Power China Huadong Engineering Corporation Limited, Hangzhou, 311122, China.
Zhejiang Environmental Technology Corporation Limited, Hangzhou, 311100, China.
Braz J Microbiol. 2023 Jun;54(2):975-981. doi: 10.1007/s42770-023-00950-2. Epub 2023 Mar 24.
Coastal wetlands are subjected to increasing tetrabromobisphenol A (TBBPA) pollution, whereas knowledge of TBBPA degradation in marine environments is lacking. The changes of bacterial communities in TBBPA-polluted soil covered with halophytes were investigated. TBBPA could be degraded in the halophyte-covered saline-alkali soil in a microcosm experiment. Higher TBBPA removal occurred in the soil of Kandelia obovata compared with soils covered with Suaeda australis and Phragmites australis within 56 days of cultivation. The rhizosphere soils of S. australis, P. australis, and K. obovata mainly involved the classes of Bacteroidia, Gammaproteobacteria, Alphaproteobacteria, and Anaerolineae. Additionally, manganese oxidation, aerobic anoxygenic phototrophy, and fermentation functions were higher in the rhizosphere soil of K. obovata after TBBPA addition. This study supports that using suitable local halophytic plants is a promising approach for degrading TBBPA-contaminated coastal soil.
滨海湿地受到越来越多的四溴双酚 A(TBBPA)污染,而有关海洋环境中 TBBPA 降解的知识却很缺乏。本研究调查了覆盖盐生植物的 TBBPA 污染土壤中细菌群落的变化。在微宇宙实验中,TBBPA 可在覆盖盐生植物的盐碱土中降解。在培养的 56 天内,与覆盖互花米草和芦苇的土壤相比,在白骨壤覆盖的土壤中 TBBPA 的去除率更高。互花米草、芦苇和白骨壤的根际土壤主要涉及拟杆菌门、γ-变形菌纲、α-变形菌纲和厌氧线菌纲。此外,在添加 TBBPA 后,白骨壤根际土壤中的锰氧化、好氧厌氧光养和发酵功能更高。本研究支持使用合适的本地盐生植物是一种很有前途的方法,可用于降解受 TBBPA 污染的沿海土壤。