Improved Salt Tolerance in Brassica napus L. Overexpressing a Synthetic Deinocuccus Stress-Resistant Module DICW
文献类型: 外文期刊
作者: Dai, Qilin;Zhang, Lingling;Jiang, Shijie、苏泊丹、Li, Zhaoqin;Shuai, Yinying;Wang, Jin
作者机构:
关键词: Brassica napus L.;stress-resistant module DICW;salt stress;overexpression;physiology and biochemistry
期刊名称: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
ISSN: 1661-6596
年卷期: 2025 年 26 卷 6 期
页码:
收录情况: SCIE(2025版)
摘要: Salt stress adversely impacts plant physiology by causing ionic, osmotic, and oxidative stress, ultimately hindering growth and yield. The genus Deinococcus contains unique stress resistance genes, and previous studies have shown that proteins such as IrrE, Csp, and WHy enhance stress tolerance in plants and microbial cells. However, their role in Brassica napus L. (oilseed rape) remains unexamined. In this study, a synthetic stress-resistance module, DICW, was constructed using the Deinococcus-derived genes IrrE, Csp, and WHy and heterologously overexpressed in B. napus to assess its impact on salt tolerance. The results demonstrated that the DICW module significantly improved seed germination and seedling growth under salt stress. Transgenic B. napus plants exhibited reduced membrane damage, higher leaf relative water content, enhanced accumulation of osmoregulatory substances, and elevated antioxidant enzyme activity compared to wild-type plants. Additionally, qRT-PCR analysis revealed the upregulation of stress-related genes (BnRD29A, BnP5CS, BnKIN1, BnLEA1, BnNHX1, and BnSOS1) and antioxidant enzyme-related genes (BnSOD, BnPOD, and BnCAT) in transgenic lines. In conclusion, the DICW module plays a crucial role in enhancing salt tolerance in B. napus by regulating stress responses and antioxidant mechanisms. This study provides valuable molecular insights into improving the survival and growth of B. napus in saline environments.
分类号:
- 相关文献
作者其他论文 更多>>
-
Direct Cytosolic Delivery of siRNA Conjugates: A Paradigm in Antiangiogenic Therapy for Choroidal Neovascularization
作者:Li, Tongqi;Wang, Yue;Chen, Xiyi;Cui, Hongyan;Zhang, Liuwei;Liu, Jun;Wang, Jin;Wang, Xiumei;Zhao, Yan;Chen, Qixian;Wang, Jing
关键词:(0-2-9)RNA interference;RNA conjugate;fluorination;membrane penetration;VEGF;VEGFR
-
A Cold-Induced LEA3 Protein, DohD, Confers Cryoprotective Protection Against Low-Temperature Stress in Deinococcus radiodurans
作者:Wang, Wenxiu;Qi, Zhi;Yan, Chunxia;Zhou, Zhengfu;Wang, Jin
关键词:Deinococcus radiodurans;low-temperature stress;DohD;cold-induced protein;LEA3
-
A REVIEW OF INNOVATIVE DESIGN AND INTELLIGENT TECHNOLOGY APPLICATIONS OF THRESHING DEVICES IN COMBINE HARVESTERS FOR STAPLE CROPS
作者:Gou, Fuqiang;Wang, Jin;Ni, Youliang;Qian, Zhenjie;Yang, Tengxiang;Jin, Chengqian
关键词:Grain combine harvester;threshing device;intelligent detection;intelligent control
-
A Review of Key Technologies and Intelligent Applications in Soybean Mechanized Harvesting: Chinese and International Perspectives
作者:Wang, Jin;Shan, Chunli;Gou, Fuqiang;Qian, Zhenjie;Ni, Youliang;Liu, Zheng;Jin, Chengqian
关键词:Agricultural machinery;Combine harvester;Intelligent technology;Mechanized harvesting;Soybeans
-
Design and Performance Testing of the 4GS-457 Low-Loss Soybean Combine Harvester Header
作者:Wang, Jin;Ni, Youliang;Liu, Zheng;Gou, Fuqiang;Qian, Zhenjie;Bai, Hongmei;Jin, Chengqian
关键词:Agricultural machinery;Field experiments;Header design;Mechanization;Parameter optimization;Pod harvesting
-
Phase Separation: Orchestrating Biological Adaptations to Environmental Fluctuations
作者:Wang, Wenxiu;Han, Fangbing;Qi, Zhi;Yan, Chunxia;Su, Bodan;Wang, Jin
关键词:phase separation;biomolecular condensates;weak interactions;stress resistance;environmental adaptability
-
One-pot LAMP-Argonaute assay with 3′-mismatched gDNA for duplex detection of Nipah and Japanese encephalitis viruses
作者:Ye, Xingyu;Sun, Tong;Peng, Shuze;Liu, Yingnan;Wang, Jin;Liu, Qian;He, Guimei;Liu, Jingyi;Chen, Hongjun
关键词:Nipah virus (NiV);Japanese encephalitis virus (JEV);Argonaute;Duplex detection