Yang Chu-Wen, Lee Ching-Chang, Ku His, Chang Bea-Ven
Department of Microbiology, Soochow University, Taipei, Taiwan.
Department of Environmental and Occupational Health, College of Medicine, National Cheng Kung University, Tainan, Taiwan.
Environ Sci Pollut Res Int. 2017 Feb;24(6):5391-5403. doi: 10.1007/s11356-016-8259-8. Epub 2016 Dec 24.
This study evaluated decabromodiphenyl ether (BDE-209) anaerobic debromination and bacterial community changes in mangrove sediment. BDE-209 debromination rates were enhanced with zerovalent iron compared to without zerovalent iron in the sediment. BDE-209 debromination rates in microcosms constructed with sediments collected in autumn were higher than in microcosms constructed with sediments collected in spring and were higher at the Bali sampling site than the Guandu sampling site. The intermediate products resulting from the reductive debromination of BDE-209 in sediment were nona-BDE (BDE-206, BDE-207), octa-BDEs (BDE-196, BDE-197), hepta-BDEs (BDE-183, BDE-184, BDE-191), hexa-BDEs (BDE-137, BDE-138, BDE-154, BDE-157), penta-BDEs (BDE-85, BDE-99, BDE-100, BDE-126), tetra-BDEs (BDE-47, BDE-49, BDE-66, BDE-77), tri-BDEs (BDE-17, BDE-28), and di-BDEs (BDE-15). Fifty bacterial genera associated with BDE-209 debromination were identified. Overall, 12 of the 50 bacterial genera were reported to be involved in dehalogenation of aromatic compounds. These bacteria have high potential to be BDE-209 debromination bacteria. Different combinations of bacterial community composition exhibit different abilities for BDE-209 anaerobic debromination.
本研究评估了红树林沉积物中十溴二苯醚(BDE - 209)的厌氧脱溴作用及细菌群落变化。与沉积物中不添加零价铁相比,添加零价铁可提高BDE - 209的脱溴率。秋季采集的沉积物构建的微宇宙中BDE - 209的脱溴率高于春季采集的沉积物构建的微宇宙,且巴厘岛采样点的脱溴率高于关渡采样点。沉积物中BDE - 209还原脱溴产生的中间产物有九溴二苯醚(BDE - 206、BDE - 207)、八溴二苯醚(BDE - 196、BDE - 197)、七溴二苯醚(BDE - 183、BDE - 184、BDE - 191)、六溴二苯醚(BDE - 137、BDE - 138、BDE - 154、BDE - 157)、五溴二苯醚(BDE - 85、BDE - 99、BDE - 100、BDE - 126)、四溴二苯醚(BDE - 47、BDE - 49、BDE - 66、BDE - 77)、三溴二苯醚(BDE - 17、BDE - 28)和二溴二苯醚(BDE - 15)。鉴定出50个与BDE - 209脱溴相关的细菌属。总体而言,50个细菌属中有12个被报道参与芳香族化合物的脱卤作用。这些细菌具有成为BDE - 209脱溴细菌的高潜力。细菌群落组成的不同组合对BDE - 209厌氧脱溴表现出不同的能力。