Institute of Plant Nutrition and Resources, Beijing Academy of Agriculture and Forestry Sciences, Beijing, 100097, China.
Beijing Beike Environmental Engineering Co., Ltd., Beijing, 100080, China.
Environ Pollut. 2020 Jun;261:114204. doi: 10.1016/j.envpol.2020.114204. Epub 2020 Feb 18.
Antibiotic and heavy metal pollution of aquatic environments are issues of serious concern, and the macrophyte Myriophyllum aquaticum may provide a viable solution for the removal of these contaminants. However, the toxic effects of coexisting tetracyclines (TCs) and Cu(II) on this plant species are currently unclear. In the present study, we constructed wetland microcosms planted with M. aquaticum and spiked these with three TCs (tetracycline, oxytetracycline, and chlortetracycline) and Cu(II) at concentrations ranging from 100 to 10,000 μg/L to investigate how Cu(II) influences the growth and tolerance responses of plants to TCs. After 12 weeks, we found that TCs had accumulated in the plants, and that plant growth and characteristics were significantly affected by the levels of both TCs and Cu(II). While low Cu(II) levels had a synergistic effect on the accumulation of TCs, high levels were observed to reduce accumulation. However, low levels of TCs and Cu(II) had a hormesis effect on plant growth, with plant biomass and leaf chlorophyll content decreasing and the malondialdehyde content and activities of antioxidant enzymes gradually increasing with an increase in TC dosage. The coexistence of low levels of Cu(II) was, however, found to alleviate these adverse effects. Principal component analysis revealed a close relationship among plant biomass, chlorophyll content, malondialdehyde content, and antioxidant enzyme activities. Considering that the Cu/TC ratio was shown to markedly affect M. aquaticum growth, the respective proportions of these pollutants should be taken into consideration in the future design of constructed wetlands.
水生环境中的抗生素和重金属污染是严重关切的问题,而水生植物金鱼藻可能为去除这些污染物提供了可行的解决方案。然而,共存的四环素(TCs)和 Cu(II)对该植物物种的毒性影响目前尚不清楚。在本研究中,我们构建了种植金鱼藻的湿地微宇宙,并在其中添加了三种 TCs(四环素、土霉素和金霉素)和 Cu(II),浓度范围从 100 到 10,000μg/L,以研究 Cu(II)如何影响植物对 TCs 的生长和耐受响应。经过 12 周后,我们发现 TCs 在植物中积累,植物生长和特性受到 TCs 和 Cu(II)水平的显著影响。虽然低 Cu(II)水平对 TCs 的积累有协同作用,但高浓度时观察到积累减少。然而,低水平的 TCs 和 Cu(II)对植物生长有兴奋作用,随着 TC 剂量的增加,植物生物量和叶片叶绿素含量下降,丙二醛含量和抗氧化酶活性逐渐增加。然而,发现低水平的 Cu(II)共存可以减轻这些不利影响。主成分分析表明植物生物量、叶绿素含量、丙二醛含量和抗氧化酶活性之间存在密切关系。考虑到 Cu/TC 比值显著影响金鱼藻的生长,在未来的人工湿地设计中,应考虑这些污染物的各自比例。