Skip to main content

Main menu

  • For Authors
    • Submit a Manuscript
    • Instructions for Authors
  • Home
  • Content
    • Current Issue
    • Archive
    • Preview Papers
    • Focus Collections
    • Classics Collection
    • Upcoming Focus Issues
  • Advertisers
  • About
    • About the Journal
    • Editorial Board and Staff
  • Subscribers
  • Librarians
  • More
    • Alerts
    • Contact Us
  • Other Publications
    • Plant Physiology
    • The Plant Cell
    • Plant Direct
    • The Arabidopsis Book
    • Plant Cell Teaching Tools
    • ASPB
    • Plantae

User menu

  • My alerts
  • Log in

Search

  • Advanced search
Plant Physiology
  • Other Publications
    • Plant Physiology
    • The Plant Cell
    • Plant Direct
    • The Arabidopsis Book
    • Plant Cell Teaching Tools
    • ASPB
    • Plantae
  • My alerts
  • Log in
Plant Physiology

Advanced Search

  • For Authors
    • Submit a Manuscript
    • Instructions for Authors
  • Home
  • Content
    • Current Issue
    • Archive
    • Preview Papers
    • Focus Collections
    • Classics Collection
    • Upcoming Focus Issues
  • Advertisers
  • About
    • About the Journal
    • Editorial Board and Staff
  • Subscribers
  • Librarians
  • More
    • Alerts
    • Contact Us
  • Follow plantphysiol on Twitter
  • Visit plantphysiol on Facebook
  • Visit Plantae
Research ArticleCELL BIOLOGY AND SIGNAL TRANSDUCTION
You have accessRestricted Access

The Arabidopsis HKT1 Gene Homolog Mediates Inward Na+ Currents in Xenopus laevis Oocytes and Na+ Uptake in Saccharomyces cerevisiae

Nobuyuki Uozumi, Eugene J. Kim, Francisco Rubio, Takao Yamaguchi, Shoshi Muto, Akio Tsuboi, Evert P. Bakker, Tatsunosuke Nakamura, Julian I. Schroeder
Nobuyuki Uozumi
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Eugene J. Kim
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Francisco Rubio
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Takao Yamaguchi
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Shoshi Muto
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Akio Tsuboi
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Evert P. Bakker
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Tatsunosuke Nakamura
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Julian I. Schroeder
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site

Published April 2000. DOI: https://doi.org/10.1104/pp.122.4.1249

  • Article
  • Figures & Data
  • Info & Metrics
  • PDF
Loading

Statistics from Altmetric.com

Article usage

Article usage: April 2000 to January 2021

AbstractFullPdf
Apr 2000599580
May 2000164816
Jun 2000134325
Jul 200063813
Aug 200032510
Sep 200092514
Oct 200063214
Nov 200044014
Dec 20004246
Jan 20019288
Feb 20015215
Mar 20017265
Apr 200192112
May 200172316
Jun 20012125
Jul 20011815
Aug 20019179
Sep 200122122
Oct 200111511
Nov 20010209
Dec 200122213
Jan 200252819
Feb 200262215
Mar 200261515
Apr 200292219
May 200231310
Jun 200222213
Jul 200272014
Aug 20023106
Sep 200251313
Oct 200242918
Nov 20023108
Dec 200231412
Jan 200361110
Feb 200331819
Mar 2003247
Apr 20035156
May 200361619
Jun 200361214
Jul 200362212
Aug 2003133016
Sep 2003101514
Oct 2003193014
Nov 2003192112
Dec 2003112213
Jan 2004152310
Feb 20045716
Mar 200493424
Apr 200482212
May 2004124517
Jun 200418285
Jul 2004163410
Aug 200427549
Sep 2004243110
Oct 200420306
Nov 2004224720
Dec 2004153110
Jan 20059238
Feb 2005234513
Mar 200581610
Apr 200591712
May 2005133114
Jun 200592824
Jul 2005232513
Aug 2005113011
Sep 20059176
Oct 2005233014
Nov 2005104126
Dec 200592322
Jan 200661915
Feb 20065197
Mar 200663719
Apr 2006111715
May 200613135
Jun 2006142120
Jul 200671010
Aug 2006131413
Sep 2006111413
Oct 200681312
Nov 200662915
Dec 20066216
Jan 2007161510
Feb 2007101712
Mar 200762112
Apr 2007172117
May 200791415
Jun 2007121510
Jul 2007122323
Aug 2007121811
Sep 20077108
Oct 2007182716
Nov 2007221010
Dec 2007111016
Jan 200812914
Feb 200821159
Mar 2008181214
Apr 2008211613
May 2008151610
Jun 2008201818
Jul 2008161120
Aug 2008322413
Sep 200840257
Oct 200831510
Nov 2008332222
Dec 2008312115
Jan 200928147
Feb 2009211212
Mar 200917911
Apr 200910713
May 2009171419
Jun 2009121312
Jul 200918913
Aug 2009661
Sep 200917137
Oct 200919813
Nov 200911711
Dec 20091079
Jan 2010161015
Feb 20108710
Mar 2010171311
Apr 2010291115
May 201017611
Jun 20107127
Jul 201014119
Aug 20101088
Sep 201018713
Oct 201017921
Nov 2010201212
Dec 201021916
Jan 2011351715
Feb 201127117
Mar 2011281916
Apr 2011231310
May 2011352222
Jun 2011282018
Jul 2011261515
Aug 2011171012
Sep 201127226
Oct 2011382524
Nov 2011351716
Dec 2011221411
Jan 2012241313
Feb 20121565
Mar 2012311415
Apr 2012542422
May 2012362924
Jun 201224308
Jul 2012432717
Aug 201223219
Sep 2012282213
Oct 2012221511
Nov 201239198
Dec 2012412912
Jan 2013532114
Feb 201336277
Mar 2013512323
Apr 2013342914
May 2013381925
Jun 201333189
Jul 201333209
Aug 2013211212
Sep 2013261714
Oct 2013551812
Nov 2013421818
Dec 2013391515
Jan 2014361215
Feb 2014341515
Mar 2014302722
Apr 2014346836
May 2014401511
Jun 2014293312
Jul 2014331510
Aug 201420109
Sep 2014301211
Oct 2014283220
Nov 2014362011
Dec 2014304915
Jan 201526299
Feb 201525368
Mar 201527227
Apr 2015352710
May 2015531810
Jun 2015261111
Jul 2015181016
Aug 201531265
Sep 201521287
Oct 201518268
Nov 2015331926
Dec 201541177
Jan 2016511928
Feb 2016451613
Mar 2016461524
Apr 2016311216
May 201629149
Jun 2016221610
Jul 2016221215
Aug 2016261412
Sep 2016191218
Oct 201621167
Nov 2016291520
Dec 201632208
Jan 201725145
Feb 2017201612
Mar 201725119
Apr 20171889
May 2017362216
Jun 201793618
Jul 2017132516
Aug 201782415
Sep 2017101114
Oct 2017101825
Nov 2017137712
Dec 2017633623
Jan 2018144211
Feb 2018611417
Mar 2018122413
Apr 201833441
May 201854723
Jun 201866618
Jul 201866011
Aug 2018116612
Sep 201863919
Oct 201875213
Nov 201866720
Dec 20187467
Jan 2019918514
Feb 201973925
Mar 20191511526
Apr 20191012915
May 2019711315
Jun 2019106013
Jul 20191917815
Aug 201942859
Sep 2019526711
Oct 2019631818
Nov 201961909
Dec 2019512119
Jan 202011226
Feb 2020171611
Mar 20200156
Apr 20206215
May 202062413
Jun 202091112
Jul 20208167
Aug 202081511
Sep 202064123
Oct 20208282
Nov 2020106916
Dec 2020124815
Jan 202163111

Author Information

  1. Nobuyuki Uozumi1,2,3,
  2. Eugene J. Kim2,
  3. Francisco Rubio2,2,
  4. Takao Yamaguchi3,
  5. Shoshi Muto1,3,
  6. Akio Tsuboi4,
  7. Evert P. Bakker5,
  8. Tatsunosuke Nakamura6 and
  9. Julian I. Schroeder2
  1. 1 Bioscience Center, Nagoya University, Nagoya, 464–8601, Japan (N.U., S.M.);
  2. 2 Department of Biology and Center for Molecular Genetics, University of California at San Diego, La Jolla, California 92093–0116 (N.U., E.J.K., F.R., J.I.S.);
  3. 3 Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, 464–8601, Japan (N.U., T.Y., S.M.);
  4. 4 Department of Biophysics and Biochemistry, Graduate School of Science, University of Tokyo, 7–3–1 Hongo, Bunkyo-ku, Tokyo 113, Japan (A.T.);
  5. 5 Abteilung Mikrobiologie, Universität Osnabrück, Barbarastrasse 11, D–49076 Osnabrück, Germany (E.P.B.); and
  6. 6 Faculty of Pharmaceutical Sciences, Chiba University, 1–33 Yayoi-cho, Inage-ku, Chiba 263–8522, Japan (T.N.)
View Full Text

Cited By...

  • 302 Citations
  • 283 Citations
  • Google Scholar

This article has been cited by the following articles in journals that are participating in Crossref Cited-by Linking.

