Arid
DOI10.1007/s00299-018-2325-2
Foxtail millet SiHAK1 excites extreme high-affinity K+ uptake to maintain K+ homeostasis under low K+ or salt stress
Zhang, Haiwen1; Xiao, Wen1,2; Yu, Wenwen1,2; Yao, Lei1; Li, Legong2; Wei, Jianhua1; Li, Ruifen1
通讯作者Li, Ruifen
来源期刊PLANT CELL REPORTS
ISSN0721-7714
EISSN1432-203X
出版年2018
卷号37期号:11页码:1533-1546
英文摘要

Key messageThis is the first evidence that SiHAK1 acts as a K+ transporter and is modulated by internal and external K+, which expands our understanding of the significant physiological roles of large HAK/KUP/KT transporters in crops.AbstractCrop genomes have shown the richness of K+ transporters in HAK/KUP/KT (High Affinity K+/K+ Uptake Proteins/K+ Transporter) family, and much progress have been achieved toward understanding the diverse roles of K+ uptake and translocation, and abiotic stresses resistance in this family. The HAK/KUP/KT family has increasingly been recognized to be at a pivotal status in the mediation of K+ translocation and long-term transport; however, our understanding of the molecular mechanisms remains limited. Foxtail millet is an ideal plant for studying long-distance potassium (K) transport because of its small diploid genome and better adaptability to arid lands. Here, we identified 29 putative HAK/KUP/KT proteins from the Setaria italica genome database. These genes were distributed in seven chromosomes of foxtail millet and divided into five clusters. SiHAK1 exhibited widespread expression in various tissues and significant up-regulation in the shoots under low K condition. SiHAK1 was localized in the cell membrane and low K elicited SiHAK1-meidated high-affinity K+ uptake activity in Cy162 yeast cells and Arabidopsis athak5 mutants. The transport activity of SiHAK1 was coordinately modulated by external K+ supply and internal K+ content in the cell under low K and high salt environment. Our findings reveal the K uptake mechanisms of SiHAK1 and indicated that it may be involved in the mediation of K homeostasis in S. italica under K+-deficiency and salt stress.


英文关键词Setaria italica HAK KUP KT transporter High-affinity K+ transporter K+ homeostasis Salt tolerance
类型Article
语种英语
国家Peoples R China
收录类别SCI-E
WOS记录号WOS:000451470600007
WOS关键词HAK POTASSIUM TRANSPORTERS ; FUNCTIONAL-CHARACTERIZATION ; MEDIATES SODIUM ; GENE FAMILY ; ARABIDOPSIS ; EXPRESSION ; TOLERANCE ; BARLEY ; CHANNEL ; CLONING
WOS类目Plant Sciences
WOS研究方向Plant Sciences
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/212181
作者单位1.Beijing Acad Agr & Forestry Sci, Beijing Agrobiotechnol Res Ctr, Beijing Key Lab Agr Genet Resources & Biotechnol, Beijing 100097, Peoples R China;
2.Capital Normal Univ, Beijing Key Lab Plant Gene Resources & Biotechnol, Coll Life Sci, Beijing 100048, Peoples R China
推荐引用方式
GB/T 7714
Zhang, Haiwen,Xiao, Wen,Yu, Wenwen,et al. Foxtail millet SiHAK1 excites extreme high-affinity K+ uptake to maintain K+ homeostasis under low K+ or salt stress[J],2018,37(11):1533-1546.
APA Zhang, Haiwen.,Xiao, Wen.,Yu, Wenwen.,Yao, Lei.,Li, Legong.,...&Li, Ruifen.(2018).Foxtail millet SiHAK1 excites extreme high-affinity K+ uptake to maintain K+ homeostasis under low K+ or salt stress.PLANT CELL REPORTS,37(11),1533-1546.
MLA Zhang, Haiwen,et al."Foxtail millet SiHAK1 excites extreme high-affinity K+ uptake to maintain K+ homeostasis under low K+ or salt stress".PLANT CELL REPORTS 37.11(2018):1533-1546.
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