Key Laboratory of Integrated Regulation and Resource Development on Shallow Lake of Ministry of Education, College of Environment, HoHai University, Nanjing 210098, China.
Key Laboratory of Integrated Regulation and Resource Development on Shallow Lake of Ministry of Education, College of Environment, HoHai University, Nanjing 210098, China.
J Hazard Mater. 2023 Oct 15;460:132380. doi: 10.1016/j.jhazmat.2023.132380. Epub 2023 Aug 23.
Although organophosphate esters (OPEs) degradation has been widely studied, the degradation of their metabolites is always ignored. Triisobutyl phosphate (TiBP), a typical alkyl-OPEs, is of emerging concern because of its potential ecotoxicity in the environment. This study provides comprehensive understanding about the degradation of TiBP and one of its metabolites, diisobutyl phosphate (DiBP) using activated sludge (AS). The results showed that TiBP and DiBP were degraded mainly through hydrolysis, dehydrogenation, and hydroxylation. The degradation kinetics indicated that DiBP had similar transformation rates to its parent TiBP in AS, highlighting the importance of metabolite DiBP study. Dehydrogenase, hydroxylase, phosphotriesterase, phosphodiesterase, and phosphomonoesterase played an important role in contributing to TiBP and its metabolites degradation via enzyme activity analysis. Besides, the expression of genes encoding these enzymes in bacteria and the relative abundance change of bacterial populations indicated that Sphingomonas and Pseudomonas may be the degrading bacteria of TiBP and Pseudomonas may be the main degrading bacteria of DiBP. This study provides new perspectives for metabolite DiBP and its parent TiBP degradation. It highlights that the formation and degradation of metabolites must be considered into the future researches.
虽然有机磷酸酯 (OPEs) 的降解已经得到了广泛的研究,但它们的代谢物的降解往往被忽视。磷酸三异丁酯 (TiBP) 是一种典型的烷基-OPEs,由于其在环境中的潜在生态毒性而受到关注。本研究使用活性污泥 (AS) 对 TiBP 和其一种代谢物二异丁基磷酸 (DiBP) 的降解进行了全面的研究。结果表明,TiBP 和 DiBP 主要通过水解、脱氢和羟化作用进行降解。降解动力学表明,DiBP 在 AS 中的转化速率与其母体 TiBP 相似,这突出了研究代谢物 DiBP 的重要性。通过酶活性分析,脱氢酶、羟化酶、磷酸三酯酶、磷酸二酯酶和磷酸单酯酶在 TiBP 和其代谢物的降解中发挥了重要作用。此外,细菌中编码这些酶的基因的表达和细菌种群的相对丰度变化表明,鞘氨醇单胞菌和假单胞菌可能是 TiBP 的降解菌,而假单胞菌可能是 DiBP 的主要降解菌。本研究为代谢物 DiBP 及其母体 TiBP 的降解提供了新的视角。它强调了在未来的研究中必须考虑到代谢物的形成和降解。