  • Mechanisms of Salinity Tolerance
    Rana Munns, Mark Tester
    Annual Review of Plant Biology 2008 59 1
  • SALT ANDDROUGHTSTRESSSIGNALTRANSDUCTION INPLANTS
    Jian-Kang Zhu
    Annual Review of Plant Biology 2002 53 1
  • Cold, salinity and drought stresses: An overview
    Shilpi Mahajan, Narendra Tuteja
    Archives of Biochemistry and Biophysics 2005 444 2
  • Regulation of ion homeostasis under salt stress
    Jian-Kang Zhu
    Current Opinion in Plant Biology 2003 6 5
  • A rice quantitative trait locus for salt tolerance encodes a sodium transporter
    Zhong-Hai Ren, Ji-Ping Gao, Le-Gong Li, Xiu-Ling Cai, Wei Huang, Dai-Yin Chao, Mei-Zhen Zhu, Zong-Yang Wang, Sheng Luan, Hong-Xuan Lin
    Nature Genetics 2005 37 10
  • Plant salt-tolerance mechanisms
    Ulrich Deinlein, Aaron B. Stephan, Tomoaki Horie, Wei Luo, Guohua Xu, Julian I. Schroeder
    Trends in Plant Science 2014 19 6
  • Potassium transport and plant salt tolerance
    Sergey Shabala, Tracey A. Cuin
    Physiologia Plantarum 2008 133 4
  • Understanding and Improving Salt Tolerance in Plants
    Viswanathan Chinnusamy, André Jagendorf, Jian-Kang Zhu
    Crop Science 2005 45 2
  • Wheat grain yield on saline soils is improved by an ancestral Na+ transporter gene
    Rana Munns, Richard A James, Bo Xu, Asmini Athman, Simon J Conn, Charlotte Jordans, Caitlin S Byrt, Ray A Hare, Stephen D Tyerman, Mark Tester, Darren Plett, Matthew Gilliham
    Nature Biotechnology 2012 30 4
  • Enhanced salt tolerance mediated by AtHKT1 transporter-induced Na+ unloading from xylem vessels to xylem parenchyma cells
    Sunarpi, Tomoaki Horie, Jo Motoda, Masahiro Kubo, Hua Yang, Kinya Yoda, Rie Horie, Wai-Yin Chan, Ho-Yin Leung, Kazumi Hattori, Mami Konomi, Masako Osumi, Mutsumi Yamagami, Julian I. Schroeder, Nobuyuki Uozumi
    The Plant Journal 2005 44 6
  • MOLECULARMECHANISMS ANDREGULATION OFK+TRANSPORT INHIGHERPLANTS
    Anne-Aliénor Véry, Hervé Sentenac
    Annual Review of Plant Biology 2003 54 1
  • High-efficiency thermal asymmetric interlaced PCR for amplification of unknown flanking sequences
    Yao-Guang Liu, Yuanling Chen
    BioTechniques 2007 43 5
  • Recent developments in understanding salinity tolerance
    Ismail Türkan, Tijen Demiral
    Environmental and Experimental Botany 2009 67 1
  • AtHKT1 is a salt tolerance determinant that controls Na+ entry into plant roots
    A. Rus, S. Yokoi, A. Sharkhuu, M. Reddy, B.-h. Lee, T. K. Matsumoto, H. Koiwa, J.-K. Zhu, R. A. Bressan, P. M. Hasegawa
    Proceedings of the National Academy of Sciences 2001 98 24
  • The Na+transporter AtHKT1;1 controls retrieval of Na+from the xylem in Arabidopsis
    ROMOLA JANE DAVENPORT, ALICIA MUÑOZ-MAYOR, DEEPA JHA, PAULINE ADOBEA ESSAH, ANA RUS, MARK TESTER
    Plant, Cell & Environment 2007 30 4
  • A conserved primary salt tolerance mechanism mediated by HKT transporters: a mechanism for sodium exclusion and maintenance of high K+/Na+ratio in leaves during salinity stress
    FELIX HAUSER, TOMOAKI HORIE
    Plant, Cell & Environment 2010 33 4
  • Soil Bacteria Confer Plant Salt Tolerance by Tissue-Specific Regulation of the Sodium Transporter HKT1
    Huiming Zhang, Mi-Seong Kim, Yan Sun, Scot E. Dowd, Huazhong Shi, Paul W. Paré
    Molecular Plant-Microbe Interactions® 2008 21 6
  • HKT transporter-mediated salinity resistance mechanisms in Arabidopsis and monocot crop plants
    Tomoaki Horie, Felix Hauser, Julian I. Schroeder
    Trends in Plant Science 2009 14 12
  • Engineering salt tolerance in plants
    Maris P Apse, Eduardo Blumwald
    Current Opinion in Biotechnology 2002 13 2
  • NONSELECTIVECATIONCHANNELS INPLANTS
    Vadim Demidchik, Romola Jane Davenport, Mark Tester
    Annual Review of Plant Biology 2002 53 1
  • Gene Expression Profiling of Plants under Salt Stress
    A. Jamil, S. Riaz, M. Ashraf, M. R. Foolad
    Critical Reviews in Plant Sciences 2011 30 5
  • Sodium transport and HKT transporters: the rice model
    Blanca Garciadeblás, María E. Senn, María A. Bañuelos, Alonso Rodríguez-Navarro
    The Plant Journal 2003 34 6
  • Altered shoot/root Na+ distribution and bifurcating salt sensitivity in Arabidopsis by genetic disruption of the Na+ transporter AtHKT1
    Pascal Mäser, Brendan Eckelman, Rama Vaidyanathan, Tomoaki Horie, David J Fairbairn, Masahiro Kubo, Mutsumi Yamagami, Katsushi Yamaguchi, Mikio Nishimura, Nobuyuki Uozumi, Whitney Robertson, Michael R Sussman, Julian I Schroeder
    FEBS Letters 2002 531 2
  • Plant Ion Channels: Gene Families, Physiology, and Functional Genomics Analyses
    John M. Ward, Pascal Mäser, Julian I. Schroeder
    Annual Review of Physiology 2009 71 1
  • Sodium transport in plants: a critical review
    Herbert J. Kronzucker, Dev T. Britto
    New Phytologist 2011 189 1
  • Threonine at position 306 of the KAT1 potassium channel is essential for channel activity and is a target site for ABA-activated SnRK2/OST1/SnRK2.6 protein kinase
    Aiko Sato, Yuki Sato, Yoichiro Fukao, Masayuki Fujiwara, Taishi Umezawa, Kazuo Shinozaki, Takao Hibi, Mitsutaka Taniguchi, Hiroshi Miyake, Derek B. Goto, Nobuyuki Uozumi
    Biochemical Journal 2009 424 3
  • Sodium (Na+) homeostasis and salt tolerance of plants
    Paul M. Hasegawa
    Environmental and Experimental Botany 2013 92
  • Nomenclature for HKT transporters, key determinants of plant salinity tolerance
    J. Damien Platten, Olivier Cotsaftis, Pierre Berthomieu, Hans Bohnert, Romola J. Davenport, David J. Fairbairn, Tomoaki Horie, Roger A. Leigh, Hong-Xuan Lin, Sheng Luan, Pascal Mäser, Omar Pantoja, Alonso Rodríguez-Navarro, Daniel P. Schachtman, Julian I. Schroeder, Hervé Sentenac, Nobuyuki Uozumi, Anne-Aliénor Véry, Jian-Kang Zhu, Elizabeth S. Dennis, Mark Tester
    Trends in Plant Science 2006 11 8
  • Potassium transporters in plants - Involvement in K+acquisition, redistribution and homeostasis
    Markus Gierth, Pascal Mäser
    FEBS Letters 2007 581 12
  • Transcriptome analysis of root transporters reveals participation of multiple gene families in the response to cation stress
    Frans J. M. Maathuis, Victor Filatov, Pawel Herzyk, Gerard C. Krijger, Kristian B. Axelsen, Sixue Chen, Brian J. Green, Yi Li, Kathryn L. Madagan, Rocío Sánchez-Fernández, Brian G. Forde, Michael G. Palmgren, Philip A. Rea, Lorraine E. Williams, Dale Sanders, Anna Amtmann
    The Plant Journal 2003 35 6
  • Rice OsHKT2;1 transporter mediates large Na+ influx component into K+-starved roots for growth
    Tomoaki Horie, Alex Costa, Tae Houn Kim, Min Jung Han, Rie Horie, Ho-Yin Leung, Akio Miyao, Hirohiko Hirochika, Gynheung An, Julian I Schroeder
    The EMBO Journal 2007 26 12
  • Two types of HKT transporters with different properties of Na+ and K+ transport in Oryza sativa
    Tomoaki Horie, Kazuya Yoshida, Hideki Nakayama, Katsuyuki Yamada, Shigetoshi Oiki, Atsuhiko Shinmyo
    The Plant Journal 2001 27 2
  • Genetic and genomic approaches to develop rice germplasm for problem soils
    Abdelbagi M. Ismail, Sigrid Heuer, Michael J. Thomson, Matthias Wissuwa
    Plant Molecular Biology 2007 65 4
  • Plant Responses to Drought and Salinity Stress - Developments in a Post-Genomic Era
    Sergey Shabala, Alex Mackay
    2011 57
  • Genes Essential to Sodium-dependent Bicarbonate Transport in Cyanobacteria
    Mari Shibata, Hirokazu Katoh, Masatoshi Sonoda, Hiroshi Ohkawa, Masaya Shimoyama, Hideya Fukuzawa, Aaron Kaplan, Teruo Ogawa
    Journal of Biological Chemistry 2002 277 21
  • Ion homeostasis during salt stress in plants
    Ramón Serrano, Alonso Rodriguez-Navarro
    Current Opinion in Cell Biology 2001 13 4
  • Glycine residues in potassium channel-like selectivity filters determine potassium selectivity in four-loop-per-subunit HKT transporters from plants
    P. Maser, Y. Hosoo, S. Goshima, T. Horie, B. Eckelman, K. Yamada, K. Yoshida, E. P. Bakker, A. Shinmyo, S. Oiki, J. I. Schroeder, N. Uozumi
    Proceedings of the National Academy of Sciences 2002 99 9
  • ABA control of plant macroelement membrane transport systems in response to water deficit and high salinity
    Yuriko Osakabe, Kazuko Yamaguchi-Shinozaki, Kazuo Shinozaki, Lam-Son Phan Tran
    New Phytologist 2014 202 1
  • A role for HKT1 in sodium uptake by wheat roots
    Sophie Laurie, Kevin A. Feeney, Frans J. M. Maathuis, Peter J. Heard, Sherralyn J. Brown, Roger A. Leigh
    The Plant Journal 2002 32 2
  • Membrane Transport, Sensing and Signaling in Plant Adaptation to Environmental Stress
    A. Conde, M. M. Chaves, H. Geros
    Plant and Cell Physiology 2011 52 9
  • K+ transport in plants: Physiology and molecular biology
    Mark W. Szczerba, Dev T. Britto, Herbert J. Kronzucker
    Journal of Plant Physiology 2009 166 5
  • Genetic Engineering
    Viswanathan Chinnusamy, Jianhua Zhu, Jian-Kang Zhu
    2006 27
  • Potassium and sodium transport in non-animal cells: the Trk/Ktr/HKT transporter family
    C. Corratgé-Faillie, M. Jabnoune, S. Zimmermann, A.-A. Véry, C. Fizames, H. Sentenac
    Cellular and Molecular Life Sciences 2010 67 15
  • Salinity tolerance mechanisms in glycophytes: An overview with the central focus on rice plants
    Tomoaki Horie, Ichirou Karahara, Maki Katsuhara
    Rice 2012 5 1
  • Molecular biology of K+ transport across the plant cell membrane: What do we learn from comparison between plant species?
    Anne-Aliénor Véry, Manuel Nieves-Cordones, Meriem Daly, Imran Khan, Cécile Fizames, Hervé Sentenac
    Journal of Plant Physiology 2014 171 9
  • Potassium channels in plant cells
    Ingo Dreyer, Nobuyuki Uozumi
    FEBS Journal 2011 278 22
  • Mechanisms of sodium uptake by roots of higher plants
    Jin-Lin Zhang, Timothy J. Flowers, Suo-Min Wang
    Plant and Soil 2010 326 1-2
  • Differential responses of maize MIP genes to salt stress and ABA
    Chuanfeng Zhu, Daniela Schraut, Wolfram Hartung, Anton R. Schäffner
    Journal of Experimental Botany 2005 56 421
