Yang Guiyan, Wang Chao, Wang Yucheng, Guo Yucong, Zhao Yulin, Yang Chuanping, Gao Caiqiu
State Key Laboratory of Tree Genetics and Breeding (Northeast Forestry University), 26 Hexing Road, Harbin 150040, China.
Laboratory of Walnut Research Center, College of Forestry, Northwest A &F University, Yangling, 712100 Shaanxi, China.
Sci Rep. 2016 Jan 8;6:18752. doi: 10.1038/srep18752.
As one of the most toxic heavy metals in the environment, cadmium (Cd) poses a severe threat to plant growth. We previously reported that overexpression of the Tamarix hispida V-ATPase c subunit (ThVHAc1) improved the Cd tolerance of Saccharomyces cerevisiae. In the current study, we further explored the Cd tolerance conferred by ThVHAc1 in Arabidopsis and T. hispida. ThVHAc1 transgenic Arabidopsis had higher seed germination, biomass, and chlorophyll content under CdCl2 treatment. In Cd-stressed plants, overexpression of ThVHAc1 significantly improved V-ATPase activity and affected the expression of other V-ATPase subunit-encoding genes. Intriguingly, the lower level of ROS accumulation in ThVHAc1-overexpressing lines under CdCl2 treatment demonstrated that ThVHAc1 may modulate Cd stress tolerance by regulating ROS homeostasis. Transient expression of ThVHAc1 in T. hispida further confirmed these findings. Furthermore, promoter analysis and yeast one-hybrid assay revealed that the transcription factor ThWRKY7 can specifically bind to the WRKY cis-element in the ThVHAc1 promoter. ThWRKY7 exhibited similar expression patterns as ThVHAc1 under CdCl2 treatment and improved Cd tolerance, suggesting that ThWRKY7 may be an upstream regulatory gene of ThVHAc1. Therefore, our results show that the combination of ThVHAc1 and its upstream regulator could be used to improve Cd stress tolerance in woody plants.
作为环境中毒性最强的重金属之一,镉(Cd)对植物生长构成严重威胁。我们之前报道过,刚毛柽柳V-ATP酶c亚基(ThVHAc1)的过表达提高了酿酒酵母对镉的耐受性。在当前研究中,我们进一步探究了ThVHAc1在拟南芥和刚毛柽柳中赋予的镉耐受性。在CdCl2处理下,ThVHAc1转基因拟南芥具有更高的种子萌发率、生物量和叶绿素含量。在镉胁迫的植物中,ThVHAc1的过表达显著提高了V-ATP酶活性,并影响了其他V-ATP酶亚基编码基因的表达。有趣的是,在CdCl2处理下,ThVHAc1过表达株系中较低水平的活性氧积累表明,ThVHAc1可能通过调节活性氧稳态来调节镉胁迫耐受性。ThVHAc1在刚毛柽柳中的瞬时表达进一步证实了这些发现。此外,启动子分析和酵母单杂交试验表明,转录因子ThWRKY7可以特异性结合ThVHAc1启动子中的WRKY顺式元件。在CdCl2处理下,ThWRKY7表现出与ThVHAc1相似的表达模式,并提高了镉耐受性,这表明ThWRKY7可能是ThVHAc1的上游调控基因。因此,我们的结果表明,ThVHAc1及其上游调节因子的组合可用于提高木本植物对镉胁迫的耐受性。