Apse Maris P, Sottosanto Jordan B, Blumwald Eduardo
Department of Pomology, University of California, One Shields Ave, Davis, CA 95616, USA.
Plant J. 2003 Oct;36(2):229-39. doi: 10.1046/j.1365-313x.2003.01871.x.
The function of vacuolar Na+/H+ antiporter(s) in plants has been studied primarily in the context of salinity tolerance. By facilitating the accumulation of Na+ away from the cytosol, plant cells can avert ion toxicity and also utilize vacuolar Na+ as osmoticum to maintain turgor. As many genes encoding these antiporters have been cloned from salt-sensitive plants, it is likely that they function in some capacity other than salinity tolerance. The wide expression pattern of Arabidopsis thaliana sodium proton exchanger 1 (AtNHX1) in this study supports this hypothesis. Here, we report the isolation of a T-DNA insertional mutant of AtNHX1, a vacuolar Na+/H+ antiporter in Arabidopsis. Vacuoles isolated from leaves of the nhx1 plants had a much lower Na+/H+ and K+/H+ exchange activity. nhx1 plants also showed an altered leaf development, with reduction in the frequency of large epidermal cells and a reduction in overall leaf area compared to wild-type plants. The overexpression of AtNHX1 in the nhx1 background complemented these phenotypes. In the presence of NaCl, nhx1 seedling establishment was impaired. These results place AtNHX1 as the dominant K+ and Na+/H+ antiporter in leaf vacuoles in Arabidopsis and also suggest that its contribution to ion homeostasis is important for not only salinity tolerance but development as well.
植物液泡Na⁺/H⁺逆向转运蛋白的功能主要是在耐盐性背景下进行研究的。通过促进Na⁺在远离细胞质的区域积累,植物细胞可以避免离子毒性,还能利用液泡中的Na⁺作为渗透剂来维持膨压。由于已经从盐敏感植物中克隆出许多编码这些逆向转运蛋白的基因,它们很可能具有除耐盐性之外的其他功能。本研究中拟南芥钠氢交换体1(AtNHX1)广泛的表达模式支持了这一假设。在这里,我们报道了拟南芥中液泡Na⁺/H⁺逆向转运蛋白AtNHX1的一个T-DNA插入突变体的分离。从nhx1植株叶片中分离的液泡具有低得多的Na⁺/H⁺和K⁺/H⁺交换活性。与野生型植株相比,nhx1植株还表现出叶片发育改变,大型表皮细胞频率降低,总叶面积减小。在nhx1背景下AtNHX1的过表达弥补了这些表型。在NaCl存在的情况下,nhx1幼苗的建立受到损害。这些结果表明AtNHX1是拟南芥叶片液泡中主要的K⁺和Na⁺/H⁺逆向转运蛋白,也表明其对离子稳态的贡献不仅对耐盐性很重要,对发育也很重要。