  • Genomics, Physiology, and Molecular Breeding Approaches for Improving Salt Tolerance
    Abdelbagi M. Ismail, Tomoaki Horie
    Annual Review of Plant Biology 2017 68 1
  • The twins K+ and Na+ in plants
    Begoña Benito, Rosario Haro, Anna Amtmann, Tracey Ann Cuin, Ingo Dreyer
    Journal of Plant Physiology 2014 171 9
  • Root Development and Nutrient Uptake
    H. Wang, Y. Inukai, A. Yamauchi
    Critical Reviews in Plant Sciences 2006 25 3
  • Root K+ Acquisition in Plants: The Arabidopsis thaliana Model
    F. Aleman, M. Nieves-Cordones, V. Martinez, F. Rubio
    Plant and Cell Physiology 2011 52 9
  • Potassium nutrition, sodium toxicity, and calcium signaling: connections through the CBL–CIPK network
    Sheng Luan, Wenzhi Lan, Sung Chul Lee
    Current Opinion in Plant Biology 2009 12 3
  • Understanding Abiotic Stress Tolerance Mechanisms: Recent Studies on Stress Response in Rice
    Ji-Ping Gao, Dai-Yin Chao, Hong-Xuan Lin
    Journal of Integrative Plant Biology 2007 49 6
  • Characterization of a HKT-type transporter in rice as a general alkali cation transporter
    Dortje Golldack, Hua Su, Francoise Quigley, Uma R. Kamasani, Carlos Muñoz-Garay, Enrique Balderas, Olga V. Popova, John Bennett, Hans J. Bohnert, Omar Pantoja
    The Plant Journal 2002 31 4
  • Evidence in support of a four transmembrane-pore-transmembrane topology model for the Arabidopsis thaliana Na+/K+ translocating AtHKT1 protein, a member of the superfamily of K+ transporters
    Y. Kato, M. Sakaguchi, Y. Mori, K. Saito, T. Nakamura, E. P. Bakker, Y. Sato, S. Goshima, N. Uozumi
    Proceedings of the National Academy of Sciences 2001 98 11
  • Rice K+ uptake channel OsAKT1 is sensitive to salt stress
    Ines Fuchs, Sonja Stölzle, Natalya Ivashikina, Rainer Hedrich
    Planta 2005 221 2
  • Smart Engineering of Genetic Resources for Enhanced Salinity Tolerance in Crop Plants
    A. Arzani, M. Ashraf
    Critical Reviews in Plant Sciences 2016 35 3
  • The Na+transporter, TaHKT1;5-D, limits shoot Na+accumulation in bread wheat
    Caitlin Siobhan Byrt, Bo Xu, Mahima Krishnan, Damien James Lightfoot, Asmini Athman, Andrew Keith Jacobs, Nathan S. Watson-Haigh, Darren Plett, Rana Munns, Mark Tester, Matthew Gilliham
    The Plant Journal 2014 80 3
  • AtSWEET13 and AtSWEET14 regulate gibberellin-mediated physiological processes
    Yuri Kanno, Takaya Oikawa, Yasutaka Chiba, Yasuhiro Ishimaru, Takafumi Shimizu, Naoto Sano, Tomokazu Koshiba, Yuji Kamiya, Minoru Ueda, Mitsunori Seo
    Nature Communications 2016 7 1
  • Uptake of sodium in protoplasts of salt-sensitive and salt-tolerant cultivars of rice, Oryza sativa L. determined by the fluorescent dye SBFI
    Md. Abdul Kader, Sylvia Lindberg
    Journal of Experimental Botany 2005 56 422
  • Evaluation of salinity tolerance and analysis of allelic function of HvHKT1 and HvHKT2 in Tibetan wild barley
    Long Qiu, Dezhi Wu, Shafaqat Ali, Shengguan Cai, Fei Dai, Xiaoli Jin, Feibo Wu, Guoping Zhang
    Theoretical and Applied Genetics 2011 122 4
  • HKT transporters mediate salt stress resistance in plants: from structure and function to the field
    Shin Hamamoto, Tomoaki Horie, Felix Hauser, Ulrich Deinlein, Julian I Schroeder, Nobuyuki Uozumi
    Current Opinion in Biotechnology 2015 32
  • New allelic variants found in key rice salt-tolerance genes: an association study
    Sónia Negrão, M. Cecília Almadanim, Inês S. Pires, Isabel A. Abreu, João Maroco, Brigitte Courtois, Glenn B. Gregorio, Kenneth L. McNally, M. Margarida Oliveira
    Plant Biotechnology Journal 2013 11 1
  • The Na+-dependence of alkaliphily in Bacillus
    Terry A. Krulwich, Masahiro Ito, Arthur A. Guffanti
    Biochimica et Biophysica Acta (BBA) - Bioenergetics 2001 1505 1
  • Type-B response regulators ARR1 and ARR12 regulate expression of AtHKT1;1 and accumulation of sodium in Arabidopsis shoots
    Michael G. Mason, Deepa Jha, David E. Salt, Mark Tester, Kristine Hill, Joseph J. Kieber, G. Eric Schaller
    The Plant Journal 2010 64 5
  • The jasmonate-responsive GTR1 transporter is required for gibberellin-mediated stamen development in Arabidopsis
    Hikaru Saito, Takaya Oikawa, Shin Hamamoto, Yasuhiro Ishimaru, Miyu Kanamori-Sato, Yuko Sasaki-Sekimoto, Tomoya Utsumi, Jing Chen, Yuri Kanno, Shinji Masuda, Yuji Kamiya, Mitsunori Seo, Nobuyuki Uozumi, Minoru Ueda, Hiroyuki Ohta
    Nature Communications 2015 6 1
  • OsHKT1;5 mediates Na + exclusion in the vasculature to protect leaf blades and reproductive tissues from salt toxicity in rice
    Natsuko I. Kobayashi, Naoki Yamaji, Hiroki Yamamoto, Kaoru Okubo, Hiroki Ueno, Alex Costa, Keitaro Tanoi, Hideo Matsumura, Miho Fujii‐Kashino, Tomoki Horiuchi, Mohammad Al Nayef, Sergey Shabala, Gynheung An, Jian Feng Ma, Tomoaki Horie
    The Plant Journal 2017 91 4
  • Effects of salt and alkali stresses on germination, growth, photosynthesis and ion accumulation in alfalfa (Medicago sativaL.)
    Ruili LI, Fuchen SHI, Kenji FUKUDA, Yongli YANG
    Soil Science and Plant Nutrition 2010 56 5
  • The CBL–CIPK network mediates different signaling pathways in plants
    Qinyang Yu, Lijia An, Wenli Li
    Plant Cell Reports 2014 33 2
  • Two closely linked tomato HKT coding genes are positional candidates for the major tomato QTL involved in Na+/K+homeostasis
    MARIA JOSÉ ASINS, IRENE VILLALTA, MOHAMED M. ALY, RAQUEL OLÍAS, PAZ ÁLVAREZ DE MORALES, RAÚL HUERTAS, JUN LI, NOELIA JAIME-PÉREZ, ROSARIO HARO, VERÓNICA RAGA, EMILIO A. CARBONELL, ANDRÉS BELVER
    Plant, Cell & Environment 2013 36 6
  • OsHKT1;4-mediated Na+ transport in stems contributes to Na+ exclusion from leaf blades of rice at the reproductive growth stage upon salt stress
    Kei Suzuki, Naoki Yamaji, Alex Costa, Eiji Okuma, Natsuko I. Kobayashi, Tatsuhiko Kashiwagi, Maki Katsuhara, Cun Wang, Keitaro Tanoi, Yoshiyuki Murata, Julian I. Schroeder, Jian Feng Ma, Tomoaki Horie
    BMC Plant Biology 2016 16 1
  • Na+-dependent K+ Uptake Ktr System from the Cyanobacterium Synechocystis sp. PCC 6803 and Its Role in the Early Phases of Cell Adaptation to Hyperosmotic Shock
    Nobuyuki Matsuda, Hiroshi Kobayashi, Hirokazu Katoh, Teruo Ogawa, Lui Futatsugi, Tatsunosuke Nakamura, Evert P. Bakker, Nobuyuki Uozumi
    Journal of Biological Chemistry 2004 279 52
  • OsJAZ9 acts as a transcriptional regulator in jasmonate signaling and modulates salt stress tolerance in rice
    Hua Wu, Haiyan Ye, Ruifeng Yao, Tao Zhang, Lizhong Xiong
    Plant Science 2015 232
  • A rice high-affinity potassium transporter (HKT) conceals a calcium-permeable cation channel
    W.-Z. Lan, W. Wang, S.-M. Wang, L.-G. Li, B. B. Buchanan, H.-X. Lin, J.-P. Gao, S. Luan
    Proceedings of the National Academy of Sciences 2010 107 15
  • Comparative Functional Features of Plant Potassium HvHAK1 and HvHAK2 Transporters
    Marı́a E. Senn, Francisco Rubio, Marı́a A. Bañuelos, Alonso Rodrı́guez-Navarro
    Journal of Biological Chemistry 2001 276 48
  • HKT Transporters—State of the Art
    Pedro Almeida, Diana Katschnig, Albertus de Boer
    International Journal of Molecular Sciences 2013 14 10
  • Plant High-Affinity Potassium (HKT) Transporters Involved in Salinity Tolerance: Structural Insights to Probe Differences in Ion Selectivity
    Shane Waters, Matthew Gilliham, Maria Hrmova
    International Journal of Molecular Sciences 2013 14 4
  • Translating knowledge about abiotic stress tolerance to breeding programmes
    Matthew Gilliham, Jason A. Able, Stuart J. Roy
    The Plant Journal 2017 90 5
  • All Four Putative Selectivity Filter Glycine Residues in KtrB Are Essential for High Affinity and Selective K+ Uptake by the KtrAB System from Vibrio alginolyticus
    Nancy Tholema, Marc Vor der Brüggen, Pascal Mäser, Tatsunosuke Nakamura, Julian I. Schroeder, Hiroshi Kobayashi, Nobuyuki Uozumi, Evert P. Bakker
    Journal of Biological Chemistry 2005 280 50
  • SsHKT1;1 is a potassium transporter of the C3 halophyte Suaeda salsa that is involved in salt tolerance
    Qun Shao, Ning Han, Tonglou Ding, Feng Zhou, Baoshan Wang
    Functional Plant Biology 2014 41 8
  • A retrotransposon in an HKT1 family sodium transporter causes variation of leaf Na+exclusion and salt tolerance in maize
    Ming Zhang, Yibo Cao, Zhiping Wang, Zhi-qiang Wang, Junpeng Shi, Xiaoyan Liang, Weibin Song, Qijun Chen, Jinsheng Lai, Caifu Jiang
    New Phytologist 2018 217 3
  • Microarray-based rapid cloning of an ion accumulation deletion mutant in Arabidopsis thaliana
    J.-M. Gong, D. A. Waner, T. Horie, S. L. Li, R. Horie, K. B. Abid, J. I. Schroeder
    Proceedings of the National Academy of Sciences 2004 101 43
  • Plants pass the salt
    John M. Ward, Kendal D. Hirschi, Heven Sze
    Trends in Plant Science 2003 8 5
  • Calcium Regulation of Sodium Hypersensitivities of sos3 and athkt1 Mutants
    Tomoaki Horie, Rie Horie, Wai-Yin Chan, Ho-Yin Leung, Julian I. Schroeder
    Plant and Cell Physiology 2006 47 5
  • HKT2;2/1, a K+-permeable transporter identified in a salt-tolerant rice cultivar through surveys of natural genetic polymorphism
    Ronald J.F.J. Oomen, Begoña Benito, Hervé Sentenac, Alonso Rodríguez-Navarro, Manuel Talón, Anne-Aliénor Véry, Concha Domingo
    The Plant Journal 2012 71 5
  • Molecular analysis of the mechanism of potassium uptake through the TRK1 transporter of Saccharomyces cerevisiae
    Rosario Haro, Alonso Rodrı́guez-Navarro
    Biochimica et Biophysica Acta (BBA) - Biomembranes 2002 1564 1
  • Plant Salt Stress: Adaptive Responses, Tolerance Mechanism and Bioengineering for Salt Tolerance
    Niramaya S. Muchate, Ganesh C. Nikalje, Nilima S. Rajurkar, P. Suprasanna, Tukaram D. Nikam
    The Botanical Review 2016 82 4
  • Exogenous hydrogen sulfide alleviates salt stress in wheat seedlings by decreasing Na+ content
    Yun-Quan Deng, Jing Bao, Fang Yuan, Xue Liang, Zhong-Tao Feng, Bao-Shan Wang
    Plant Growth Regulation 2016 79 3
  • Potassium-sodium interactions in soil and plant under saline-sodic conditions
