The twins K+ and Na+ in plants
In the earth's crust and in seawater, K+ and Na+ are by far the most available monovalent inorganic cations. Physico-chemically, K+ and Na+ are very similar, but K+ is widely used by plants whereas Na+ can easily reach toxic levels. Indeed, salinity is one of the major and growing threats to ag...
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Published in | Journal of plant physiology Vol. 171; no. 9; pp. 723 - 731 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Germany
Elsevier GmbH
15.05.2014
Elsevier |
Subjects | |
Online Access | Get full text |
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Abstract | In the earth's crust and in seawater, K+ and Na+ are by far the most available monovalent inorganic cations. Physico-chemically, K+ and Na+ are very similar, but K+ is widely used by plants whereas Na+ can easily reach toxic levels. Indeed, salinity is one of the major and growing threats to agricultural production. In this article, we outline the fundamental bases for the differences between Na+ and K+. We present the foundation of transporter selectivity and summarize findings on transporters of the HKT type, which are reported to transport Na+ and/or Na+ and K+, and may play a central role in Na+ utilization and detoxification in plants. Based on the structural differences in the hydration shells of K+ and Na+, and by comparison with sodium channels, we present an ad hoc mechanistic model that can account for ion permeation through HKTs. |
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AbstractList | In the earth's crust and in seawater, K+ and Na+ are by far the most available monovalent inorganic cations. Physico-chemically, K+ and Na+ are very similar, but K+ is widely used by plants whereas Na+ can easily reach toxic levels. Indeed, salinity is one of the major and growing threats to agricultural production. In this article, we outline the fundamental bases for the differences between Na+ and K+. We present the foundation of transporter selectivity and summarize findings on transporters of the HKT type, which are reported to transport Na+ and/or Na+ and K+, and may play a central role in Na+ utilization and detoxification in plants. Based on the structural differences in the hydration shells of K+ and Na+, and by comparison with sodium channels, we present an ad hoc mechanistic model that can account for ion permeation through HKTs. In the earth's crust and in seawater, K(+) and Na(+) are by far the most available monovalent inorganic cations. Physico-chemically, K(+) and Na(+) are very similar, but K(+) is widely used by plants whereas Na(+) can easily reach toxic levels. Indeed, salinity is one of the major and growing threats to agricultural production. In this article, we outline the fundamental bases for the differences between Na(+) and K(+). We present the foundation of transporter selectivity and summarize findings on transporters of the HKT type, which are reported to transport Na(+) and/or Na(+) and K(+), and may play a central role in Na(+) utilization and detoxification in plants. Based on the structural differences in the hydration shells of K(+) and Na(+), and by comparison with sodium channels, we present an ad hoc mechanistic model that can account for ion permeation through HKTs.In the earth's crust and in seawater, K(+) and Na(+) are by far the most available monovalent inorganic cations. Physico-chemically, K(+) and Na(+) are very similar, but K(+) is widely used by plants whereas Na(+) can easily reach toxic levels. Indeed, salinity is one of the major and growing threats to agricultural production. In this article, we outline the fundamental bases for the differences between Na(+) and K(+). We present the foundation of transporter selectivity and summarize findings on transporters of the HKT type, which are reported to transport Na(+) and/or Na(+) and K(+), and may play a central role in Na(+) utilization and detoxification in plants. Based on the structural differences in the hydration shells of K(+) and Na(+), and by comparison with sodium channels, we present an ad hoc mechanistic model that can account for ion permeation through HKTs. |
Author | Benito, Begoña Dreyer, Ingo Amtmann, Anna Haro, Rosario Cuin, Tracey Ann |
Author_xml | – sequence: 1 givenname: Begoña surname: Benito fullname: Benito, Begoña organization: Centro de Biotecnología y Genómica de Plantas, Universidad Politécnica de Madrid, Madrid, Spain – sequence: 2 givenname: Rosario surname: Haro fullname: Haro, Rosario organization: Centro de Biotecnología y Genómica de Plantas, Universidad Politécnica de Madrid, Madrid, Spain – sequence: 3 givenname: Anna surname: Amtmann fullname: Amtmann, Anna organization: Institute of Molecular, Cellular and Systems Biology (MCSB), College of Medical, Veterinary and Life Sciences (MVLS), University of Glasgow, Glasgow, UK – sequence: 4 givenname: Tracey Ann surname: Cuin fullname: Cuin, Tracey Ann organization: Biochimie et Physiologie Moléculaire des Plantes, Institut de Biologie Intégrative des Plantes, UMR 5004 CNRS/UMR 0386 INRA/Montpellier SupAgro/Université Montpellier 2, Montpellier, France – sequence: 5 givenname: Ingo surname: Dreyer fullname: Dreyer, Ingo email: ingo.dreyer@upm.es organization: Centro de Biotecnología y Genómica de Plantas, Universidad Politécnica de Madrid, Madrid, Spain |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/24810769$$D View this record in MEDLINE/PubMed https://hal.science/hal-01005911$$DView record in HAL |
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Keywords | HKT P Transport mechanism HAK Sodium Kup Ktr KT TM Trk Potassium |
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Snippet | In the earth's crust and in seawater, K+ and Na+ are by far the most available monovalent inorganic cations. Physico-chemically, K+ and Na+ are very similar,... In the earth's crust and in seawater, K(+) and Na(+) are by far the most available monovalent inorganic cations. Physico-chemically, K(+) and Na(+) are very... |
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SubjectTerms | Biological Transport cations HKT Life Sciences mechanistic models Plant Proteins - metabolism Plants - metabolism Potassium Potassium - metabolism salinity seawater Sodium Sodium - metabolism sodium channels Sodium-Potassium-Exchanging ATPase - metabolism Substrate Specificity toxicity Transport mechanism transporters Vegetal Biology |
Title | The twins K+ and Na+ in plants |
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