Asian Natural Environmental Science Center (ANESC), The University of Tokyo, 1-1-1 Midori-Cho, Nishitokyo, Tokyo 188-0002, Japan.
Plant Cell Rep. 2010 Aug;29(8):865-74. doi: 10.1007/s00299-010-0872-2. Epub 2010 Jun 8.
Potassium channels are important for many physiological functions in plants, one of which is to regulate plant adaptation to stress conditions. In this study, a K(+) channel PutAKT1 cDNA was isolated from the salt-tolerant plant Puccinellia tenuiflora. A phylogenetic analysis showed that PutAKT1 belongs to the AKT1-subfamily in the Shaker K(+) channel family. PutAKT1 was localized in the plasma membrane and it was preferentially expressed in the roots. The expression of PutAKT1 was induced by K(+)-starvation stress in the roots and was not down-regulated by the presence of excess Na(+). Arabidopsis plants over-expressing PutAKT1 showed enhanced salt tolerance compared to wild-type plants as shown by their shoot phenotype and dry weight. Expression of PutAKT1 increased the K(+) content of Arabidopsis under normal, K(+)-starvation, and NaCl-stress conditions. Arabidopsis expressing PutAKT1 also showed a decrease in Na(+) accumulation both in the shoot and in the root. These results suggest that PutAKT1 is involved in mediating K(+) uptake (i) both in low- and in high-affinity K(+) uptake range, and (ii) unlike its homologs in rice, even under salt-stress condition.
钾通道对于植物的许多生理功能都很重要,其中之一是调节植物对胁迫条件的适应。在这项研究中,从耐盐植物星星草中分离出了一个 K(+)通道 PutAKT1 cDNA。系统发育分析表明,PutAKT1 属于 Shaker K(+) 通道家族中的 AKT1 亚家族。PutAKT1 定位于质膜上,在根中优先表达。PutAKT1 的表达受根中 K(+)-饥饿胁迫诱导,但不受过量 Na(+)存在的下调。与野生型植物相比,过表达 PutAKT1 的拟南芥植物表现出增强的耐盐性,表现在其茎表型和干重上。在正常、K(+)-饥饿和 NaCl 胁迫条件下,PutAKT1 的表达增加了拟南芥中的 K(+)含量。在茎和根中,表达 PutAKT1 的拟南芥的 Na(+)积累也减少了。这些结果表明,PutAKT1 参与调节 K(+)的摄取:(i)在低亲和和高亲和 K(+)摄取范围内,(ii)与水稻中的同源物不同,即使在盐胁迫条件下也是如此。