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首页> 外文期刊>Molecular Plant >The Arabidopsis thaliana HAK5 K+ transporter is required for plant growth and K+ acquisition from low K+ solutions under saline conditions.
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The Arabidopsis thaliana HAK5 K+ transporter is required for plant growth and K+ acquisition from low K+ solutions under saline conditions.

机译:拟南芥 HAK5 K + 转运蛋白是植物生长和从低K + 解决方案中获取K + 溶液所必需的盐碱条件。

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摘要

K+ uptake in the high-affinity range of concentrations and its components have been widely studied. In Arabidopsis thaliana, the AtHAK5 transporter and the AtAKT1 channel have been shown to be the main transport proteins involved in this process. Here, we study the role of these two systems under two important stress conditions: low K+ supply or the presence of salinity. T-DNA insertion lines disrupting AtHAK5 and AtAKT1 are employed for long-term experiments that allow physiological characterization of the mutant lines. We found that AtHAK5 is required for K+ absorption necessary to sustain plant growth at low K+ in the absence as well as in the presence of salinity. Salinity greatly reduced AtHAK5 transcript levels and promoted AtAKT1-mediated K+ efflux, resulting in an important impairment of K+ nutrition. Although having a limited capacity, AtHAK5 plays a major role for K+ acquisition from low K+ concentrations in the presence of salinity.
机译:在高亲和力浓度范围内,K + 的吸收及其组分已被广泛研究。在拟南芥中,AtHAK5转运蛋白和AtAKT1通道已被证明是参与该过程的主要转运蛋白。在这里,我们研究这两个系统在两个重要压力条件下的作用:低K + 供给或盐度的存在。破坏 AtHAK5 和 AtAKT1 的T-DNA插入系用于长期实验,可以对突变株进行生理表征。我们发现,在缺乏盐分和盐分存在的情况下,AtHAK5都是必需的K + 吸收的必需元素,以维持植物在低K + 下的生长。盐度极大地降低了 AtHAK5 转录水平,并促进了AtAKT1介导的K + 外排,导致K + 营养严重受损。尽管容量有限,但是AtHAK5在盐分存在下从低K + 浓度获取K + 的过程中起着主要作用。

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