Research Center for Soil Contamination and Environment Remediation, Southwest Forestry University, Kunming, 650224, China.
State Key Lab of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Jiangsu, 210023, PR China.
Environ Pollut. 2018 Oct;241:240-246. doi: 10.1016/j.envpol.2018.05.054. Epub 2018 May 26.
While phosphate (P) inhibits arsenic (As) uptake by plants, phytate increases As uptake by As-hyperaccumulator Pteris vittata. Here we tried to understand the underling mechanisms by investigating the roles of phytate in soil As desorption, P transport in P. vittata, short-term As uptake, and plant growth and As accumulation from soils. Sterile soil was used to exclude microbial degradation on phytate. Results showed that inorganic P released 3.3-fold more As than that of phytate from soil. However, P. vittata accumulated 2-2.5 fold more As from soils with phytate than that in control and P treatment. In addition, different from P suppression on As uptake, solution uptake experiment showed that As uptake in phytate treatment was comparable to that of control under 0.1-7.5 μM As after 1-24 h. Moreover, responding to phytate, P. vittata P transporter PvPht1;3 increased by 3-fold while PvPht1;1 decreased by 65%. The data suggested that phytate upregulated PvPht1;3, thereby contributing to As uptake in P. vittata. Our results showed that, though with lower As release from soil compared to P, phytate induced more As uptake and better growth in P. vittata by upregulating P transporters.
虽然磷酸盐 (P) 会抑制植物对砷 (As) 的吸收,但植酸会增加砷超富集植物凤尾蕨对 As 的吸收。在这里,我们试图通过研究植酸在土壤 As 解吸、凤尾蕨 P 转运、短期 As 吸收以及植物生长和从土壤中积累 As 方面的作用来了解其潜在机制。无菌土壤用于排除植酸的微生物降解。结果表明,无机 P 从土壤中释放的 As 是植酸的 3.3 倍。然而,凤尾蕨从含有植酸的土壤中积累的 As 是对照和 P 处理的 2-2.5 倍。此外,与 P 对 As 吸收的抑制作用不同,溶液吸收实验表明,在 0.1-7.5 μM As 下,1-24 h 后,植酸处理中的 As 吸收与对照相当。此外,响应植酸,凤尾蕨 P 转运蛋白 PvPht1;3 增加了 3 倍,而 PvPht1;1 减少了 65%。数据表明,植酸上调了 PvPht1;3,从而促进了凤尾蕨对 As 的吸收。我们的结果表明,尽管植酸从土壤中释放的 As 比 P 少,但通过上调 P 转运蛋白,植酸诱导凤尾蕨吸收更多的 As 并更好地生长。