    Abdul Wakeel
    Journal of Plant Nutrition and Soil Science 2013 176 3
  • Salt stress affects xylem differentiation of grey poplar (Populus × canescens)
    María Escalante-Pérez, Silke Lautner, Uwe Nehls, Anita Selle, Markus Teuber, Jörg-Peter Schnitzler, Thomas Teichmann, Payam Fayyaz, Wolfram Hartung, Andrea Polle, Jörg Fromm, Rainer Hedrich, Peter Ache
    Planta 2009 229 2
  • Salt-dependent regulation of chloride channel transcripts in rice
    C.J. Diédhiou, D. Golldack
    Plant Science 2006 170 4
  • Overexpression of MdSOS2L1, a CIPK protein kinase, increases the antioxidant metabolites to enhance salt tolerance in apple and tomato
    Da-Gang Hu, Qi-Jun Ma, Cui-Hui Sun, Mei-Hong Sun, Chun-Xiang You, Yu-Jin Hao
    Physiologia Plantarum 2016 156 2
  • Ksouri Riadh, Megdiche Wided, Koyro Hans-Werner, Abdelly Chedly
    2010 53
  • Genome-wide analysis and identification of genes related to potassium transporter families in rice (Oryza sativa L.)
    R. Naga Amrutha, P. Nataraj Sekhar, Rajeev K. Varshney, P.B. Kavi Kishor
    Plant Science 2007 172 4
  • A novel protein kinase involved in Na+exclusion revealed from positional cloning
    S. J. ROY, W. HUANG, X. J. WANG, A. EVRARD, S. M. SCHMÖCKEL, Z. U. ZAFAR, M. TESTER
    Plant, Cell & Environment 2013 36 3
  • Arabidopsis–rice–wheat gene orthologues for Na+ transport and transcript analysis in wheat–L. elongatum aneuploids under salt stress
    Daniel J. Mullan, Timothy D. Colmer, Michael G. Francki
    Molecular Genetics and Genomics 2007 277 2
  • AtHKT1;1 Mediates Nernstian Sodium Channel Transport Properties in Arabidopsis Root Stelar Cells
    Shaowu Xue, Xuan Yao, Wei Luo, Deepa Jha, Mark Tester, Tomoaki Horie, Julian I. Schroeder, Ivan Baxter
    PLoS ONE 2011 6 9
  • Physiology and Molecular Biology of Stress Tolerance in Plants
    ZORA DAJIC
    2006
  • Non-reciprocal interactions between K+ and Na+ ions in barley (Hordeum vulgare L.)
    H. J. Kronzucker, M. W. Szczerba, L. M. Schulze, D. T. Britto
    Journal of Experimental Botany 2008 59 10
  • De Novo Assembly of the Perennial Ryegrass Transcriptome Using an RNA-Seq Strategy
    Jacqueline D. Farrell, Stephen Byrne, Cristiana Paina, Torben Asp, Cynthia Gibas
    PLoS ONE 2014 9 8
  • Potassium/sodium steady-state homeostasis in Thellungiella halophila and Arabidopsis thaliana under long-term salinity conditions
    Fernando Alemán, Manuel Nieves-Cordones, Vicente Martínez, Francisco Rubio
    Plant Science 2009 176 6
  • Increased tolerance to salt stress in the phosphate-accumulating Arabidopsis mutants siz1 and pho2
    Kenji Miura, Aiko Sato, Masaru Ohta, Jun Furukawa
    Planta 2011 234 6
  • Salt Tolerance
    Liming Xiong, Jian-Kang Zhu
    The Arabidopsis Book 2002 1
  • Chloride Channel Function in the Yeast TRK-Potassium Transporters
    T. Kuroda, H. Bihler, E. Bashi, C. L. Slayman, A. Rivetta
    Journal of Membrane Biology 2004 198 3
  • Characterization of Ion Contents and Metabolic Responses to Salt Stress of Different Arabidopsis AtHKT1;1 Genotypes and Their Parental Strains
    Camilla B. Hill, Deepa Jha, Antony Bacic, Mark Tester, Ute Roessner
    Molecular Plant 2013 6 2
  • Mechanisms of Sodium Transport in Plants—Progresses and Challenges
    Monika Keisham, Soumya Mukherjee, Satish Bhatla
    International Journal of Molecular Sciences 2018 19 3
  • Osmoregulation in Plants: Implications for Agriculture1
    John C. Cushman
    American Zoologist 2001 41 4
  • SbHKT1;4 , a member of the high-affinity potassium transporter gene family from Sorghum bicolor , functions to maintain optimal Na+ /K+ balance under Na+ stress
    Tian-Tian Wang, Zhi-Jie Ren, Zhi-Quan Liu, Xue Feng, Rui-Qi Guo, Bao-Guo Li, Le-Gong Li, Hai-Chun Jing
    Journal of Integrative Plant Biology 2014 56 3
  • Molecular and Functional Characterization of a Na+-K+ Transporter from the Trk Family in the Ectomycorrhizal Fungus Hebeloma cylindrosporum
    Claire Corratgé, Sabine Zimmermann, Raphaël Lambilliotte, Claude Plassard, Roland Marmeisse, Jean-Baptiste Thibaud, Benoît Lacombe, Hervé Sentenac
    Journal of Biological Chemistry 2007 282 36
  • Regulation of K+ Nutrition in Plants
    Paula Ragel, Natalia Raddatz, Eduardo O. Leidi, Francisco J. Quintero, José M. Pardo
    Frontiers in Plant Science 2019 10
  • Targeted association analysis identified japonica rice varieties achieving Na+/K+ homeostasis without the allelic make-up of the salt tolerant indica variety Nona Bokra
    N. Ahmadi, S. Negrão, D. Katsantonis, J. Frouin, J. Ploux, P. Letourmy, G. Droc, P. Babo, H. Trindade, G. Bruschi, R. Greco, M. M. Oliveira, P. Piffanelli, B. Courtois
    Theoretical and Applied Genetics 2011 123 6
  • Partitioning of nutrient transport processes in roots
    Mark Tester, Roger A. Leigh
    Journal of Experimental Botany 2001 52 suppl_1
  • Potassium Retention under Salt Stress Is Associated with Natural Variation in Salinity Tolerance among Arabidopsis Accessions
    Yanling Sun, Xiangpei Kong, Cuiling Li, Yongxiu Liu, Zhaojun Ding, Keith R. Davis
    PLOS ONE 2015 10 5
  • Unraveling salt tolerance in crops
    Ana M Rus, Ray A Bressan, Paul M Hasegawa
    Nature Genetics 2005 37 10
  • Cloning and functional analysis of the K+ transporter, PhaHAK2, from salt-sensitive and salt-tolerant reed plants
    Ryuichi Takahashi, Takayoshi Nishio, Nobumasa Ichizen, Tetsuo Takano
    Biotechnology Letters 2007 29 3
  • Escherichia colias an expression system for K+transport systems from plants
    Nobuyuki Uozumi
    American Journal of Physiology-Cell Physiology 2001 281 3
  • Physiological and molecular aspects of salt stress in plants
    S. V. Isayenkov
    Cytology and Genetics 2012 46 5
  • Identification of TaWD40D, a wheat WD40 repeat-containing protein that is associated with plant tolerance to abiotic stresses
    Dejing Kong, Mengjun Li, Zhanghui Dong, Hongtao Ji, Xia Li
    Plant Cell Reports 2015 34 3
  • Transcript profiling of the salt-tolerant Festuca rubra ssp. litoralis reveals a regulatory network controlling salt acclimatization
    Calliste J. Diédhiou, Olga V. Popova, Dortje Golldack
    Journal of Plant Physiology 2009 166 7
  • Model of Cation Transportation Mediated by High-Affinity Potassium Transporters (HKTs) in Higher Plants
    Yi Su, Weigui Luo, Wanhuang Lin, Liying Ma, Mohammed Hunayun Kabir
    Biological Procedures Online 2015 17 1
  • THE ROLE OF CALCIUM IN PLANTS' SALT TOLERANCE
    M. R. Hadi, N. Karimi
    Journal of Plant Nutrition 2012 35 13
  • The Alkali Metal Ions: Their Role for Life
    Manuel Nieves-Cordones, Fouad Razzaq Al Shiblawi, Hervé Sentenac
    2016 16
  • The endophytic fungus Piriformospora indica enhances Arabidopsis thaliana growth and modulates Na + /K + homeostasis under salt stress conditions
    Mohamed E. Abdelaziz, Dongjin Kim, Shawkat Ali, Nina V. Fedoroff, Salim Al-Babili
    Plant Science 2017 263
  • A Focus on Natural Variation for Abiotic Constraints Response in the Model Species Arabidopsis thaliana
    Valérie Lefebvre, Seifollah Kiani, Mylène Durand-Tardif
    International Journal of Molecular Sciences 2009 10 8
  • Identification of rice cornichon as a possible cargo receptor for the Golgi-localized sodium transporter OsHKT1;3
    Paul Rosas-Santiago, Daniel Lagunas-Gómez, Bronwyn J. Barkla, Rosario Vera-Estrella, Sylvie Lalonde, Alexander Jones, Wolf B. Frommer, Olga Zimmermannova, Hana Sychrová, Omar Pantoja
    Journal of Experimental Botany 2015 66 9
  • Interactive effects of potassium and sodium on root growth and expression of K/Na transporter genes in rice
    Yanshou Wu, Yibing Hu, Guohua Xu
    Plant Growth Regulation 2009 57 3
  • Rice cultivars with differing salt tolerance contain similar cation channels in their root cells
    P. G. Kavitha, A. J. Miller, M. K. Mathew, Frans J. M. Maathuis
    Journal of Experimental Botany 2012 63 8
  • A Sodium Transporter HvHKT1;1 Confers Salt Tolerance in Barley via Regulating Tissue and Cell Ion Homeostasis
    Yong Han, Shuya Yin, Lu Huang, Xuelong Wu, Jianbin Zeng, Xiaohui Liu, Long Qiu, Rana Munns, Zhong-Hua Chen, Guoping Zhang
    Plant and Cell Physiology 2018 59 10
  • AtHKT1 drives adaptation of Arabidopsis thaliana to salinity by reducing floral sodium content
    Dong An, Jiu-Geng Chen, Yi-Qun Gao, Xiang Li, Zhen-Fei Chao, Zi-Ru Chen, Qian-Qian Li, Mei-Ling Han, Ya-Ling Wang, Yong-Fei Wang, Dai-Yin Chao, Justin O. Borevitz
    PLOS Genetics 2017 13 10
  • Expression of potassium-transporter coding genes, and kinetics of rubidium uptake, along a longitudinal root axis
    AUGUSTO J. VALLEJO, MARIA LUISA PERALTA, GUILLERMO E. SANTA-MARIA
    Plant, Cell and Environment 2005 28 7
  • In the halotolerant Lobularia maritima (Brassicaceae) salt adaptation correlates with activation of the vacuolar H+-ATPase and the vacuolar Na+/H+ antiporter
    Olga V. Popova, Dortje Golldack
    Journal of Plant Physiology 2007 164 10
  • GmHKT1;4, a novel soybean gene regulating Na+/K+ ratio in roots enhances salt tolerance in transgenic plants
    Huatao Chen, Xin Chen, Heping Gu, Bingyue Wu, Hongmei Zhang, Xingxing Yuan, Xiaoyan Cui
    Plant Growth Regulation 2014 73 3
  • Partitioning of nutrient transport processes in roots
    M. Tester, R. A. Leigh
    Journal of Experimental Botany 2001 52 suppl 1
  • Salt-tolerant reed plants contain lower Na+ and higher K+ than salt-sensitive reed plants
    Ryuichi Takahashi, Takayoshi Nishio, Nobumasa Ichizen, Tetsuo Takano
    Acta Physiologiae Plantarum 2007 29 5
  • Insights into the salt tolerance mechanism in barley (Hordeum vulgare) from comparisons of cultivars that differ in salt sensitivity
    Ayalew Ligaba, Maki Katsuhara
    Journal of Plant Research 2010 123 1
  • Volatile compounds from Alcaligenes faecalis JBCS1294 confer salt tolerance in Arabidopsis thaliana through the auxin and gibberellin pathways and differential modulation of gene expression in root and shoot tissues
