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来自于一种泌盐盐生植物——准噶尔无叶豆的 Na+/H+逆向转运蛋白 RtNHX1 的表达提高了转基因拟南芥的耐盐性。

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

机构信息

Key Laboratory of Herbage and Endemic Crop Biotechnology, and College of Life Sciences, Inner Mongolia University, Hohhot 010021, China.

出版信息

J Plant Physiol. 2017 Nov;218:109-120. doi: 10.1016/j.jplph.2017.07.015. Epub 2017 Jul 25.

Abstract

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.

摘要

三裂叶滨藜是一种濒危的返盐生植物和小型旱生灌木,仅分布于中国内蒙古自治区的阿拉善东部和鄂尔多斯西部。利用转录组数据,我们从三裂叶滨藜中鉴定出一个编码 553 个氨基酸的蛋白质的 1662bp 开放阅读框,该蛋白质对应于一种 Na/H 反向转运蛋白(RtNHX1)。RtNHX1 被 NaCl 和外源脱落酸处理迅速上调,并且在盐胁迫处理前后具有不同的组织特异性表达模式。在盐胁迫下,过表达 RtNHX1 增强了转基因拟南芥种子的萌发、生物量积累、叶绿素含量和根伸长,并挽救了 nhx1 突变体的盐敏感缺陷。在盐胁迫下,转基因拟南芥植物的 POD 和 CAT 酶活性、脯氨酸含量和 RWC 均显著增加,而 MDA 含量没有增加。此外,一些抗氧化酶、脯氨酸生物合成和其他应激响应基因(AtPOD1、AtCAT1、AtP5CS1、AtP5CS2、AtRD29A、AtRD29B、AtKIN1 和 AtABI2)的表达也相应上调。与 WT 植物相比,转基因拟南芥植物的叶片中积累了更多的 K 和更少的 Na,并且 Na/K 比值更低。这反映在一些离子转运相关基因(AtAVP1、AtSOS1、AtKUP6 和 AtKUP8)的上调。当 RtNHX1 在 AXT3 酵母菌株中表达时,液泡中 Na 和 K 的积累增加,Na/K 比值降低。这些结果表明,三裂叶滨藜 RtNHX1 是一种功能性反向转运蛋白,可将 Na 和 K 隔离在液泡中,并通过维持 Na/K 平衡和增强渗透和抗氧化调节能力赋予转基因拟南芥植物耐盐性。这些结果表明,RtNHX1 可能是提高植物耐盐性的良好靶标。

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