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ZxAKT1对于肉质旱生植物霸王的钾吸收和钾/钠稳态至关重要。

ZxAKT1 is essential for K uptake and K /Na homeostasis in the succulent xerophyte Zygophyllum xanthoxylum.

作者信息

Ma Qing, Hu Jing, Zhou Xiang-Rui, Yuan Hui-Jun, Kumar Tanweer, Luan Sheng, Wang Suo-Min

机构信息

State Key Laboratory of Grassland Agro-ecosystems, College of Pastoral Agriculture Science and Technology, Lanzhou University, Lanzhou, 730020, China.

Department of Plant and Microbial Biology, University of California at Berkeley, Berkeley, CA, 73072, USA.

出版信息

Plant J. 2017 Apr;90(1):48-60. doi: 10.1111/tpj.13465. Epub 2017 Feb 11.

Abstract

The inward-rectifying K channel AKT1 constitutes an important pathway for K acquisition in plant roots. In glycophytes, excessive accumulation of Na is accompanied by K deficiency under salt stress. However, in the succulent xerophyte Zygophyllum xanthoxylum, which exhibits excellent adaptability to adverse environments, K concentration remains at a relatively constant level despite increased levels of Na under salinity and drought conditions. In this study, the contribution of ZxAKT1 to maintaining K and Na homeostasis in Z. xanthoxylum was investigated. Expression of ZxAKT1 rescued the K -uptake-defective phenotype of yeast strain CY162, suppressed the salt-sensitive phenotype of yeast strain G19, and complemented the low-K -sensitive phenotype of Arabidopsis akt1 mutant, indicating that ZxAKT1 functions as an inward-rectifying K channel. ZxAKT1 was predominantly expressed in roots, and was induced under high concentrations of either KCl or NaCl. By using RNA interference technique, we found that ZxAKT1-silenced plants exhibited stunted growth compared to wild-type Z. xanthoxylum. Further experiments showed that ZxAKT1-silenced plants exhibited a significant decline in net uptake of K and Na , resulting in decreased concentrations of K and Na , as compared to wild-type Z. xanthoxylum grown under 50 mm NaCl. Compared with wild-type, the expression levels of genes encoding several transporters/channels related to K /Na homeostasis, including ZxSKOR, ZxNHX, ZxSOS1 and ZxHKT1;1, were reduced in various tissues of a ZxAKT1-silenced line. These findings suggest that ZxAKT1 not only plays a crucial role in K uptake but also functions in modulating Na uptake and transport systems in Z. xanthoxylum, thereby affecting its normal growth.

摘要

内向整流钾通道AKT1构成了植物根系获取钾的重要途径。在甜土植物中,盐胁迫下过量的钠积累伴随着钾缺乏。然而,在对逆境环境具有出色适应性的肉质旱生植物霸王中,尽管在盐度和干旱条件下钠含量增加,但钾浓度仍保持在相对恒定的水平。在本研究中,对霸王中ZxAKT1在维持钾和钠稳态方面的作用进行了研究。ZxAKT1的表达挽救了酵母菌株CY162的钾吸收缺陷表型,抑制了酵母菌株G19的盐敏感表型,并补充了拟南芥akt1突变体的低钾敏感表型,表明ZxAKT1作为内向整流钾通道发挥作用。ZxAKT1主要在根中表达,并在高浓度的氯化钾或氯化钠处理下被诱导。通过使用RNA干扰技术,我们发现与野生型霸王相比,ZxAKT1沉默的植株生长发育不良。进一步的实验表明,与在50 mM氯化钠条件下生长的野生型霸王相比,ZxAKT1沉默的植株钾和钠的净吸收量显著下降,导致钾和钠浓度降低。与野生型相比,在ZxAKT1沉默株系的各个组织中,与钾/钠稳态相关的几种转运蛋白/通道(包括ZxSKOR、ZxNHX、ZxSOS1和ZxHKT1;1)的编码基因表达水平降低。这些发现表明,ZxAKT1不仅在钾吸收中起关键作用,而且在调节霸王中的钠吸收和运输系统中也发挥作用,从而影响其正常生长。

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