    Dipto Bhattacharyya, Sang-Mi Yu, Yong Hoon Lee
    Plant Growth Regulation 2015 75 1
  • Differences in shoot Na+ accumulation between two tomato species are due to differences in ion affinity of HKT1;2
    Pedro Almeida, Gert-Jan de Boer, Albertus H. de Boer
    Journal of Plant Physiology 2014 171 6
  • Epitope Tagging of the Yeast K+ Carrier Trk2p Demonstrates Folding That Is Consistent with a Channel-like Structure
    Ge-Fei Zeng, Marc Pypaert, Clifford L. Slayman
    Journal of Biological Chemistry 2004 279 4
  • Side Chain Orientation of Residues Lining the Selectivity Filter of Epithelial Na+ Channels
    Shaohu Sheng, Clint J. Perry, Ossama B. Kashlan, Thomas R. Kleyman
    Journal of Biological Chemistry 2005 280 9
  • Functional characterization in Xenopus oocytes of Na+ transport systems from durum wheat reveals diversity among two HKT1;4 transporters
    Siwar Ben Amar, Faiçal Brini, Hervé Sentenac, Khaled Masmoudi, Anne-Aliénor Véry
    Journal of Experimental Botany 2014 65 1
  • ZxAKT1 is essential for K+uptake and K+/Na+homeostasis in the succulent xerophyteZygophyllum xanthoxylum
    Qing Ma, Jing Hu, Xiang-Rui Zhou, Hui-Jun Yuan, Tanweer Kumar, Sheng Luan, Suo-Min Wang
    The Plant Journal 2017 90 1
  • Cellular traits for sodium tolerance in rice (Oryza sativa L.)
    Md Abdul Kader, Sylvia Lindberg
    Plant Biotechnology 2008 25 3
  • Environmental Adaptations and Stress Tolerance of Plants in the Era of Climate Change
    Parvaiz Ahmad, Renu Bhardwaj, Narendra Tuteja
    2012
  • Overexpression of a novel soybean gene modulating Na+ and K+ transport enhances salt tolerance in transgenic tobacco plants
    Huatao Chen, Hui He, Deyue Yu
    Physiologia Plantarum 2011 141 1
  • Salt stress tolerance; what do we learn from halophytes?
    Akhtar Ali, Dae-Jin Yun
    Journal of Plant Biology 2017 60 5
  • Towards plant salinity tolerance-implications from ion transporters and biochemical regulation
    Yong Han, Shuya Yin, Lu Huang
    Plant Growth Regulation 2015 76 1
  • Heterelogous Expression of Plant Genes
    Filiz Yesilirmak, Zehra Sayers
    International Journal of Plant Genomics 2009 2009
  • Plant-Environment Interactions, Third Edition
    Hong Wang, Akira Yamauchi
    2006
  • Amino Acid Substitutions in Putative Selectivity Filter Regions III and IV in KdpA Alter Ion Selectivity of the KdpFABC Complex from Escherichia coli
    Jessica Bertrand, Karlheinz Altendorf, Marc Bramkamp
    Journal of Bacteriology 2004 186 16
  • Engineering crop nutrient efficiency for sustainable agriculture
    Liyu Chen, Hong Liao
    Journal of Integrative Plant Biology 2017 59 10
  • Mechanisms of Plant Responses and Adaptation to Soil Salinity
    Chunzhao Zhao, Heng Zhang, Chunpeng Song, Jian-Kang Zhu, Sergey Shabala
    The Innovation 2020 1 1
  • Role of HKT1 inThellungiella salsuginea, a model extremophile plant
    Akhtar Ali, Hyeong Cheol Park, Rashid Aman, Zahir Ali, Dae-Jin Yun
    Plant Signaling & Behavior 2013 8 8
  • Role of Na+, K+, Cl-, proline and sucrose concentrations in determining salinity tolerance and their correlation with the expression of multiple genes in tomato
    P. Almeida, R. Feron, G.-J. de Boer, A. H. de Boer
    AoB PLANTS 2014 6
  • The inward-rectifying K+ channel SsAKT1 is a candidate involved in K+ uptake in the halophyte Suaeda salsa under saline condition
    Hui-Rong Duan, Qing Ma, Jin-Lin Zhang, Jing Hu, Ai-Ke Bao, Li Wei, Qian Wang, Sheng Luan, Suo-Min Wang
    Plant and Soil 2015 395 1-2
  • Structural variations in wheat HKT1;5 underpin differences in Na+ transport capacity
    Bo Xu, Shane Waters, Caitlin S. Byrt, Darren Plett, Stephen D. Tyerman, Mark Tester, Rana Munns, Maria Hrmova, Matthew Gilliham
    Cellular and Molecular Life Sciences 2018 75 6
  • Tissue-specific expression and functional complementation of a yeastpotassium-uptake mutant by a salt-induced ice plant gene mcSKD1
    Yingtzy Jou, Pin Chou, Mengchun He, Yuhui Hung, Hungchen Emilie Yen
    Plant Molecular Biology 2004 54 6
  • Cloning and expression pattern ofSsHKT1encoding a putative cation transporter from halophyteSuaeda salsa
    Qun Shao, Chang Zhao, Ning Han, Bao-Shan Wang
    DNA Sequence 2008 19 2
  • Cloning and functional characterization of HKT1 and AKT1 genes of Fragaria spp.—Relationship to plant response to salt stress
    Miguel Garriga, Natalia Raddatz, Anne-Aliénor Véry, Hervé Sentenac, María E. Rubio-Meléndez, Wendy González, Ingo Dreyer
    Journal of Plant Physiology 2017 210
  • Functions of HKT transporters in sodium transport in roots and in protecting leaves from salinity stress
    Tomoaki Horie, Mitsuo Sugawara, Kiyotaka Okunou, Hideki Nakayama, Julian I. Schroeder, Atsuhiko Shinmyo, Kazuya Yoshida
    Plant Biotechnology 2008 25 3
  • Plant biotechnology — Genetic engineering to enhance plant salt tolerance
    Kazuya Yoshida
    Journal of Bioscience and Bioengineering 2002 94 6
  • Plant biotechnology — Genetic engineering to enhance plant salt tolerance
    Kazuya Yoshida
    Journal of Bioscience and Bioengineering 2002 94 6
  • Role and Functional Differences of HKT1-Type Transporters in Plants under Salt Stress
    Akhtar Ali, Albino Maggio, Ray Bressan, Dae-Jin Yun
    International Journal of Molecular Sciences 2019 20 5
  • Salt tolerance of potato (Solanum tuberosum L. var. Desirée) plants depends on light intensity and air humidity
    Jan E. Backhausen, Michael Klein, Michael Klocke, Sabrina Jung, Renate Scheibe
    Plant Science 2005 169 1
  • ‘Bending’ models of halotropism: incorporating protein phosphatase 2A, ABCB transporters, and auxin metabolism
    Eun Hyang Han, Dominic P Petrella, Joshua J Blakeslee
    Journal of Experimental Botany 2017 68 12
  • 30-year progress of membrane transport in plants
    Rainer Hedrich, Irene Marten
    Planta 2006 224 4
  • A Low-Affinity K+ Transporter AlHKT2;1 from Recretohalophyte Aeluropus lagopoides Confers Salt Tolerance in Yeast
    Payal Sanadhya, Parinita Agarwal, Jackson Khedia, Pradeep K. Agarwal
    Molecular Biotechnology 2015 57 6
  • AtHKT1;1 and AtHAK5 mediate low-affinity Na+ uptake in Arabidopsis thaliana under mild salt stress
    Qian Wang, Chao Guan, Pei Wang, Mao-Lin Lv, Qing Ma, Guo-Qiang Wu, Ai-Ke Bao, Jin-Lin Zhang, Suo-Min Wang
    Plant Growth Regulation 2015 75 3
  • KtrB, a member of the superfamily of K+ transporters
    Inga Hänelt, Nancy Tholema, Nadine Kröning, Marc Vor der Brüggen, Dorith Wunnicke, Evert P. Bakker
    European Journal of Cell Biology 2011 90 9
  • The High-Affinity Potassium Transporter EpHKT1;2 From the Extremophile Eutrema parvula Mediates Salt Tolerance
    Akhtar Ali, Irfan Ullah Khan, Masood Jan, Haris Ali Khan, Shah Hussain, Muhammad Nisar, Woo Sik Chung, Dae-Jin Yun
    Frontiers in Plant Science 2018 9
  • The Plant Plasma Membrane
    Bronwyn J. Barkla, Omar Pantoja
    2011 19
  • Variation in salinity tolerance and shoot sodium accumulation inArabidopsisecotypes linked to differences in the natural expression levels of transporters involved in sodium transport
    D. JHA, N. SHIRLEY, M. TESTER, S. J. ROY
    Plant, Cell & Environment 2010
  • Comparative expression of candidate genes involved in sodium transport and compartmentation in citrus
    B. Martínez-Alcántara, M.R. Martínez-Cuenca, A. Quiñones, D.J. Iglesias, E. Primo-Millo, M.A. Forner-Giner
    Environmental and Experimental Botany 2015 111
  • Fluctuating selection on migrant adaptive sodium transporter alleles in coastal Arabidopsis thaliana
    Silvia Busoms, Pirita Paajanen, Sarah Marburger, Sian Bray, Xin-Yuan Huang, Charlotte Poschenrieder, Levi Yant, David E. Salt
    Proceedings of the National Academy of Sciences 2018 115 52
  • Manipulation of oxidative stress responses as a strategy to generate stress-tolerant crops. From damage to signaling to tolerance
    Rodrigo Gómez, Paula Vicino, Néstor Carrillo, Anabella F. Lodeyro
    Critical Reviews in Biotechnology 2019 39 5
  • Cryo-EM structures of KdpFABC suggest a K+ transport mechanism via two inter-subunit half-channels
    C. Stock, L. Hielkema, I. Tascón, D. Wunnicke, G. T. Oostergetel, M. Azkargorta, C. Paulino, I. Hänelt
    Nature Communications 2018 9 1
  • Ion Channels and Plant Stress Responses
    Anna Amtmann, Mary J. Beilby
    2010
  • Association Analysis and Identification of ZmHKT1;5 Variation With Salt-Stress Tolerance
    Zhilei Jiang, Guangshu Song, Xiaohui Shan, Zhengyi Wei, Yanzhi Liu, Chao Jiang, Yu Jiang, Fengxue Jin, Yidan Li
    Frontiers in Plant Science 2018 9
  • Improving salt tolerance in plant cells
    Hideki Nakayama, Tomoaki Horie, Ikuko Yonamine, Atsuhiko Shinmyo, Kazuya Yoshida
    Plant Biotechnology 2005 22 5
  • Recent progress on the structure and function of the TrkH/KtrB ion channel
    Elena J Levin, Ming Zhou
    Current Opinion in Structural Biology 2014 27
  • Regulation of plants metabolism in response to salt stress: an omics approach
    Madhulika Singh, Anita Singh, Sheo Mohan Prasad, Rajiv Kumar Singh
    Acta Physiologiae Plantarum 2017 39 2
  • The coordinated regulation of Na+ and K+ in Hordeum brevisubulatum responding to time of salt stress
    Chun-Mei Wang, Zeng-Run Xia, Guo-Qiang Wu, Hui-Jun Yuan, Xin-Rui Wang, Jin-hua Li, Fu-Ping Tian, Qian Zhang, Xin-Qiang Zhu, Jiong-Jie He, Tanweer Kumar, Xiao-Li Wang, Jin-Lin Zhang
    Plant Science 2016 252
  • A refined atomic scale model of the Saccharomyces cerevisiae K+-translocation protein Trk1p combined with experimental evidence confirms the role of selectivity filter glycines and other key residues
    Vasilina Zayats, Thomas Stockner, Saurabh Kumar Pandey, Katharina Wörz, Rüdiger Ettrich, Jost Ludwig
    Biochimica et Biophysica Acta (BBA) - Biomembranes 2015 1848 5
  • Coordination of AtHKT1;1 and AtSOS1 facilitates Na+ and K+ homeostasis in Arabidopsis thaliana under salt stress
    Qian Wang, Chao Guan, Suo-Min Wang
    Journal of Plant Biology 2014 57 5
