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首页> 外文期刊>Acta Physiologiae Plantarum >PtAKT1 maintains selective absorption capacity for K+ over Na+ in halophyte Puccinellia tenuiflora under salt stress
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PtAKT1 maintains selective absorption capacity for K+ over Na+ in halophyte Puccinellia tenuiflora under salt stress

机译:PtAKT1在盐胁迫下维持盐生植物Puccinellia tenuiflora中Na +对K +的选择性吸收能力

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摘要

The halophyte Puccinellia tenuiflora efficiently restricts Na+ entry into roots and maintains a strong selective absorption (SA) capacity for K+ over Na+ to cope with salt stress. AKT1-type channel, an important plant K+ uptake protein, may be active in regulating SA in P. tenuiflora. Here, its encoding gene PtAKT1 was isolated from P. tenuiflora. To examine the function of PtAKT1 in salt resistance and selectivity for K+ over Na+, we analyzed the transcript patterns of PtAKT1 and Na+, K+ concentration in P. tenuiflora during varying concentrations of NaCl and KCl. Results displayed that both the transcription abundance of PtAKT1 in roots and the whole plant K+ concentration did not change with varying K ? concentrations in the medium (0-10 mM). When NaCl (25 or 150 mM) was present, transcript levels of PtAKT1 were down-regulated, accompanied by a decrease in the whole plant K+ concentration. However, under normal (5 mM) or low (0.1 mM) KCl condition, transcript levels of PtAKT1 in roots under severe salt stress (150 mM NaCl) were higher than that in mild salt condition (25 mM NaCl) within 6-24 h, so did SA during the whole treatment time (6-96 h). A strong positive correlation was existed between root PtAKT1 transcription abundance and SA values during 25 or 150 mM NaCl plus KCl. Consequently, it is proposed that PtAKT1 is a key factor in regulating selective absorption capacity for K+ over Na+ in P. tenuiflora during saline condition. Finally, we hypothesize a model that SOS1, HKT and SKOR synergistically regulate potassium and sodium transport systems in the xylem parenchyma, and subsequently modulates K+ absorption via AKT1, which is located in epidermis, cortex and endodermis. The model could also provide a likely evidence to the mechanism that SOS1 could protect AKT1 mediating K ? influx during salt stress.
机译:盐生植物Puccinellia tenuiflora有效地限制了Na +进入根部,并保持了K +优于Na +的强大选择性吸收(SA)能力,以应对盐胁迫。 AKT1型通道是一种重要的植物K +吸收蛋白,可能在调节tenuiflora中的SA中起作用。在这里,其编码基因PtAKT1是从天竺葵中分离出来的。为了检查PtAKT1在耐盐性和对Na +对K +的选择性中的功能,我们分析了在NaCl和KCl浓度变化期间,P.tenuiflora中PtAKT1和Na +,K +浓度的转录方式。结果表明,根系中PtAKT1的转录丰度和整个植物的K +浓度都没有变化。浓度(0-10 mM)。当存在NaCl(25或150 mM)时,PtAKT1的转录水平会下调,同时整个植物的K +浓度也会降低。但是,在正常(5 mM)或低(0.1 mM)的KCl条件下,重度盐胁迫(150 mM NaCl)下根系中PtAKT1的转录水平在6-24 h内高于轻度盐条件(25 mM NaCl)下的根系。 ,整个治疗期间(6-96小时)的SA也是如此。在25或150 mM NaCl加KCl期间,根PtAKT1转录丰度与SA值之间存在很强的正相关。因此,提出在盐胁迫条件下,PtAKT1是调节藤黄假单胞菌对Na +选择性吸收K +的关键因素。最后,我们假设一个模型,即SOS1,HKT和SKOR协同调节木质部薄壁组织中的钾和钠转运系统,并随后通过位于表皮,皮层和内胚层的AKT1调节钾离子的吸收。该模型还可以为SOS1可以保护AKT1介导K?在盐胁迫期间大量涌入。

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