College of Environmental Science and Engineering, Guilin University of Technology, Guilin 541004, China.
Guangxi Key Laboratory of Environmental Pollution Control Theory and Technology, Guilin University of Technology, Guilin 541004, China.
Int J Environ Res Public Health. 2023 Feb 4;20(4):2767. doi: 10.3390/ijerph20042767.
Three degradation strains that can utilize -Hexachlorocyclohexanes (-HCH) as the sole carbon source were isolated from the soil substrate of constructed wetland under long-term -HCH stress, and they were named A1, J1, and M1. Strains A1 and M1 were identified as sp. and strain J1 was identified as sp. by 16S rRNA gene sequence analysis. The optimum conditions for degradation with these three strains, A1, J1, and M1, were pH = 7, 30 °C, and 5% inoculum amount, and the degradation rates of 50 μg/L -HCH under these conditions were 58.33%, 51.96%, and 50.28%, respectively. Degradation characteristics experiments showed that root exudates could increase the degradation effects of A1 and M1 on -HCH by 6.95% and 5.82%, respectively. In addition, the degradation bacteria A1 and J1 mixed in a ratio of 1:1 had the highest degradation rate of -HCH, which was 69.57%. An experiment on simulated soil remediation showed that the compound bacteria AJ had the best effect on promoting the degradation of -HCH in soil within 98 d, and the degradation rate of -HCH in soil without root exudates was 60.22%, whereas it reached 75.02% in the presence of root exudates. The addition of degradation bacteria or degradation bacteria-root exudates during soil remediation led to dramatic changes in the community structure of the soil microorganisms, as well as a significant increase in the proportion of aerobic and Gram-negative bacterial groups. This study can enrich the resources of -HCH degrading strains and provided a theoretical basis for the on-site engineering treatment of -HCH contamination.
从长期受到六氯环己烷(HCH)胁迫的人工湿地土壤基质中分离到 3 株能够利用 HCH 作为唯一碳源的降解菌株,分别命名为 A1、J1 和 M1。通过 16S rRNA 基因序列分析,菌株 A1 和 M1 被鉴定为 sp.,菌株 J1 被鉴定为 sp.。这 3 株菌(A1、J1 和 M1)的最佳降解条件为:pH = 7、30°C、接种量 5%,在该条件下,50μg/L HCH 的降解率分别为 58.33%、51.96%和 50.28%。降解特性实验表明,根分泌物分别可以使 A1 和 M1 对 HCH 的降解效果提高 6.95%和 5.82%。此外,A1 和 J1 降解菌以 1:1 的比例混合时,对 HCH 的降解率最高,为 69.57%。模拟土壤修复实验表明,复合菌 AJ 在 98d 内对促进土壤中 HCH 的降解效果最好,根分泌物存在时,土壤中 HCH 的降解率为 60.22%,而根分泌物不存在时,HCH 的降解率为 75.02%。在土壤修复过程中添加降解菌或降解菌-根分泌物会导致土壤微生物群落结构发生显著变化,好氧菌和革兰氏阴性菌的比例显著增加。该研究丰富了 HCH 降解菌资源,为 HCH 污染的现场工程处理提供了理论依据。