Overexpression of Arabidopsis thaliana Na+/H+ antiporter gene enhanced salt resistance in transgenic poplar (Populus x euramericana 'Neva')
文献类型: 外文期刊
第一作者: Jiang, Chaoqiang
作者: Jiang, Chaoqiang;Zheng, Qingsong;Liu, Zhaopu;Liu, Ling;Zhao, Gengmao;Long, Xiaohua;Jiang, Chaoqiang;Xu, Wenjun
作者机构:
关键词: AtNHX1;Ion homeostasis;Photosynthesis;Poplar (Populus x euramericana 'Neva');Salt resistance
期刊名称:TREES-STRUCTURE AND FUNCTION ( 影响因子:2.529; 五年影响因子:2.562 )
ISSN: 0931-1890
年卷期: 2012 年 26 卷 3 期
页码:
收录情况: SCI
摘要: Salinity is a major abiotic stress factor limiting plant growth and productivity. One possible method to enhance plant salt-resistance is to compartmentalize sodium ions away from the cytosol. In the present work, a vacuolar Na+/H+ antiporter gene AtNHX1 from Arabidopsis thaliana, was transferred into Populus x euramericana 'Neva' by Agrobacterium tumefaciens in order to enhance poplar salt-resistance. The results showed that the transgenic poplar were more resistant to NaCl than the wild-type (WT) in greenhouse condition. Compared with the WT, plant growth and photosynthetic capacity of the transgenic plants were enhanced, and the transgenic plants accumulated more Na+ and K+ in roots and leaves under the same NaCl condition, whereas malondialdehyde and relative electrical conductivity were lower. All of these properties of the transgenic poplar were likely to be a consequence of the overexpression of AtNHX1 caused Na+ sequestration in the vacuoles and improved K+ absorption, thus reducing their toxic effects. These results indicated overexpression of the AtNHX1 enhanced salt-resistance of poplar, and AtNHX1 played an important role in the compartmentation of Na+ into the vacuoles. Therefore, this study provides an effective way for improving salt resistance in trees.
分类号:
- 相关文献
作者其他论文 更多>>
-
TPT disrupts early embryonic development and glucose metabolism of marine medaka in different salinites
作者:Li, Tengzhou;Liu, Bin;Xing, Shaoying;Liu, Ling;Li, Ping;Li, Zhi-Hua;Li, Luoxin
关键词:Oryzias melastigma; Triphenyltin; Salinity; Insulin signaling pathway
-
Impacts of continuous cropping on soil fertility, microbial communities, and crop growth under different tobacco varieties in a field study
作者:Xia, Hao;Jiang, Chaoqiang;Yu, Fei;Dong, Qing;Yan, Yifeng;Zu, Chaolong;Shen, Jia;Riaz, Muhammad;Zhou, Chuyue;Wang, Jitao
关键词:Continuous cropping obstacle; Multi-variety; Rhizosphere soil; Soil microbial
-
Absorption and transport mechanism of colloidal nanoparticles (CNPs) in lamb soup based on Caco-2 cell
作者:Fu, Jianing;Liu, Ling;Fu, Jianing;Li, Shaobo;Xu, Meizhen;Chen, Li;Zhang, Dequan
关键词:Colloidal nanoparticles; Caco-2 cell; Lamb soup; Absorption mechanism; Transport
-
Ustilaginoidin D Induces Acute Toxicity and Hepatotoxicity in Mice
作者:Wang, Bo;Bai, Xiaolong;Zhang, Min;Dara, Muhammad Zulqar Nain;Liu, Lingjing;Ou, Mingming;Li, Dayong;Liu, Ling;Sun, Wenxian;Wang, Bo;Wang, Jiyang;Sun, Wenxian;Wang, Bo;Wang, Jiyang;Sun, Wenxian;Wang, Bo;Liu, Xiangxiang;Liu, Xiangxiang
关键词:ustilaginoidin D; rice false smut; mice; hepatotoxicity; human health
-
Mechanism for the decrease of Cd uptake and transport within wheat plants in the presence of dissolved Fe(II)
作者:Duan, Xianjie;Lu, Tao;Wang, Ziwei;Wang, Sheliang;Qiu, Guohong;Duan, Xianjie;Liu, Ling;Liu, Chengshuai;Qiu, Guohong;Qiu, Guohong;Qiu, Guohong
关键词:Wheat; Cadmium; Fe(II); Rhizosphere passivation; Cell wall; Competitive absorption
-
Effects of Exogenous Application of Phenolic Acid on Soil Nutrient Availability, Enzyme Activities, and Microbial Communities
作者:Zhou, Yi;Liu, Yihang;Wang, Chenlu;Zhang, Xueping;Ding, Jiayi;Chen, Zhenghao;Jiang, Chaoqiang;Shen, Jia;Xia, Hao;El-Desouki, Zeinab;Riaz, Muhammad;Liu, Huaiwei
关键词:phenolic acids; continuous cropping obstacles; bacterium; fungus
-
Changes in lamb soup's colloidal nanoparticles for in vitro dynamic digestion: Nutrition, colloidal properties and lipidomics
作者:Fu, Jianing;Li, Shaobo;Xu, Meizhen;Chen, Li;Zhang, Dequan;Fu, Jianing;Liu, Ling
关键词:Colloidal nanoparticles; Lamb soup; In vitro dynamic digestion; Lipidomics; Structure