Institute of Environment and Ecology, Institute of Environmental Health and Ecological Security, School of the Environment and Safety Engineering, Jiangsu University, Zhenjiang, 212013, People's Republic of China.
Environ Sci Pollut Res Int. 2018 May;25(15):14703-14712. doi: 10.1007/s11356-018-1621-2. Epub 2018 Mar 12.
Arabidopsis thaliana was selected as model organisms to investigate the toxic effect and mechanism of four kinds of imidazolium and pyridinium ionic liquids (ILs) on plant seedling taproots. After exposure to ILs, the growth of seedling taproots was significantly inhibited in a dose-dependent manner. The toxicity of ILs on seedling taproots was [Bmim][BF] > [Bmpy][BF] > [Bmim][Br] > [Bmpy][Br]. The reduction of seedling root cell vitality, aggravation of seedling root cell death, and repression of gravitropic growth responses were observed. The amounts of HO and ROS in seedlings were enhanced with increasing concentrations of ILs. Moreover, the expression levels of cdc2a and pcna1 genes were decreased after exposure to ILs. Our results suggest that ILs can induce the overproduction of ROS in A. thaliana seedling taproots and thus cause oxidative damage to seedling taproots. Meanwhile, ILs alter the expression patterns of two cell cycle-related genes and hence cause the seedling taproot growth inhibition. This work provides an integrated understanding of the toxic effect and mechanism of ILs on A. thaliana seedlings at the molecular and physiological level and also provides theoretical basis and reference for the environmental safety evaluation of ILs, prior to their widespread use and release. Graphical abstract ᅟ.
拟南芥被选为模式生物,以研究四种咪唑鎓和吡啶鎓离子液体(ILs)对植物幼苗主根的毒性作用和机制。暴露于 ILs 后,幼苗主根的生长呈剂量依赖性显著受到抑制。ILs 对幼苗主根的毒性为 [Bmim][BF] > [Bmpy][BF] > [Bmim][Br] > [Bmpy][Br]。观察到幼苗根细胞活力降低,根细胞死亡加剧,向重力性生长反应受到抑制。随着 ILs 浓度的增加,幼苗中的 HO 和 ROS 含量增加。此外,暴露于 ILs 后,cdc2a 和 pcna1 基因的表达水平降低。我们的结果表明,ILs 可以诱导拟南芥幼苗主根中 ROS 的过度产生,从而导致幼苗主根的氧化损伤。同时,ILs 改变了两个细胞周期相关基因的表达模式,从而导致幼苗主根生长受到抑制。这项工作在分子和生理水平上为理解 ILs 对拟南芥幼苗的毒性作用和机制提供了综合认识,并为 ILs 的环境安全评价提供了理论基础和参考,以避免其广泛使用和释放带来的潜在风险。