  • T-DNA Tagging-Based Gain-of-Function of OsHKT1;4 Reinforces Na Exclusion from Leaves and Stems but Triggers Na Toxicity in Roots of Rice Under Salt Stress
    Yuuka Oda, Natsuko Kobayashi, Keitaro Tanoi, Jian Ma, Yukiko Itou, Maki Katsuhara, Takashi Itou, Tomoaki Horie
    International Journal of Molecular Sciences 2018 19 1
  • A Trk/HKT-Type K+ Transporter from Trypanosoma brucei
    Marc Mosimann, Shinobu Goshima, Tanja Wenzler, Alexandra Lüscher, Nobuyuki Uozumi, Pascal Mäser
    Eukaryotic Cell 2010 9 4
  • Avenues of the membrane transport system in adaptation of plants to abiotic stresses
    Kanchan Vishwakarma, Mitali Mishra, Gunvant Patil, Steven Mulkey, Naleeni Ramawat, Vijay Pratap Singh, Rupesh Deshmukh, Durgesh Kumar Tripathi, Henry T. Nguyen, Shivesh Sharma
    Critical Reviews in Biotechnology 2019 39 7
  • Expression pattern of salt tolerance-related genes in Aegilops cylindrica
    Mahbube Arabbeigi, Ahmad Arzani, Mohammad Mahdi Majidi, Badraldin Ebrahim Sayed-Tabatabaei, Prasenjit Saha
    Physiology and Molecular Biology of Plants 2018 24 1
  • Mangroves and Halophytes: Restoration and Utilisation
    Hans-Werner Koyro, Helmut Lieth
    2008 43
  • Osmoregulation in Plants: Implications for Agriculture
    John C. Cushman
    American Zoologist 2001 41 4
  • The KtrA and KtrE Subunits Are Required for Na+-Dependent K+ Uptake by KtrB across the Plasma Membrane in Synechocystis sp. Strain PCC 6803
    Lalu Zulkifli, Masaro Akai, Asuka Yoshikawa, Mie Shimojima, Hiroyuki Ohta, H. Robert Guy, Nobuyuki Uozumi
    Journal of Bacteriology 2010 192 19
  • Ecophysiology and Responses of Plants under Salt Stress
    Maduraimuthu Djanaguiraman, P. V. Vara Prasad
    2013
  • Ectopic Expression of Aeluropus littoralis Plasma Membrane Protein Gene AlTMP1 Confers Abiotic Stress Tolerance in Transgenic Tobacco by Improving Water Status and Cation Homeostasis
    Walid Ben Romdhane, Rania Ben-Saad, Donaldo Meynard, Jean-Luc Verdeil, Jalel Azaza, Nabil Zouari, Lotfi Fki, Emmanuel Guiderdoni, Abdullah Al-Doss, Afif Hassairi
    International Journal of Molecular Sciences 2017 18 4
  • Involvement of cation channels and NH<sub>4</sub><sup>+</sup>-sensitive K<sup>+</sup> transporters in Na<sup>+</sup> uptake by cowpea roots under salinity
    E. L. Voigt, R. F. Caitano, J. M. Maia, S. L. Ferreira-Silva, C. E. C. De Macedo, J. A. G. Silveira
    Biologia plantarum 2009 53 4
  • Ion Channels and Plant Stress Responses
    Nobuyuki Uozumi, Julian I. Schroeder
    2010
  • The effect of NaCl on stomatal opening in Arabidopsis wild type andagb1heterotrimeric G-protein mutant plants
    Yunqing Yu, Sarah M. Assmann
    Plant Signaling & Behavior 2016 11 2
  • Plant Electrophysiology
    Tracey A. Cuin, Sergey Shabala
    2006
  • The Sesuvium portulacastrum Plasma Membrane Na+/H+ Antiporter SpSOS1 Complemented the Salt Sensitivity of Transgenic Arabidopsis sos1 Mutant Plants
    Yang Zhou, Xiaochang Yin, Shumin Wan, Yanping Hu, Qing Xie, Ruimei Li, Baibi Zhu, Shaoping Fu, Jianchun Guo, Xingyu Jiang
    Plant Molecular Biology Reporter 2018 36 4
  • Adaptation of Plants to Salt Stress: Characterization of Na+ and K+ Transporters and Role of CBL Gene Family in Regulating Salt Stress Response
    Toi Ketehouli, Kue Foka Idrice Carther, Muhammad Noman, Fa-Wei Wang, Xiao-Wei Li, Hai-Yan Li
    Agronomy 2019 9 11
  • Assessment of natural variation in the first pore domain of the tomato HKT1;2 transporter and characterization of mutated versions of SlHKT1;2 expressed in Xenopus laevis oocytes and via complementation of the salt sensitive athkt1;1 mutant
    Pedro M. F. Almeida, Gert-Jan de Boer, Albertus H. de Boer
    Frontiers in Plant Science 2014 5
  • Functional Analysis of Ion Transport Properties and Salt Tolerance Mechanisms of RtHKT1 from the RecretohalophyteReaumuria trigyna
    Ningning Li, Chao Du, Binjie Ma, Ziqi Gao, Zhigang Wu, Linlin Zheng, Yiding Niu, Yingchun Wang
    Plant and Cell Physiology 2019 60 1
  • G-protein β subunit AGB1 positively regulates salt stress tolerance in Arabidopsis
    Ya-nan MA, Ming CHEN, Dong-bei XU, Guang-ning FANG, Er-hui WANG, Shi-qing GAO, Zhao-shi XU, Lian-cheng LI, Xiao-hong ZHANG, Dong-hong MIN, You-zhi MA
    Journal of Integrative Agriculture 2015 14 2
  • Comparisons in functions of HKT1;5 transporters between Hordeum marinum and Hordeum vulgare in responses to salt stress
    Lu Huang, Liuhui Kuang, Liyuan Wu, Dezhi Wu, Guoping Zhang
    Plant Growth Regulation 2019 89 3
  • Molecular cloning and characterization of a trehalose-6-phosphate synthase/phosphatase from Dunaliella viridis
    Nan Zhang, Fei Wang, Xiangzong Meng, Saifan Luo, Qiyun Li, Hongyun Dong, Zhengkai Xu, Rentao Song
    Molecular Biology Reports 2011 38 4
  • The Effect of AtHKT1;1 or AtSOS1 Mutation on the Expressions of Na+ or K+ Transporter Genes and Ion Homeostasis in Arabidopsis thaliana under Salt Stress
    Qian Wang, Chao Guan, Pei Wang, Qing Ma, Ai-Ke Bao, Jin-Lin Zhang, Suo-Min Wang
    International Journal of Molecular Sciences 2019 20 5
  • The chrysanthemum leaf and root transcript profiling in response to salinity stress
    Peilei Cheng, Jiaojiao Gao, Yitong Feng, Zixin Zhang, Yanan Liu, Weimin Fang, Sumei Chen, Fadi Chen, Jiafu Jiang
    Gene 2018 674
  • Salt Stress Effects on the Vegetative Growth of Pleurotus tuberregium (FR) Sing
    S.M. Ayodele, O.J. Ojoghoro
    Journal of Biological Sciences 2007 7 7
  • A rice really interesting new gene H 2‐type E 3 ligase, OsSIRH2‐14 , enhances salinity tolerance via ubiquitin/26 S proteasome‐mediated degradation of salt‐related proteins
    Yong Chan Park, Sung Don Lim, Jun‐Cheol Moon, Cheol Seong Jang
    Plant, Cell & Environment 2019 42 11
  • Differential responses to salt-induced oxidative stress in three phylogenetically related plant species: <em>Arabidopsis thaliana</em> (glycophyte), <em>Thellungiella salsuginea</em> and <em>Cakile maritima</em> (halophytes). Involvement of ROS and NO in the control of K+/Na+ homeostasis
    Hayet Houmani, Francisco J Corpas
    AIMS Biophysics 2016 3 3
  • Functional characterisation of an intron retaining K+transporter of barley reveals intron-mediated alternate splicing
    K. Shahzad, M. Rauf, M. Ahmed, Z. A. Malik, I. Habib, Z. Ahmed, K. Mahmood, R. Ali, K. Masmoudi, F. Lemtiri-Chlieh, C. Gehring, G. A. Berkowitz, N. A. Saeed, E. Martinoia
    Plant Biology 2015 17 4
  • Progress in Botany
    Dortje Golldack
    2004 65
  • Pumpkin CmHKT1;1 Controls Shoot Na+ Accumulation via Limiting Na+ Transport from Rootstock to Scion in Grafted Cucumber
    Jingyu Sun, Haishun Cao, Jintao Cheng, Xiaomeng He, Hamza Sohail, Mengliang Niu, Yuan Huang, Zhilong Bie
    International Journal of Molecular Sciences 2018 19 9
  • RETRACTED ARTICLE: The AtCCX1 transporter mediates salinity tolerance in both Arabidopsis and yeast
    Zhiyuan Chen, Yongjun Wu, Lijun Di, Guodong Wang, Yufang Shen
    Plant Cell, Tissue and Organ Culture (PCTOC) 2012 109 1
  • The HKT Transporter Gene from Arabidopsis, AtHKT1;1, Is Dominantly Expressed in Shoot Vascular Tissue and Root Tips and Is Mild Salt Stress-Responsive
    Yuichi Tada
    Plants 2019 8 7
  • Addition of a Peptide Tag at the C Terminus of AtHKT1 Inhibits Its Na+Transport
    Yasuhiro KATO, Akihiro HAZAMA, Mutsumi YAMAGAMI, Nobuyuki UOZUMI
    Bioscience, Biotechnology, and Biochemistry 2003 67 10
  • Differential selection of sodium and potassium ions by TsHKT1;2
    Akhtar Ali, Dae-Jin Yun
    Plant Signaling & Behavior 2016 11 8
  • Dimerization of GTR1 regulates their plasma membrane localization
    Yasuhiro Ishimaru, Kento Washiyama, Takaya Oikawa, Shin Hamamoto, Nobuyuki Uozumi, Minoru Ueda
    Plant Signaling & Behavior 2017 12 6
  • Genome-wide identification of the HKT genes in five Rosaceae species and expression analysis of HKT genes in response to salt-stress in Fragaria vesca
    Shichuang Zhang, Yuexia Tong, Yingjun Li, Zong-Ming Cheng, Yan Zhong
    Genes & Genomics 2019 41 3
  • One “OMICS” to integrate them all: ionomics as a result of plant genetics, physiology and evolution
    Alice Pita-Barbosa, Felipe Klein Ricachenevsky, Paulina Maria Flis
    Theoretical and Experimental Plant Physiology 2019 31 1
  • Plant Abiotic Stress
    Joanne Tilbrook, Stuart Roy
    2014
  • Potassium and its role in cesium transport in plants
    Dharmendra K. Gupta, Sarita Tiwari, Soumya Chatterjee, Clemens Walther
    Biologia 2018 73 9
  • PtAKT1 maintains selective absorption capacity for K+ over Na+ in halophyte Puccinellia tenuiflora under salt stress
    Pei Wang, Qiang Guo, Qian Wang, Xiang-Rui Zhou, Suo-Min Wang
    Acta Physiologiae Plantarum 2015 37 5
  • Saccharomyces cerevisiae as a Tool to Investigate Plant Potassium and Sodium Transporters
    Antonella Locascio, Nuria Andrés-Colás, José Miguel Mulet, Lynne Yenush
    International Journal of Molecular Sciences 2019 20 9
  • SsHKT1;1 is coordinated with SsSOS1 and SsNHX1 to regulate Na+ homeostasis in Suaeda salsa under saline conditions
    Wen-Ying Wang, Ya-Qi Liu, Hui-Rong Duan, Xiu-Xia Yin, Yan-Nong Cui, Wei-Wei Chai, Xin Song, Timothy J. Flowers, Suo-Min Wang
    Plant and Soil 2020 449 1-2
  • Stress Responses in Plants
    Anabella Fernanda Lodeyro, Néstor Carrillo
    2015
  • The Rice High-Affinity K+ Transporter OsHKT2;4 Mediates Mg2+ Homeostasis under High-Mg2+ Conditions in Transgenic Arabidopsis
    Chi Zhang, Hejuan Li, Jiayuan Wang, Bin Zhang, Wei Wang, Hongxuan Lin, Sheng Luan, Jiping Gao, Wenzhi Lan
    Frontiers in Plant Science 2017 8
  • Abiotic Stress Adaptation in Plants
    Anna Amtmann, Roger Leigh
    2009
  • Comprehensive Biophysics
    N. Uozumi, I. Dreyer
    2012
  • Environmental Adaptations and Stress Tolerance of Plants in the Era of Climate Change
    Manuel Nieves-Cordones, Fernando Alemán, Mario Fon, Vicente Martínez, Francisco Rubio
    2012
