; expansin; GsEXLB14; abiotic stress; hairy root
期刊名称:PLANTS-BASEL ( 影响因子:4.0; 五年影响因子:4.4 )
ISSN: 2223-7747
年卷期: 2024 年 13 卷 12 期
页码:
收录情况: SCI
摘要: As a type of cell-wall-relaxing protein that is widely present in plants, expansins have been shown to actively participate in the regulation of plant growth and responses to environmental stress. Wild soybeans have long existed in the wild environment and possess abundant resistance gene resources, which hold significant value for the improvement of cultivated soybean germplasm. In our previous study, we found that the wild soybean expansin gene GsEXLB14 is specifically transcribed in roots, and its transcription level significantly increases under salt and drought stress. To further identify the function of GsEXLB14, in this study, we cloned the CDS sequence of this gene. The transcription pattern of GsEXLB14 in the roots of wild soybean under salt and drought stress was analyzed by qRT-PCR. Using an Agrobacterium rhizogenes-mediated genetic transformation, we obtained soybean hairy roots overexpressing GsEXLB14. Under 150 mM NaCl- and 100 mM mannitol-simulated drought stress, the relative growth values of the number, length, and weight of transgenic soybean hairy roots were significantly higher than those of the control group. We obtained the transcriptomes of transgenic and wild-type soybean hairy roots under normal growth conditions and under salt and drought stress through RNA sequencing. A transcriptomic analysis showed that the transcription of genes encoding expansins (EXPB family), peroxidase, H+-transporting ATPase, and other genes was significantly upregulated in transgenic hairy roots under salt stress. Under drought stress, the transcription of expansin (EXPB/LB family) genes increased in transgenic hairy roots. In addition, the transcription of genes encoding peroxidases, calcium/calmodulin-dependent protein kinases, and dehydration-responsive proteins increased significantly. The results of qRT-PCR also confirmed that the transcription pattern of the above genes was consistent with the transcriptome. The differences in the transcript levels of the above genes may be the potential reason for the strong tolerance of soybean hairy roots overexpressing the GsEXLB14 gene under salt and drought stress. In conclusion, the expansin GsEXLB14 can be used as a valuable candidate gene for the molecular breeding of soybeans.
- 相关文献
作者其他论文 更多>>
-
Integrating Genome-Wide Association Study, Transcriptome and Metabolome Reveal Novel QTL and Candidate Genes That Control Protein Content in Soybean
作者:Zhao, Xunchao;Zhu, Hanhan;Liu, Fang;Wang, Jie;Zhao, Xue;Li, Yongguang;Teng, Weili;Han, Yingpeng;Zhan, Yuhang;Zhou, Changjun;Yuan, Ming
关键词:soybean; genome-wide association study; transcriptome; metabolome; protein content
-
Multi-omics analysis reveals novel loci and a candidate regulatory gene of unsaturated fatty acids in soybean (Glycine max (L.) Merr)
作者:Zhao, Xunchao;Zhan, Yuhang;Li, Kaiming;Zhang, Yan;Li, Yongguang;Zuo, Peng;Han, Yingpeng;Zhao, Xue;Zhou, Changjun;Yuan, Ming;Liu, Miao
关键词:Soybean; 3VmrMLM; Unsaturated fatty acids; Multi-omics analysis; Expression profile
-
Exploring the Efficacy of Four Essential Oils as Potential Insecticides against Thrips flavus
作者:Niu, Yulong;Pei, Tianhao;Zhao, Yijin;Shi, Shusen;Gao, Yu;Zhao, Yijin;Zhou, Changjun;Liu, Bing;Xu, Meng-Lei
关键词:Thrips flavus; Lamiaceae; essential oil; plant-derived insecticides; insecticidal toxicity
-
Encapsulation of quercetin in cellulose porous microspheres: improving antioxidant activity and storage stability
作者:Zhang, Tong;Wang, Hongyue;Pan, Xiaoya;Shi, Caihong;Zhang, Xiangrong;Zhang, Tong;Zhang, Xiangrong;Zhang, Xindi;Zhang, Xindi
关键词:Quercetin; Ethyl cellulose; Porous microsphere; Antioxidant activity
-
Joint GWAS and WGCNA Identify Genes Regulating the Isoflavone Content in Soybean Seeds
作者:Yang, Zhenhong;Wu, Xu;Zhu, Yina;Qu, Yuewen;Zhan, Yuhang;Li, Yongguang;Teng, Weili;Zhao, Xue;Han, Yingpeng;Zhou, Changjun;Yuan, Ming
关键词:genome-wide association analysis; weighted gene coexpressionnetwork analysis; soybean isoflavone; hub gene; overexpression and knockout of GmOMT7
-
Salicylic Acid and Pyraclostrobin Can Mitigate Salinity Stress and Improve Anti-Oxidative Enzyme Activities, Photosynthesis, and Soybean Production under Saline-Alkali Regions
作者:Ren, Honglei;Wang, Xueyang;Zhang, Fengyi;Zhao, Kezhen;Liu, Xiulin;Yuan, Rongqiang;Zhang, Bixian;Wang, Jiajun;Zhou, Changjun;Yu, Jidong;Du, Jidao
关键词:soil salinity; salicylic acid; anti-oxidant metabolism; photosynthesis; reactive oxygen species; soybean production
-
Identification of QTL, QTL-by-environment interactions, and their candidate genes for resistance HG Type 0 and HG Type 1.2.3.5.7 in soybean using 3VmrMLM
作者:Jiang, Haipeng;Lv, Suchen;Qu, Shuo;Liu, Fang;Sun, Haowen;Zhao, Xue;Han, Yingpeng;Zhou, Changjun
关键词:soybean cyst nematode; GWAS; 3VmrMLM; QTL; candidate genes