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ZxNHX1 间接参与控制旱生植物霸王的 K 稳态。

ZxNHX1 indirectly participates in controlling K homeostasis in the xerophyte Zygophyllum xanthoxylum.

机构信息

State Key Laboratory of Grassland Agro-ecosystems; Key Laboratory of Grassland Livestock Industry Innovation, Ministry of Agriculture and Rural Affairs; College of Pastoral Agriculture Science and Technology, Lanzhou University, Lanzhou 730020, PR China.

State Key Laboratory of Grassland Agro-ecosystems; Key Laboratory of Grassland Livestock Industry Innovation, Ministry of Agriculture and Rural Affairs; College of Pastoral Agriculture Science and Technology, Lanzhou University, Lanzhou 730020, PR China; and School of Life Science and Engineering, Lanzhou University of Technology, Lanzhou 730050, PR China.

出版信息

Funct Plant Biol. 2021 Mar;48(4):402-410. doi: 10.1071/FP20185.

Abstract

The succulent xerophyte Zygophyllum xanthoxylum (Bunge) Engl. can absorb Na+ from the soil as an osmoticum in order to resist osmotic stress. The tonoplast Na+/H+ antiporter ZxNHX1 is essential for maintaining the salt-accumulation characteristics of Z. xanthoxylum by compartmentalizing Na+ into vacuoles. Previous results revealed that the silencing of ZxNHX1 greatly decreased Na+ accumulation in Z. xanthoxylum under 50 mM NaCl due to the weakened compartmentalisation; in addition, K+ concentration also significantly reduced in ZxNHX1-RNAi lines. Yet, whether the reduction of K+ concentration was directly triggered by the silencing of ZxNHX1 remains unclear. In this study, the growth parameters and expression levels of ZxSOS1, ZxHKT1;1, ZxAKT1 and ZxSKOR were measured in wild-type and ZxNHX1-RNAi lines under control or -0.5 MPa osmotic stress. The results showed that the silencing of ZxNHX1 inhibited the plant growth, decreased Na+ concentration in leaves, reduced the transcript abundance of ZxSOS1 and dramatically increased that of ZxHKT1;1 in roots of Z. xanthoxylum under osmotic stress; whereas tissue K+ concentrations and the expression level of ZxSKOR displayed no significant variations, and the expression of ZxAKT1 were significantly reduced in ZxNHX1-RNAi lines under osmotic stress, compared with the wild type. These results suggest that in Z. xanthoxylum, ZxNHX1 can maintain the normal growth by compartmentalizing Na+ into vacuoles, and regulate the spatial distribution of Na+ indirectly by affecting the expressions of ZxSOS1 and ZxHKT1;1. Moreover, the silencing of ZxNHX1 is not the main reason that led to the reduction of K+ concentration in ZxNHX1-RNAi lines under 50 mM NaCl, and ZxNHX1 might be indirectly involved in regulating K+ homeostasis.

摘要

肉质旱生植物骆驼蓬(Zygophyllum xanthoxylum (Bunge) Engl.)可以吸收土壤中的钠离子作为渗透物,以抵抗渗透胁迫。液泡膜 Na+/H+逆向转运蛋白 ZxNHX1 对于将钠离子分隔到液泡中,维持骆驼蓬的盐积累特性是必不可少的。先前的研究结果表明,由于分隔作用减弱,50mM NaCl 下 ZxNHX1 的沉默极大地降低了骆驼蓬中的钠离子积累;此外,ZxNHX1-RNAi 系中的 K+浓度也显著降低。然而,K+浓度的降低是否直接由 ZxNHX1 的沉默触发仍不清楚。在这项研究中,在对照或-0.5 MPa 渗透胁迫下,测量了野生型和 ZxNHX1-RNAi 系中 ZxSOS1、ZxHKT1;1、ZxAKT1 和 ZxSKOR 的生长参数和表达水平。结果表明,ZxNHX1 的沉默抑制了植物生长,降低了叶片中的钠离子浓度,减少了渗透胁迫下根部 ZxSOS1 的转录丰度,显著增加了 ZxHKT1;1 的转录丰度;然而,组织 K+浓度和 ZxSKOR 的表达水平没有明显变化,ZxNHX1-RNAi 系中 ZxAKT1 的表达在渗透胁迫下显著降低,与野生型相比。这些结果表明,在骆驼蓬中,ZxNHX1 可以通过将钠离子分隔到液泡中来维持正常的生长,并通过影响 ZxSOS1 和 ZxHKT1;1 的表达间接调节钠离子的空间分布。此外,ZxNHX1 的沉默不是导致 50mM NaCl 下 ZxNHX1-RNAi 系 K+浓度降低的主要原因,ZxNHX1 可能间接参与调节 K+稳态。

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