Ministry of Education Key Laboratory of Pollution Processes and Environmental Criteria/Tianjin Key Laboratory of Environmental Technology for Complex Trans-Media Pollution, Nankai University, Tianjin, 300071, China.
Ministry of Education Key Laboratory of Pollution Processes and Environmental Criteria/Tianjin Key Laboratory of Environmental Technology for Complex Trans-Media Pollution, Nankai University, Tianjin, 300071, China.
Environ Pollut. 2019 Sep;252(Pt A):171-179. doi: 10.1016/j.envpol.2019.05.113. Epub 2019 May 22.
Organic pollutants are widely detected in surface water, groundwater and irrigation sewage in farmland soil, some of which can form complexes with heavy metal ions as ligands in the environment. Acesulfame (ACE), one of the most popular artificial sweeteners, has been found in wastewater sometimes at tens of microgram per liter. However, the combined effects of heavy metals and ACE are still unclear. In the present study, the effects of ACE on cadmium (Cd) absorption and translocation in rice seedlings (Oryza sativa L.) under different exposure conditions were investigated using hydroponic experiments. Under the combined exposure treatments of ACE and Cd, absorption of Cd and ACE in rice significantly decreased when compared with the single exposure treatments, while the alleviation of oxidative damage in rice was also found. Under the sequential exposure treatments of Cd and ACE, the post-exposed ACE activated the pre-absorbed Cd in plant, and accelerated the release of Cd to the environment as well as its translocation from the roots to shoots. In addition, compared with the single Cd exposure, the accumulated ACE can alleviate the oxidative damage in rice shoots induced by Cd, although the Cd concentrations in shoots changed little. In summary, the combined pollution of artificial sweetener ACE was beneficial to relieve the toxicological damage and ecological risk caused by Cd.
有机污染物广泛存在于地表水、地下水和农田土壤灌溉污水中,其中一些污染物可以在环境中与重金属离子形成配合物作为配体。乙酰磺胺酸钾(ACE)是最受欢迎的人工甜味剂之一,有时在废水中的浓度可达数十微克/升。然而,重金属和 ACE 的联合效应仍不清楚。本研究采用水培实验,研究了 ACE 对不同暴露条件下水稻幼苗(Oryza sativa L.)吸收和转运镉(Cd)的影响。与单一暴露处理相比,在 ACE 和 Cd 的联合暴露处理下,水稻对 Cd 和 ACE 的吸收明显减少,同时也发现了水稻氧化损伤的缓解。在 Cd 和 ACE 的顺序暴露处理下,后暴露的 ACE 激活了植物预先吸收的 Cd,加速了 Cd 向环境的释放以及从根部向地上部的转运。此外,与单一 Cd 暴露相比,积累的 ACE 可以缓解 Cd 诱导的水稻地上部氧化损伤,尽管地上部 Cd 浓度变化不大。综上所述,人工甜味剂 ACE 的复合污染有利于缓解 Cd 引起的毒理学损伤和生态风险。