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Root K+ Acquisition in Plants: The Arabidopsis thaliana Model

机译:植物根系钾离子的获取:拟南芥模型

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K+ is an essential macronutrient required by plants to complete their life cycle. It fulfills important functions and it is widely used as a fertilizer to increase crop production. Thus, the identification of the systems involved in K+ acquisition by plants has always been a research goal as it may eventually produce molecular tools to enhance crop productivity further. This review is focused on the recent findings on the systems involved in K+ acquisition. From Epstein's pioneering work >40 years ago, K+ uptake was considered to consist of a high- and a low-affinity component. The subsequent molecular approaches identified genes encoding K+ transport systems which could be involved in the first step of K+ uptake at the plant root. Insights into the regulation of these genes and the proteins that they encode have also been gained in recent studies. A demonstration of the role of the two main K+ uptake systems at the root, AtHKA5 and AKT1, has been possible with the study of Arabidopsis thaliana T-DNA insertion lines that knock out these genes. AtHAK5 was revealed as the only uptake system at external concentrations 500 μM, AtHAK5 is not relevant and AKT1's contribution to K+ uptake becomes more important. At 10 mM K+, unidentified systems may provide sufficient K+ uptake for plant growth.
机译:K + 是植物完成生命周期所必需的重要常量营养素。它具有重要的功能,被广泛用作肥料以增加作物产量。因此,鉴定植物参与K + 所涉及的系统一直是研究的目标,因为它最终可能产生分子工具以进一步提高农作物的生产力。这篇综述的重点是与K + 采集有关的系统的最新发现。从40多年前的爱泼斯坦的开创性工作中,人们就认为K + 的吸收由高亲和力和低亲和力组成。随后的分子方法确定了编码K + 转运系统的基因,这些基因可能参与植物根部K + 吸收的第一步。最近的研究也获得了对这些基因及其编码的蛋白质的调控的见解。通过研究敲除这些基因的拟南芥T-DNA插入系,可能证明了根部两个主要的K + 吸收系统的作用。揭示了AtHAK5是唯一的外部浓度为500μM的摄取系统,与AtHAK5无关,而AKT1对K + 摄取的贡献变得更加重要。在10 mM K + 时,未确定的系统可能为植物生长提供足够的K + 吸收。

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