Research Institute of Engineering and Technology, Korea University, Seoul, South Korea.
School of Civil, Environmental and Architectural Engineering, Korea University, Seoul, South Korea.
J Hazard Mater. 2021 Sep 15;418:126365. doi: 10.1016/j.jhazmat.2021.126365. Epub 2021 Jun 10.
As the most widely used anionic surfactant, linear alkylbenzene sulfonate (LAS) requires biological alkane degradation when it is treated using an activated sludge (AS) process in a wastewater treatment plant because of its structural carboxylic unavailability. As consumption of LAS is gradually increasing, LAS loading into the WWTP is accordingly increasing. However, fewer studies have examined the involvement of the AS microbial community in the LAS degradation. In this study, metagenomic approaches were used to define microbiomes involved in LAS degradation in AS, with a particular focus on ω-hydroxylation. The abundance and diversity of alkane-degrading genes were investigated, and these genes were integrated with reconstructed metagenome-assembled genomes (MAGs). Additionally, the association of functional genes and MAGs with respect to LAS degradation was investigated. The results showed that alkB and cytochrome P450 genes were only shared within specific MAGs. Unique sets of genes with diverse abundances were detected in each sample. The MAGs with the alkB and cytochrome P450 genes were strongly associated with the other MAGs and involved in positive commensal interactions. The findings provided significant insights into how the AS microbiomes, which have continuously treated anionic surfactants for decades, potentially metabolize LAS and interact with commensal bacteria.
作为最广泛使用的阴离子表面活性剂,直链烷基苯磺酸盐(LAS)由于其结构上的羧基不可用,因此在污水处理厂的活性污泥(AS)工艺中处理时需要进行生物烷烃降解。随着 LAS 的消耗逐渐增加,LAS 进入 WWTP 的负荷也相应增加。然而,很少有研究探讨 AS 微生物群落在 LAS 降解中的作用。在这项研究中,采用宏基因组学方法来确定 AS 中参与 LAS 降解的微生物组,特别关注 ω-羟化作用。研究了烷烃降解基因的丰度和多样性,并将这些基因与重建的宏基因组组装基因组(MAGs)进行了整合。此外,还研究了功能基因和 MAGs 与 LAS 降解的关联。结果表明,alkB 和细胞色素 P450 基因仅在特定的 MAGs 中共享。在每个样品中都检测到了具有不同丰度的独特基因集。具有 alkB 和细胞色素 P450 基因的 MAGs 与其他 MAGs 密切相关,并参与了正共生相互作用。这些发现为了解 AS 微生物组如何潜在地代谢 LAS 并与共生细菌相互作用提供了重要的见解,这些微生物组已经连续几十年处理阴离子表面活性剂。