Amtmann A, Fischer M, Marsh E L, Stefanovic A, Sanders D, Schachtman D P
Department of Biology, P.O. Box 373, York YO10 5YW, United Kingdom.
Plant Physiol. 2001 Jul;126(3):1061-71. doi: 10.1104/pp.126.3.1061.
Salinity affects large areas of agricultural land, and all major crop species are intolerant to high levels of sodium ions. The principal route for Na(+) uptake into plant cells remains to be identified. Non-selective ion channels and high-affinity potassium transporters have emerged as potential pathways for Na(+) entry. A third candidate for Na(+) transport into plant cells is a low-affinity cation transporter represented by the wheat protein LCT1, which is known to be permeable for a wide range of cations when expressed in yeast (Saccharomyces cerevisiae). To investigate the role of LCT1 in salt tolerance we have used the yeast strain G19, which is disrupted in the genes encoding Na(+) export pumps and as a result displays salt sensitivity comparable with wheat. After transformation with LCT1, G19 cells became hypersensitive to NaCl. We show that LCT1 expression results in a strong decrease of intracellular K(+)/Na(+) ratio in G19 cells due to the combined effect of enhanced Na(+) accumulation and loss of intracellular K(+). Na(+) uptake through LCT1 was inhibited by K(+) and Ca(2+) at high concentrations and the addition of these ions rescued growth of LCT1-transformed G19 on saline medium. LCT1 was also shown to mediate the uptake of Li(+) and Cs(+). Expression of two mutant LCT1 cDNAs with N-terminal truncations resulted in decreased Ca(2+) uptake and increased Na(+) tolerance compared with expression of the full-length LCT1. Our findings strongly suggest that LCT1 represents a molecular link between Ca(2+) and Na(+) uptake into plant cells.
盐分影响着大面积的农业用地,所有主要农作物品种都不耐受高浓度的钠离子。钠离子进入植物细胞的主要途径仍有待确定。非选择性离子通道和高亲和力钾转运体已成为钠离子进入的潜在途径。钠离子进入植物细胞的第三个候选者是一种低亲和力阳离子转运体,以小麦蛋白LCT1为代表,已知其在酵母(酿酒酵母)中表达时对多种阳离子具有通透性。为了研究LCT1在耐盐性中的作用,我们使用了酵母菌株G19,该菌株编码钠离子输出泵的基因被破坏,因此表现出与小麦相当的盐敏感性。用LCT1转化后,G19细胞对氯化钠变得高度敏感。我们发现,由于细胞内钠离子积累增强和钾离子流失的综合作用,LCT1的表达导致G19细胞内钾离子/钠离子比值大幅下降。高浓度的钾离子和钙离子抑制了通过LCT1的钠离子摄取,添加这些离子挽救了LCT1转化的G19在盐培养基上的生长。LCT1还被证明介导锂离子和铯离子的摄取。与全长LCT1的表达相比,两个具有N端截短的突变LCT1 cDNA的表达导致钙离子摄取减少和耐钠离子能力增强。我们的研究结果强烈表明,LCT1代表了钙离子和钠离子进入植物细胞之间的分子联系。