State Key Laboratory of Estuarine and Coastal Researches, East China Normal University, Shanghai, China.
State Key Laboratory of Estuarine and Coastal Researches, East China Normal University, Shanghai, China.
Ecotoxicol Environ Saf. 2018 May 30;153:91-100. doi: 10.1016/j.ecoenv.2018.02.008. Epub 2018 Feb 6.
Tidal flat elevation in the estuarine wetland determines the tidal flooding time and flooding frequency, which will inevitably affect the formation of iron plaque and accumulations of heavy metals (HMs) in wetland plants. The present study investigated the formation of iron plaque and HM's (copper, zinc, lead, and chromium) accumulation in S. alterniflora, a typical estuarine wetland species, at different tidal flat elevations (low, middle and high) in filed and at different time (3, 6, 9, 12 h per day) of waterlogging treatment in greenhouse conditions. Results showed that the accumulation of copper, zinc, lead, and chromium in S. alterniflora was proportional to the exchangeable fraction of these metals in the sediments, which generally increased with the increase of waterlogging time, whereas the formations of iron plaque in roots decreased with the increase of waterlogging time. Under field conditions, the uptake of copper and zinc in the different parts of the plants generally increased with the tidal levels despite the decrease in the metals' exchangeable fraction with increasing tidal levels. The formation of iron plaque was found to be highest in the middle tidal positions and significantly lower in low and high tidal positions. Longer waterlogging time increased the metals' accumulation but decreased the formation of iron plaque in S. alterniflora. The binding of metal ions on iron plaque helped impede the uptake and accumulation of copper and chromium in S. alterniflora.
潮滩抬升决定了河口湿地的潮水淹没时间和频率,这不可避免地会影响湿地植物中铁锈的形成和重金属(HM)的积累。本研究在野外不同潮滩高程(低、中、高)和温室条件下不同淹水时间(每天 3、6、9、12 小时)处理下,调查了典型河口湿地物种互花米草中铁锈和 HM(铜、锌、铅、铬)积累的形成。结果表明,互花米草对铜、锌、铅、铬的积累与沉积物中这些金属的可交换分数成正比,通常随淹水时间的增加而增加,而根中铁锈的形成随淹水时间的增加而减少。在野外条件下,尽管随着潮汐水平的升高,金属的可交换分数降低,但植物不同部位对铜和锌的吸收仍随潮汐水平的升高而增加。在中间潮位形成的铁斑最高,而在低和高潮位形成的铁斑则明显较低。较长的淹水时间会增加金属的积累,但会减少互花米草中铁锈的形成。金属离子与铁斑的结合有助于阻碍铜和铬在互花米草中的吸收和积累。