  • Homology Modeling Identifies Crucial Amino-Acid Residues That Confer Higher Na+ Transport Capacity of OcHKT1;5 from Oryza coarctata Roxb
    Suji Somasundaram, Anne-Aliénor Véry, Rithvik S Vinekar, Tetsuya Ishikawa, Kumkum Kumari, Shalini Pulipati, Kavitha Kumaresan, Claire Corratgé-Faillie, R Sowdhamini, Ajay Parida, Lana Shabala, Sergey Shabala, Gayatri Venkataraman
    Plant and Cell Physiology 2020 61 7
  • Impact of Cesium on Plants and the Environment
    Ryoung Shin, Eri Adams
    2017
  • Molecular Stress Physiology of Plants
    Anath Bandhu Das, Reto J. Strasser
    2013
  • Progress in Plant Nutrition: Plenary Lectures of the XIV International Plant Nutrition Colloquium
    Pascal Mäser, Markus Gierth, Julian I. Schroeder
    2002
  • Salicylic Acid Alleviated Salt Damage of Populus euphratica: A Physiological and Transcriptomic Analysis
    Shupei Rao, Chao Du, Aijia Li, Xinli Xia, Weilun Yin, Jinhuan Chen
    Forests 2019 10 5
  • HKT sodium and potassium transporters in Arabidopsis thaliana and related halophyte species
    Akhtar Ali, Natalia Raddatz, Jose M. Pardo, Dae‐Jin Yun
    Physiologia Plantarum 2020
  • A cross population between D. kaki and D. virginiana shows high variability for saline tolerance and improved salt stress tolerance
    Francisco Gil-Muñoz, Juan Gabriel Pérez-Pérez, Ana Quiñones, Amparo Primo-Capella, Jaime Cebolla, Mª Ángeles Forner-Giner, Maria L. Badenes, Mª del Mar Naval, Carl Ng
    PLOS ONE 2020 15 2
  • Abiotic Stress Adaptation in Plants
    Anil K. Singh, Sudhir K. Sopory, Ray Wu, Sneh L. Singla-Pareek
    2009
  • Agricultural Salinity Assessment and Management
    Anil Grover, Amanjot Singh, Eduardo Blumwald
    2011
  • Salt hypersensitivity is associated with excessive xylem development in a thermospermine‐deficient mutant ofArabidopsis thaliana
    Shiori Shinohara, Takashi Okamoto, Hiroyasu Motose, Taku Takahashi
    The Plant Journal 2019 100 2
  • Supportive role of the Na+ transporter CmHKT1;1 from Cucumis melo in transgenic Arabidopsis salt tolerance through improved K+/Na+ balance
    Li-Wei Gao, Sen-Lin Yang, Shi-Wei Wei, Dan-Feng Huang, Yi-Dong Zhang
    Plant Molecular Biology 2020 103 4-5
  • Analysis of Arabidopsis thaliana HKT1 and Eutrema salsugineum/botschantzevii HKT1;2 Promoters in Response to Salt Stress in Athkt1:1 Mutant
    Ismat Nawaz, Mazhar Iqbal, Henk W. J. Hakvoort, Albertus H. de Boer, Henk Schat
    Molecular Biotechnology 2019 61 6
  • Annual Plant Reviews online
    Anna Amtmann, Patrick Armengaud, Vadim Volkov
    2018
  • Combined Boron Toxicity and Salinity Stress—An Insight into Its Interaction in Plants
    Anamika Pandey, Mohd Kamran Khan, Erdogan Esref Hakki, Sait Gezgin, Mehmet Hamurcu
    Plants 2019 8 10
  • Elucidation of Abiotic Stress Signaling in Plants
    Swati Singh, Nisha Khatri, Arpana Katiyar, Yashwanti Mudgil
    2015
  • Expression and Ion Transport Activity of Rice OsHKT1;1 Variants
    Shahin Imran, Tomoaki Horie, Maki Katsuhara
    Plants 2019 9 1
  • Improving Crop Resistance to Abiotic Stress
    Toshio Yamaguchi, Nobuyuki Uozumi, Tomoaki Horie
    2012
  • Improving Crop Resistance to Abiotic Stress
    Vandna Rai, Narendra Tuteja, Teruhiro Takabe
    2012
  • Investigation of Polymorphisms in Coding Region of OsHKT1 in Relation to Salinity in Rice
    Pham Quynh-Hoa, Tran Xuan-An, Nguyen Thi-Nha-Trang, Tran Thi-Thuy-Anh, Hoang Hai-Yen, Nguyen Thi-Hong-Van, Tang Thi-Hanh, Do Thi-Phuc
    Rice Science 2016 23 6
  • Neurotransmitters in Plant Signaling and Communication
    Mohsin Tanveer, Sergey Shabala
    2020
  • Plant Membrane Transport Research in the Post-genomic Era
    Ren-Jie Tang, Mingda Luan, Chao Wang, Dhondup Lhamo, Yang Yang, Fu-Geng Zhao, Wen-Zhi Lan, Ai-Gen Fu, Sheng Luan
    Plant Communications 2020 1 1
  • Plant Nutrients and Abiotic Stress Tolerance
    Gyanendranath Mitra
    2018
  • Plant Nutrition
    J. Schroeder, P. Buschmann, B. Eckelman, E. Kim, M. Sussman, N. Uozumi, P. Mäser
    2001
  • PtHAK5, a candidate for mediating high-affinity K$lt;sup$gt;+$lt;/sup$gt; uptake in the halophytic grass, Puccinellia tenuiflora
    Haili YANG, Weidan ZHANG, Weiwei CHAI, Wenying WANG, Li GAO, Jing ZHANG, Yongping WANG, Suo-Min WANG
    Frontiers of Agricultural Science and Engineering 2018 5 1
  • Salt and Drought Stress Tolerance in Plants
    Aida Shomali, Sasan Aliniaeifard
    2020
  • The PalERF109 transcription factor positively regulates salt tolerance via PalHKT1;2 in Populus alba var. pyramidalis
    Ningning Chen, Shaofei Tong, Hu Tang, Zhiyang Zhang, Bao Liu, Shangling Lou, Jianquan Liu, Huanhuan Liu, Tao Ma, Yuanzhong Jiang, Zhibin Luo
    Tree Physiology 2020 40 6
  • The expression of rice vacuolar TPK channels genes restores potassium uptake in E. coli mutant strain LB2003
    S. V. Isayenkov, F. J. M. Maathuis
    Cytology and Genetics 2015 49 1
  • The grapevine NaE sodium exclusion locus encodes sodium transporters with diverse transport properties and localisation
    Yue Wu, Sam W Henderson, Stefanie Wege, Fei Zheng, Amanda R Walker, Rob R Walker, Matthew Gilliham
    Journal of Plant Physiology 2020 246-247
  • Variation in salinity tolerance and shoot sodium accumulation inArabidopsisecotypes linked to differences in the natural expression levels of transporters involved in sodium transport
    D. JHA, N. SHIRLEY, M. TESTER, S. J. ROY
    Plant, Cell & Environment 2010
  • Clock component OsPRR73 positively regulates rice salt tolerance by modulating OsHKT2;1 ‐mediated sodium homeostasis
    Hua Wei, Xiling Wang, Yuqing He, Hang Xu, Lei Wang
    The EMBO Journal 2020
  • High affinity Na + transport by wheat HKT1;5 is blocked by K +
    Bo Xu, Maria Hrmova, Matthew Gilliham
    Plant Direct 2020 4 10
  • Soybean CHX‐type ion transport protein GmSALT3 confers leaf Na + exclusion via a root derived mechanism, and Cl − exclusion via a shoot derived process
    Yue Qu, Rongxia Guan, Jayakumar Bose, Sam W. Henderson, Stefanie Wege, Lijuan Qiu, Matthew Gilliham
    Plant, Cell & Environment 2020
  • Changes in Expression Level of OsHKT1;5 Alters Activity of Membrane Transporters Involved in K+ and Ca2+ Acquisition and Homeostasis in Salinized Rice Roots
    Mohammad Alnayef, Celymar Solis, Lana Shabala, Takaaki Ogura, Zhonghua Chen, Jayakumar Bose, Frans J. M. Maathuis, Gayatri Venkataraman, Keitaro Tanoi, Min Yu, Meixue Zhou, Tomoaki Horie, Sergey Shabala
    International Journal of Molecular Sciences 2020 21 14
  • Climate Change and Plant Abiotic Stress Tolerance
    Bharti Garg, Shreelekha Misra, Narendra Tuteja
    2013
  • Handbook of Plant Biotechnology
    Immacolata Coraggio, Roberto Tuberosa
    2004
  • Handbook of Plant and Crop Stress,Third Edition
    Arun Joshi
    2010 20102370
  • Membrane Motive Force and Membrane Transport System in Plant Cells and Bacteria
    Shin HAMAMOTO, Kei NANATANI, Yoko SATO, Nobuyuki UOZUMI
    KAGAKU TO SEIBUTSU 2012 50 2
  • Metalloids in Plants
    Neera Garg, Purnima Bhandari, Lakita Kashyap, Sandeep Singh
    2020
  • Morphological and molecular assessment of several cultivars of bread wheat Triticum aestivum L. under different types of irrigation water
    F R A Al-Burki, C G Abdel, D M Majeed, A Q Aoiez, A. Afrah Mohammed, H Hameed
    IOP Conference Series: Earth and Environmental Science 2019 388
  • Na+ Transporter SvHKT1;1 from a Halophytic Turf Grass Is Specifically Upregulated by High Na+ Concentration and Regulates Shoot Na+ Concentration
    Yuki Kawakami, Shahin Imran, Maki Katsuhara, Yuichi Tada
    International Journal of Molecular Sciences 2020 21 17
  • Overexpression of Zm-HINT1 Confers Salt and Drought Tolerance in Arabidopsis thaliana
    Xiaofeng Zu, Ping Liu, Shunxi Wang, Lei Tian, Zhiqiang Tian, Yanhui Chen, Liuji Wu
    Plant Molecular Biology Reporter 2018 36 2
  • Phosphorylation of a malate transporter promotes malate excretion and reduces cadmium uptake in apple
    Qi-Jun Ma, Mei-Hong Sun, Jing Lu, Da-Gang Hu, Hui Kang, Chun-Xiang You, Yu-Jin Hao, Richard Napier
    Journal of Experimental Botany 2020 71 12
  • Plant Breeding Reviews
    Tracie K. Matsumoto, Ray A. Bressan, P. M. Hasegawa, José M. Pardo
    2010
  • Plant Salt Tolerance
    Zhong-Hua Chen, Dezhi Wu, Cornelia Eisenach, Adrian Hills, Guoping Zhang, Michael R. Blatt
    2012
  • Plant mineral transport systems and the potential for crop improvement
    Bindu Yadav, Abhimanyu Jogawat, Shambhu Krishan LalNITRATE, Nita Lakra, Sahil Mehta, Nitzan Shabek, Om Prakash Narayan
    Planta 2021 253 2
  • Plant-Environment Interactions, Third Edition
    Vishwanathan Chinnusamy, R Sairam, Aruna Tyagi
    2006
  • Populus euphratica JRL Mediates ABA Response, Ionic and ROS Homeostasis in Arabidopsis under Salt Stress
    Huilong Zhang, Chen Deng, Jun Yao, Yan-Li Zhang, Yi-Nan Zhang, Shurong Deng, Nan Zhao, Gang Sa, Xiaoyang Zhou, Cunfu Lu, Shanzhi Lin, Rui Zhao, Shaoliang Chen
    International Journal of Molecular Sciences 2019 20 4
  • Recent progress in understanding salinity tolerance in plants: Story of Na+/K+ balance and beyond
    Sadam Hussain, Saddam Hussain, Basharat Ali, Xiaolong Ren, Xiaoli Chen, Qianqian Li, Muhammad Saqib, Naeem Ahmad
    Plant Physiology and Biochemistry 2021
  • Regulation of Nutrient Uptake by Plants
    Gyanendra Nath Mitra
    2015
  • Salt Stress Signals on Demand: Cellular Events in the Right Context
    Ahmed Ismail, Islam El-Sharkawy, Sherif Sherif
    International Journal of Molecular Sciences 2020 21 11
  • Salt Stress, Microbes, and Plant Interactions: Mechanisms and Molecular Approaches
    Anwar Shahzad, Irfan Bashir Ganie
    2019
  • The genetics of the traits determining adaptability to abiotic stress in rice (Oryza sativa L.)
    E. M. Kharitonov, Y. K. Goncharova, E. A. Maliuchenko
    Russian Journal of Genetics: Applied Research 2017 7 6
  • Wheat Production in Changing Environments
    Sana Tounsi, Kaouthar Feki, Faiçal Brini
    2019
  • eLS
    Nouf Owdah Al‐shareef, Mark Tester
    2019

