Literature DB >> 21084222

Rice sodium-insensitive potassium transporter, OsHAK5, confers increased salt tolerance in tobacco BY2 cells.

Tomoaki Horie1, Mitsuo Sugawara, Tomoyuki Okada, Koichiro Taira, Pulla Kaothien-Nakayama, Maki Katsuhara, Atsuhiko Shinmyo, Hideki Nakayama.   

Abstract

Potassium ion (K(+)) plays vital roles in many aspects of cellular homeostasis including competing with sodium ion (Na(+)) during potassium starvation and salt stress. Therefore, one way to engineer plant cells with improved salt tolerance is to enhance K(+) uptake activity of the cells, while keeping Na(+) out during salt stress. Here, in search for Na(+)-insensitive K(+) transporter for this purpose, bacterial expression system was used to characterize two K(+) transporters, OsHAK2 and OsHAK5, isolated from rice (Oryza sativa cv. Nipponbare). The two OsHAK transporters are members of a KT/HAK/KUP transporter family, which is one of the major K(+) transporter families in bacteria, fungi and plants. When expressed in an Escherichia coli K(+) transport mutant strain LB2003, both OsHAK transporters rescued the growth defect in K(+)-limiting conditions by significantly increasing the K(+) content of the cells. Under the condition with a large amount of extracellular Na(+), we found that OsHAK5 functions as a Na(+)-insensitive K(+) transporter, while OsHAK2 is sensitive to extracellular Na(+) and exhibits higher Na(+) over K(+) transport activities. Moreover, constitutive expression of OsHAK5 in cultured-tobacco BY2 (Nicotiana tabacum cv. Bright Yellow 2) cells enhanced the accumulation of K(+) but not Na(+) in the cells during salt stress and conferred increased salt tolerance to the cells. Transient expression experiment indicated that OsHAK5 is localized to the plant plasma membrane. These results suggest that the plasma-membrane localized Na(+) insensitive K(+) transporters, similar to OsHAK5 identified here, could be used as a tool to enhance salt tolerance in plant cells.
Copyright © 2010 The Society for Biotechnology, Japan. Published by Elsevier B.V. All rights reserved.

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Year:  2010        PMID: 21084222     DOI: 10.1016/j.jbiosc.2010.10.014

Source DB:  PubMed          Journal:  J Biosci Bioeng        ISSN: 1347-4421            Impact factor:   2.894


  32 in total

1.  The role of a potassium transporter OsHAK5 in potassium acquisition and transport from roots to shoots in rice at low potassium supply levels.

Authors:  Tianyuan Yang; Song Zhang; Yibing Hu; Fachi Wu; Qingdi Hu; Guang Chen; Jing Cai; Ting Wu; Nava Moran; Ling Yu; Guohua Xu
Journal:  Plant Physiol       Date:  2014-08-25       Impact factor: 8.340

Review 2.  Plant salt-tolerance mechanisms.

Authors:  Ulrich Deinlein; Aaron B Stephan; Tomoaki Horie; Wei Luo; Guohua Xu; Julian I Schroeder
Journal:  Trends Plant Sci       Date:  2014-03-14       Impact factor: 18.313

3.  A Critical Role of Sodium Flux via the Plasma Membrane Na+/H+ Exchanger SOS1 in the Salt Tolerance of Rice.

Authors:  Houda El Mahi; Javier Pérez-Hormaeche; Anna De Luca; Irene Villalta; Joaquín Espartero; Francisco Gámez-Arjona; José Luis Fernández; Mireia Bundó; Imelda Mendoza; Delphine Mieulet; Eric Lalanne; Sang-Yeol Lee; Dae-Jin Yun; Emmanuel Guiderdoni; Manuel Aguilar; Eduardo O Leidi; José M Pardo; Francisco J Quintero
Journal:  Plant Physiol       Date:  2019-04-16       Impact factor: 8.340

4.  Domestication history and geographical adaptation inferred from a SNP map of African rice.

Authors:  Rachel S Meyer; Jae Young Choi; Michelle Sanches; Anne Plessis; Jonathan M Flowers; Junrey Amas; Katherine Dorph; Annie Barretto; Briana Gross; Dorian Q Fuller; Isaac Kofi Bimpong; Marie-Noelle Ndjiondjop; Khaled M Hazzouri; Glenn B Gregorio; Michael D Purugganan
Journal:  Nat Genet       Date:  2016-08-08       Impact factor: 38.330

5.  Transcriptomic analysis of Aegilops tauschii during long-term salinity stress.

Authors:  Mehdi Mansouri; Mohammad Reza Naghavi; Hoshang Alizadeh; Ghasem Mohammadi-Nejad; Seyed Ahmad Mousavi; Ghasem Hosseini Salekdeh; Yuichi Tada
Journal:  Funct Integr Genomics       Date:  2018-06-21       Impact factor: 3.410

Review 6.  Advances in understanding salt tolerance in rice.

Authors:  Showkat Ahmad Ganie; Kutubuddin Ali Molla; Robert J Henry; K V Bhat; Tapan Kumar Mondal
Journal:  Theor Appl Genet       Date:  2019-02-13       Impact factor: 5.699

Review 7.  Engineering salinity tolerance in plants: progress and prospects.

Authors:  Shabir Hussain Wani; Vinay Kumar; Tushar Khare; Rajasheker Guddimalli; Maheshwari Parveda; Katalin Solymosi; Penna Suprasanna; P B Kavi Kishor
Journal:  Planta       Date:  2020-03-09       Impact factor: 4.116

8.  Genome-wide characterization and expression analysis of HAK K+ transport family in Ipomoea.

Authors:  Rong Jin; Wei Jiang; Mengxiao Yan; Aijun Zhang; Ming Liu; Peng Zhao; Xiaoguang Chen; Zhonghou Tang
Journal:  3 Biotech       Date:  2020-11-27       Impact factor: 2.406

9.  Phylogenetic analysis of k(+) transporters in bryophytes, lycophytes, and flowering plants indicates a specialization of vascular plants.

Authors:  Judith Lucia Gomez-Porras; Diego Mauricio Riaño-Pachón; Begoña Benito; Rosario Haro; Kamil Sklodowski; Alonso Rodríguez-Navarro; Ingo Dreyer
Journal:  Front Plant Sci       Date:  2012-08-02       Impact factor: 5.753

10.  Foxtail millet SiHAK1 excites extreme high-affinity K+ uptake to maintain K+ homeostasis under low K+ or salt stress.

Authors:  Haiwen Zhang; Wen Xiao; Wenwen Yu; Lei Yao; Legong Li; Jianhua Wei; Ruifen Li
Journal:  Plant Cell Rep       Date:  2018-07-20       Impact factor: 4.570

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