Duan Xiao-Guang, Yang Ai-Fang, Gao Feng, Zhang Shang-Li, Zhang Ju-Ren
School of Life Science, Shandong University, Jinan, People's Republic of China.
Protoplasma. 2007;232(1-2):87-95. doi: 10.1007/s00709-007-0268-5. Epub 2007 Dec 19.
The vacuolar H(+)-translocating inorganic pyrophosphatase (H(+)-PPase) uses pyrophosphate as substrate to generate the proton electrochemical gradient across the vacuolar membrane to acidify vacuoles in plant cells. The heterologous expression of H(+)-PPase genes (TsVP from Thellungiella halophila and AVP1 from Arabidopsis thaliana) improved the salt tolerance of tobacco plants. Under salt stress, the transgenic seedlings showed much better growth and greater fresh weight than wild-type plants, and their protoplasts had a normal appearance and greater vigor. The cytoplasmic and vacuolar pH in transgenic and wild-type cells were measured with a pH-sensitive fluorescence indicator. The results showed that heterologous expression of H(+)-PPase produced an enhanced proton electrochemical gradient across the vacuolar membrane, which accelerated the sequestration of sodium ions into the vacuole. More Na(+) accumulated in the vacuoles of transgenic cells under salt (NaCl) stress, revealed by staining with the fluorescent indicator Sodium Green. It was concluded that the tonoplast-resident H(+)-PPase plays important roles in the maintenance of the proton gradient across the vacuolar membrane and the compartmentation of Na(+) within vacuoles, and heterologous expression of this protein enhanced the electrochemical gradient across the vacuolar membrane, thereby improving the salt tolerance of tobacco cells.
液泡H⁺转运无机焦磷酸酶(H⁺-PPase)利用焦磷酸作为底物,在液泡膜上产生质子电化学梯度,从而使植物细胞中的液泡酸化。H⁺-PPase基因(盐芥的TsVP和拟南芥的AVP1)的异源表达提高了烟草植株的耐盐性。在盐胁迫下,转基因幼苗的生长状况和鲜重均优于野生型植株,其原生质体外观正常且活力更强。用pH敏感荧光指示剂测量转基因细胞和野生型细胞的细胞质和液泡pH值。结果表明,H⁺-PPase的异源表达增强了液泡膜上的质子电化学梯度,加速了钠离子向液泡的隔离。荧光指示剂Sodium Green染色显示,在盐(NaCl)胁迫下,转基因细胞的液泡中积累了更多的Na⁺。得出的结论是,定位于液泡膜的H⁺-PPase在维持液泡膜上的质子梯度以及液泡内Na⁺的区室化过程中发挥重要作用,该蛋白的异源表达增强了液泡膜上的电化学梯度,从而提高了烟草细胞的耐盐性。