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Plant High-Affinity Potassium (HKT) Transporters Involved in Salinity Tolerance: Structural Insights to Probe Differences in Ion Selectivity

机译:植物高亲和力钾(HKT)转运蛋白涉及耐盐性:探究离子选择性差异的结构见解。

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摘要

High-affinity Potassium Transporters (HKTs) belong to an important class of integral membrane proteins (IMPs) that facilitate cation transport across the plasma membranes of plant cells. Some members of the HKT protein family have been shown to be critical for salinity tolerance in commercially important crop species, particularly in grains, through exclusion of Na+ ions from sensitive shoot tissues in plants. However, given the number of different HKT proteins expressed in plants, it is likely that different members of this protein family perform in a range of functions. Plant breeders and biotechnologists have attempted to manipulate HKT gene expression through genetic engineering and more conventional plant breeding methods to improve the salinity tolerance of commercially important crop plants. Successful manipulation of a biological trait is more likely to be effective after a thorough understanding of how the trait, genes and proteins are interconnected at the whole plant level. This article examines the current structural and functional knowledge relating to plant HKTs and how their structural features may explain their transport selectivity. We also highlight specific areas where new knowledge of plant HKT transporters is needed. Our goal is to present how knowledge of the structure of HKT proteins is helpful in understanding their function and how this understanding can be an invaluable experimental tool. As such, we assert that accurate structural information of plant IMPs will greatly inform functional studies and will lead to a deeper understanding of plant nutrition, signalling and stress tolerance, all of which represent factors that can be manipulated to improve agricultural productivity.
机译:高亲和力钾转运蛋白(HKT)属于一类重要的整体膜蛋白(IMP),可促进阳离子跨植物细胞质膜的转运。通过从植物的敏感芽组织中排除Na + 离子,已显示HKT蛋白家族的某些成员对于商业上重要的作物物种,特别是谷物中的盐分耐受性至关重要。但是,考虑到植物中表达的不同HKT蛋白质的数量,该蛋白质家族的不同成员可能在一系列功能中发挥作用。植物育种者和生物技术人员已尝试通过基因工程和更常规的植物育种方法来操纵HKT基因表达,以提高商业上重要的农作物的耐盐性。在全面了解性状,基因和蛋白质在整个植物水平上如何相互关联之后,成功地操纵生物性状更有可能是有效的。本文研究了有关植物HKT的当前结构和功能知识,以及它们的结构特征如何解释其运输选择性。我们还将重点介绍需要新的植物HKT转运蛋白知识的特定领域。我们的目标是介绍有关HKT蛋白结构的知识如何帮助他们理解其功能以及这种了解如何成为一种宝贵的实验工具。因此,我们认为准确的植物IMPS结构信息将大大有助于功能研究,并将使人们对植物营养,信号传导和胁迫耐受性有更深入的了解,所有这些都可以通过操纵来提高农业生产力。

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