Laboratory of Plant Biotechnology and Improvement, University of Sfax, Center of Biotechnology of Sfax, Route Sidi Mansour, Km 6 B.P' 1177, 3018, Sfax, Tunisia.
Environ Sci Pollut Res Int. 2019 Dec;26(36):37037-37045. doi: 10.1007/s11356-019-06852-x. Epub 2019 Nov 19.
One of the most important strategies evolved by plants to tolerate heavy metals (HMs) is their sequestration into the vacuole. Recent studies have demonstrated that Cu sequestration into vacuole is dependent on the electrochemical gradient generated by vacuolar proton pumps: the V-H-PPase and the V-H-ATPase. In a previous study, we demonstrated that co-expression of V-H-PPase and a sodium/proton antiporter genes, isolated from wheat, in transgenic tobacco plants significantly increases both H pumping activity of the endogenous V-H-ATPase and V-H-PPase compared to wild-type (WT) plants, all grown in the absence of stress. In the present study, we evaluated the effect of expression, in tobacco, of vacuolar proton pump, TaVP1, singly or in combination with sodium/proton antiporter, TaNHXS1, on copper (Cu) tolerance and accumulation. Results showed that, when subjected to Cu stress, TaVP1 single transgenic tobacco lines exhibited a more robust root system, greater biomass production, less chlorophyll loss, lower MDA and HO production, and higher catalase activity and accumulated more Cu than did WT. Interestingly, double transgenic tobacco lines exhibited the best Cu tolerance and accumulation than either of the single TaVP1 transgenic lines or WT plants, when subjected to excess Cu. In fact, double transgenic lines accumulated 2.5-fold and 1.9-fold more Cu than did WT and single TaVP1 lines, respectively. Thus, these results clearly demonstrate the usefulness of expression of vacuolar proton pump alone or in combination with sodium/proton antiporter as novel strategy for Cu phytoremediation.
植物耐受重金属(HM)的最重要策略之一是将其螯合到液泡中。最近的研究表明,Cu 螯合到液泡中依赖于液泡质子泵产生的电化学梯度:V-H-PPase 和 V-H-ATPase。在之前的一项研究中,我们证明了在转基因烟草植物中共同表达 V-H-PPase 和一种从小麦中分离的钠离子/质子反向转运蛋白基因,与野生型(WT)植物相比,显着增加了内源性 V-H-ATPase 和 V-H-PPase 的 H 泵活性,所有这些植物在没有胁迫的情况下生长。在本研究中,我们评估了在烟草中表达液泡质子泵 TaVP1 单独或与钠离子/质子反向转运蛋白 TaNHXS1 组合对铜(Cu)耐受性和积累的影响。结果表明,在受到 Cu 胁迫时,TaVP1 单转基因烟草系表现出更健壮的根系、更高的生物量生产、更少的叶绿素损失、更低的 MDA 和 HO 产生、更高的过氧化氢酶活性和积累更多的 Cu,而 WT 则不然。有趣的是,当受到过量 Cu 胁迫时,双转基因烟草系表现出比任何单 TaVP1 转基因系或 WT 植物更好的 Cu 耐受性和积累。事实上,双转基因系分别比 WT 和单 TaVP1 系积累了 2.5 倍和 1.9 倍的 Cu。因此,这些结果清楚地表明,表达液泡质子泵单独或与钠离子/质子反向转运蛋白组合作为 Cu 植物修复的新策略是有用的。