Article Information

vol. 122 no. 4 1249-1260
DOI 
https://doi.org/10.1104/pp.122.4.1249
PubMed 
10759522

Published By 
American Society of Plant Biologists
Print ISSN 
0032-0889
Online ISSN 
1532-2548
Published Online 
April 01, 2000

Copyright & Usage 
Copyright © 2000 American Society of Plant Physiologists

PreviousNext
Back to top

Table of Contents

Print
Download PDF
Email Article

Thank you for your interest in spreading the word on Plant Physiology.

NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address.

Enter multiple addresses on separate lines or separate them with commas.
The Arabidopsis HKT1 Gene Homolog Mediates Inward Na+ Currents in Xenopus laevis Oocytes and Na+ Uptake in Saccharomyces cerevisiae
(Your Name) has sent you a message from Plant Physiology
(Your Name) thought you would like to see the Plant Physiology web site.
CAPTCHA
This question is for testing whether or not you are a human visitor and to prevent automated spam submissions.
Citation Tools
The Arabidopsis HKT1 Gene Homolog Mediates Inward Na+ Currents in Xenopus laevis Oocytes and Na+ Uptake in Saccharomyces cerevisiae
Nobuyuki Uozumi, Eugene J. Kim, Francisco Rubio, Takao Yamaguchi, Shoshi Muto, Akio Tsuboi, Evert P. Bakker, Tatsunosuke Nakamura, Julian I. Schroeder
Plant Physiology Apr 2000, 122 (4) 1249-1260; DOI: 10.1104/pp.122.4.1249

Citation Manager Formats

  • BibTeX
  • Bookends
  • EasyBib
  • EndNote (tagged)
  • EndNote 8 (xml)
  • Medlars
  • Mendeley
  • Papers
  • RefWorks Tagged
  • Ref Manager
  • RIS
  • Zotero
Request Permissions
Share
The Arabidopsis HKT1 Gene Homolog Mediates Inward Na+ Currents in Xenopus laevis Oocytes and Na+ Uptake in Saccharomyces cerevisiae
Nobuyuki Uozumi, Eugene J. Kim, Francisco Rubio, Takao Yamaguchi, Shoshi Muto, Akio Tsuboi, Evert P. Bakker, Tatsunosuke Nakamura, Julian I. Schroeder
Plant Physiology Apr 2000, 122 (4) 1249-1260; DOI: 10.1104/pp.122.4.1249
del.icio.us logo Digg logo Reddit logo Twitter logo CiteULike logo Facebook logo Google logo Mendeley logo
  • Tweet Widget
  • Facebook Like
  • Google Plus One

Jump to section

  • Article
    • Abstract
    • MATERIALS AND METHODS
    • RESULTS
    • DISCUSSION
    • ACKNOWLEDGMENT
    • Footnotes
    • LITERATURE CITED
  • Figures & Data
  • Info & Metrics
  • PDF

In this issue

Plant Physiology: 122 (4)
Plant Physiology
Vol. 122, Issue 4
Apr 2000
  • Table of Contents
  • About the Cover
  • Index by author
View this article with LENS

More in this TOC Section

  • The Cell Wall of the Arabidopsis Pollen Tube—Spatial Distribution, Recycling, and Network Formation of Polysaccharides
  • Systems Dynamic Modeling of a Guard Cell Cl− Channel Mutant Uncovers an Emergent Homeostatic Network Regulating Stomatal Transpiration
  • Vacuolar CAX1 and CAX3 Influence Auxin Transport in Guard Cells via Regulation of Apoplastic pH
Show more CELL BIOLOGY AND SIGNAL TRANSDUCTION

Similar Articles

Our Content

  • Home
  • Current Issue
  • Plant Physiology Preview
  • Archive
  • Focus Collections
  • Classic Collections
  • The Plant Cell
  • Plant Direct
  • Plantae
  • ASPB

For Authors

  • Instructions
  • Submit a Manuscript
  • Editorial Board and Staff
  • Policies
  • Recognizing our Authors

For Reviewers

  • Instructions
  • Journal Miles
  • Policies

Other Services

  • Permissions
  • Librarian resources
  • Advertise in our journals
  • Alerts
  • RSS Feeds

Copyright © 2021 by The American Society of Plant Biologists

Powered by HighWire