Expression of a Na+/H+ antiporter RtNHX1 from a recretohalophyte Reaumuria trigyna improved salt tolerance of transgenic Arabidopsis thaliana

被引:47
作者
Li, Ningning
Wang, Xue
Ma, Binjie
Du, Chao
Zheng, Linlin
Wang, Yingchun [1 ]
机构
[1] Inner Mongolia Univ, Coll Life Sci, 235 Daxuexi Rd, Hohhot 010021, Peoples R China
基金
中国国家自然科学基金;
关键词
Na+/H+ antiporter gene; Ions homeostasis; Antioxidant and osmotic regulation; Reaumuria trigyna; Salt stress; Transgenic Arabidopsis; MOLECULAR CHARACTERIZATION; H+-PYROPHOSPHATASE; ION HOMEOSTASIS; GENE; EXCHANGER; YEAST; OVEREXPRESSION; STRESS; ATNHX1; CLONING;
D O I
10.1016/j.jplph.2017.07.015
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Reaumuria trigyna is an endangered recretohalophyte and a small xeric shrub that is endemic to the eastern Alxa and western Ordos areas of Inner Mongolia, China. Using transcriptome data, we identified a 1662-bp open reading frame encoding a 553-amino-acid protein corresponding to a Na+/H+ antiporter (RtNHX1) from R. trigyna. RtNHX1 was rapidly up-regulated by NaCl and exogenous abscisic acid treatment and had different tissue-specific expression patterns before and after salt-stress treatment. Overexpression of RtNHX1 enhanced seed germination, biomass accumulation, chlorophyll content, and root elongation in transgenic Arabidopsis plants under salt stress and rescued the salt-sensitive deficiencies of the nhx1 mutant. POD and CAT enzyme activities, proline content, and RWC all increased significantly in salt-stressed transgenic Arabidopsis plants, whereas MDA content did not. Additionally, there was a corresponding upregulation of some antioxidant-enzyme, proline biosynthesis and other stress responsive genes (AtPOD1, AtCAT1, AtP5CS1, AtP5CS2, AtRD29A, AtRD29B, AtKIN1, and AtABI2). The transgenic Arabidopsis plants accumulated more K+ and less Na+ in their leaves and had lower Na+/K+ ratios than WT plants. This was reflected in the upregulation of some ion transport-related genes (AtAVP1, AtSOS1, AtKUP6, and AtKUP8). When RtNHX1 was expressed in the AXT3 yeast strain, the accumulation of Na+ and K+ in the vacuole increased and the Na+/K+ ratio decreased. These results reveal that R. trigyna RtNHX1 is a functional antiporter that sequesters Na+ and K+ in the vacuole and could confer salt tolerance on transgenic Arabidopsis plants by maintaining Na+/K+ homeostasis and enhancing osmotic and antioxidant regulatory capacity. These results suggest that RtNHX1 may be a good target for improving salt tolerance in plants.
引用
收藏
页码:109 / 120
页数:12
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