Land Contamination Assessment and Remediation Laboratory, Institute of Geographical Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, PR China; China Geological Environmental Monitoring Institute, Beijing 100081, PR China.
Land Contamination Assessment and Remediation Laboratory, Institute of Geographical Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, PR China; Chinese Academy for Environmental Planning, Beijing, PR China.
Sci Total Environ. 2018 May 15;624:683-690. doi: 10.1016/j.scitotenv.2017.12.169. Epub 2017 Dec 27.
This study examined the effects of P. vittata and a polycyclic aromatic hydrocarbon (PAH)-degrading bacterium (Alcaligenes sp.) on arsenic (As) uptake and phenanthrene dissipation. Bacterial inoculation substantially increased As accumulation in plants by 27.8% (frond) and 27.5% (root) at 60d, respectively, compared with the non-inoculated treatment, although temporal change of As translocation and reduction in plants was observed. Bacterial inoculation positively affected plants by improving growth, nutrition and antioxidative activities, and helped to modify soil As availability to the plants, which may benefit in plant tolerance and As accumulation. Plant and bacteria association enhanced phenanthrene dissipation from the soil, with the highest dissipation rate of 96.4% at 60d in the rhizosphere, which might be associated with enhanced bacterial population and activity inspired by the growth of plant. The result reveals that combination of P. vittata and PAH-degrading bacteria can promote As accumulation and phenanthrene dissipation, and can be exploited as a promising strategy for As and PAH co-contamination remediation.
本研究考察了蜈蚣草和多环芳烃(PAH)降解菌(产碱杆菌)对砷(As)吸收和菲降解的影响。与未接种处理相比,细菌接种分别使植物中 As 积累增加了 27.8%(叶片)和 27.5%(根系),在 60d 时,尽管观察到 As 迁移和还原在植物中的时间变化。细菌接种通过改善植物的生长、营养和抗氧化活性,对植物产生了积极的影响,并有助于改变土壤中 As 的植物有效性,这可能有利于植物的耐受性和 As 的积累。植物和细菌的共生关系促进了土壤中菲的降解,在 60d 时根际的最大降解率为 96.4%,这可能与植物生长激发的细菌种群和活性的增强有关。研究结果表明,蜈蚣草和 PAH 降解菌的组合可以促进 As 的积累和菲的降解,可作为一种有前途的策略,用于 As 和 PAH 复合污染修复。