Expression of FIHMA3, a P-1B2-ATPase from Festulolium loliaceum, correlates with response to cadmium stress
文献类型: 外文期刊
作者: Guo, Qiang 1 ; Meng, Lin 1 ; Humphreys, Mike W. 2 ; Scullion, John 2 ; Mur, Luis A. J. 2 ;
作者机构: 1.Beijing Acad Agr & Forestry Sci, Beijing Res & Dev Ctr Grass & Environm, Beijing 100097, PR, Peoples R China
2.Aberystwyth Univ, Inst Biol, Environm & Rural Sci, Aberystwyth SY23 3DA, Dyfed, Wales
关键词: Cadmium;Festulolium loliaceum;FIHMA3;Phytomediation;Vacuole sequestration
期刊名称:PLANT PHYSIOLOGY AND BIOCHEMISTRY ( 影响因子:4.27; 五年影响因子:4.816 )
ISSN:
年卷期:
页码:
收录情况: SCI
摘要: Heavy metal ATPase 3 (HMA3), a P-IB2-ATPase, is a key tonoplast transporter involved in mediating the vacuolar sequestration of cadmium (Cd) to detoxify the intake of this element by plants. HMA3 expression in response to Cd stress has not been previously examined in the grass hybrid species Festulolium loliaceum (Huds.) P. Fourn. In this study, FIHMA3 isolated from F loliaceum was found to comprise 833 amino acid residues with 77% homology to the rice OsHMA3. Transient expression of FIHMA3 fused to enhanced green fluorescent protein in Arabidopsis protoplasts suggested its localization to vacuolar membranes. Quantitative real-time RT-PCR analysis of F loliaceum revealed that FIHMA3 is expressed predominantly within roots and up-regulated by excess Cd. Over the 168 h treatment, Cd content of F. loliaceum roots was significantly higher than that of shoots, regardless of external CdCl2 concentrations. A significant positive correlation was found between FIHMA3 expression and Cd accumulation in roots of F loliaceum seedlings subjected to 10-100 mg L-1 CdCl2 for 168 h or, in a separate experiment, to 25 or 100 mg I:1 CdCl2 for the same duration. These findings provide evidence that FIHMA3 encodes a vacuolar P-1B2-ATPase that may play an important role in Cd2+ sequestration into root cell vacuoles, thereby limiting the entry of Cd2+ into the cytoplasm and reducing Cd2+ toxicity. (C) 2017 Elsevier Masson SAS. All rights reserved.
- 相关文献
作者其他论文 更多>>
-
The Importance of Soil Seed Bank Function in Studies of Grassland Degradation
作者:Chen, Chao;He, Wei;Scullion, John;Wilkinson, Mike
关键词:plant life cycle; soil permeability; dormancy; Poaceae; soil organic matter
-
Pre-Chilling CGA Application Alleviates Chilling Injury in Tomato by Maintaining Photosynthetic Efficiency and Altering Phenylpropanoid Metabolism
作者:Li, Yanmei;Xu, Xiangnan;Mur, Luis A. J.;Guo, Qiang
关键词:chlorogenic acid; light energy transduction; over-winter production; phenylalanine biosynthesis; photosynthetic proteins;
Solanum lycopersicum -
Miscanthus sinensis 'Gracillimus' Shows Strong Submergence Tolerance Implying Its Potential Utilization in Construction of Ecological Ditches
作者:Zhao, Chunqiao;Wu, Ting;Chang, Aoxiang;Li, Xiaona;Li, Cui;Zheng, Mei;Chen, Zebing;Zhao, Di;Guo, Qiang;Hou, Xincun;Fan, Xifeng;Zhao, Chunqiao;Wu, Ting;Chang, Aoxiang;Fan, Zhenyu;Li, Xiaona;Li, Cui;Zheng, Mei;Sun, Yu;Chen, Zebing;Zhao, Di;Guo, Qiang;Hou, Xincun;Fan, Xifeng;Wu, Ting;Chang, Aoxiang;Fan, Zhenyu;Sun, Yu;Wan, Xiuyun;Meng, Jie;Zhang, Jing
关键词:submergence; perennial grass; ecological ditch; farmland ecosystem; physiological indicators; nitrogen assimilation; biomass dry weight
-
Molecular Elucidation of Anthocyanin Accumulation Mechanisms in Hippeastrum hybridum Cultivars
作者:Guo, Pengyu;Xing, Chuanji;Ye, Jiacheng;Xue, Jing;Zhang, Xiuhai;Chen, Xuqing;Guo, Pengyu;Hu, Zongli;Chen, Guoping;Ye, Jiacheng;Mur, Luis A. J.;Di, Bao
关键词:
Hippeastrum ; petals; anthocyanins; transcriptomics; metabolomics; WGCNA; Y2H -
Identification and Correlation Analysis of Key Clostridia and LAB Species in Alfalfa Silages Prepared with Different Cultivars and Additives
作者:Zheng, Mingli;Li, Qin;Mao, Peichun;Tian, Xiaoxia;Meng, Lin;Li, Qin;Guo, Yuxia
关键词:clostridia; lactic acid bacteria; alfalfa silage; fermentation quality; bacterial community
-
Overexpression of IlHMA2, from Iris lactea, Improves the Accumulation of and Tolerance to Cadmium in Tobacco
作者:Li, Cui;Wang, Qinghai;Hou, Xincun;Zhao, Chunqiao;Guo, Qiang
关键词:Iris lactea; antioxidant enzymes; Cd translocation; phytoremediation
-
IlNRAMP5 is required for cadmium accumulation and the growth in Iris lactea under cadmium exposures
作者:Li, Cui;Zhang, Jia;Li, Qidong;Chen, Zhimin;Hou, Xincun;Zhao, Chunqiao;Guo, Qiang
关键词:Iris lactea; IlNRAMP5; Cd phytoremediation



