Centro de Ciências do Mar (CCMAR), Universidade do Algarve, Faculdade de Ciências e de Tecnologia, Departamento de Química e Farmácia, Faro, Portugal.
J Hazard Mater. 2011 Dec 15;197:237-43. doi: 10.1016/j.jhazmat.2011.09.076. Epub 2011 Sep 28.
A highly bromate resistant bacterial community and with ability for bromate removal was obtained from a sulphate-reducing bacteria enrichment consortium. This community was able to remove 96% of bromate and 99% of sulphate from an aqueous solution containing 40 μM bromate and 10 mM sulphate. Moreover, 93% of bromate was removed in the absence of sulphate. Under this condition bromate was reduced stoichiometrically to bromide. However, in the presence of sulphate only 88% of bromate was reduced to bromide. Although, bromate removal was not affected by the absence of sulphate, this anion promoted a modification on the structure of the bacterial community. Phylogenetic analysis of 16S rRNA gene showed that the community grown in the presence of bromate and sulphate was mainly composed by bacteria closely to Clostridium and Citrobacter genera, while the community grown in the absence of sulphate was predominantly composed by Clostridium genus. It is the first time that Clostridium and Citrobacter genera are reported as having bromate removal ability. Furthermore, bromate removal by the consortium predominantly composed by Clostridium and Citrobacter genera occurred by enzymatic reduction and by extracellular metabolic products, while the enzymatic process was the only mechanism involved in bromate removal by the consortium mainly composed by Clostridium genus.
从硫酸盐还原菌富集共生体中获得了一种对高溴酸盐具有抗性且具有去除溴酸盐能力的细菌群落。该群落能够从含有 40 μM 溴酸盐和 10 mM 硫酸盐的水溶液中去除 96%的溴酸盐和 99%的硫酸盐。此外,在没有硫酸盐的情况下,有 93%的溴酸盐被去除。在此条件下,溴酸盐被化学计量还原为溴化物。然而,在存在硫酸盐的情况下,只有 88%的溴酸盐被还原为溴化物。尽管硫酸盐的存在并不影响溴酸盐的去除,但该阴离子促进了细菌群落结构的改变。16S rRNA 基因的系统发育分析表明,在含有溴酸盐和硫酸盐的条件下生长的群落主要由与梭菌属和柠檬酸杆菌属密切相关的细菌组成,而在没有硫酸盐的条件下生长的群落主要由梭菌属组成。这是首次报道梭菌属和柠檬酸杆菌属具有去除溴酸盐的能力。此外,主要由梭菌属和柠檬酸杆菌属组成的共生体去除溴酸盐主要通过酶促还原和细胞外代谢产物进行,而主要由梭菌属组成的共生体去除溴酸盐的酶促过程是唯一涉及的机制。