Cloning and expression pattern of SsHKT1 encoding a putative cation transporter from halophyte Suaeda salsa.

Qun Shao, Chang Zhao, Ning Han, Bao-shan Wang
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引用次数: 21

Abstract

Potassium is an essential element for plant, and high-affinity K+ uptake system plays a crucial role in potassium absorption and transportation. Here we report the isolation and characterization of a HKT1 homolog from C3 halophyte Suaeda salsa (L.) (SsHKT1), particularly under low K+ treatment. The SsHKT1 cDNA was 2033 nucleotides long including 1650 bp ORF for a 550 amino acids peptide and a predicted molecular mass of 63.0 kDa. The deduced amino acid sequence of SsHKT1 was 39-64% identical to other plant HKT-like sequences. A SsHKT1-specific antibody was prepared and reacted with a 63.0 kDa protein from S. salsa plasma membrane. Reverse transcriptase-PCR analysis showed that SsHKT1 was mainly expressed in leaf tissues and to a lesser extent, in root tissues. Amounts of SsHKT1 transcript were developmentally controlled and significantly up-regulated by K+ deprivation and NaCl treatment. The results suggested that SsHKT1 might play an important role in ion homeostasis and salt tolerance of S. salsa.

克隆和表达模式SsHKT1编码一个假定的阳离子转运盐土植物碱蓬萨尔萨舞。
钾是植物的必需元素,高亲和的钾离子吸收系统在钾的吸收和运输中起着至关重要的作用。本文报道了C3盐生植物Suaeda salsa (L.) (SsHKT1)中HKT1同源物的分离和鉴定,特别是在低K+处理下。SsHKT1 cDNA全长2033个核苷酸,全长550个氨基酸,ORF为1650 bp,预测分子量为63.0 kDa。SsHKT1的氨基酸序列与其他植物的hkt样序列相同39 ~ 64%。制备了sshkt1特异性抗体,并与salsa质膜中63.0 kDa的蛋白反应。逆转录- pcr分析表明,SsHKT1主要在叶片组织中表达,在根组织中表达较少。受K+剥夺和NaCl处理,SsHKT1转录本的数量受到发育控制,并显著上调。结果表明,SsHKT1可能在盐沙菌离子稳态和耐盐性中起重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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