Enhancing phyto-microbial remediation of petroleum-contaminated soil using sophorolipid-modified biochar: Metagenomic and metabolomic insights.

IF 7.7 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Environmental Research Pub Date : 2025-11-15 Epub Date: 2025-08-07 DOI:10.1016/j.envres.2025.122525
Yuhang Chen, Fumei Wang, Jiaqi Gao, Qinglong Liu, Jiaming Guo, Huan Liu
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引用次数: 0

Abstract

We developed KOH-activated biochar (K-BC) and sophorolipid-modified K-BC (S-K-BC) for enhancing phyto-microbial remediation of petroleum hydrocarbon (PH)-contaminated soil using Iris lactea Pall. Subsequently, three remediation systems were established: KBC-SLs (Iris lactea Pall. + 2 wt% S-K-BC), KBC + SLs (Iris lactea Pall. + 2 wt% K-BC + 3 × 10-4 mol SLs), and KBC (Iris lactea Pall. + 2 wt% K-BC) to study the enhancing effect on phyto-microbial remediation. The removal ratio of petroleum hydrocarbons (PHs) in KBC-SLs, KBC + SLs and KBC were 64.0 %, 53.6 % and 46.7 %, respectively, which were higher than that of the plant alone treatment group (27.8 %). After 90 days of remediation experiments, metagenomics showed that KBC-SLs increased the abundance of PH-degrading bacteria (Actinomycetota +34.3 %, Acidobacteriota +23.3 %) and key genes (alkB +32.3 %, nidB +49.8 %, xylC +33.4 %). Metabolomics revealed that KBC-SLs boosted PHs degradation by upregulating fatty acid and polycyclic aromatic hydrocarbons (PAHs) metabolic pathways. Association analysis of metagenomics and metabolomics showed strong positive correlations between PHs metabolites and PHs degrading microorganisms, such as palmitic acid with Bacteroidota, myristic acid with Acidobacteriota. And, strong positive correlations were observed between PHs metabolites and PHs degradation genes, such as m-toluic acid with nahE (K14585) and xylM (K15757). Additionally, KBC-SLs had enhanced the phyto-microbial remediation of PH-contaminated soil by boosting plant growth, root activity, soil enzymes, and plant-microbe synergy. This study confirms that S-K-BC effectively enhances the phyto-microbial remediation of PH-contaminated soil, providing valuable insights into green and sustainable remediation technologies.

利用槐脂修饰的生物炭加强石油污染土壤的植物微生物修复:宏基因组和代谢组学见解。
研究开发了koh活化的生物炭(K-BC)和槐脂修饰的K-BC (S-K-BC),以增强鸢鸢花对石油烃(PH)污染土壤的植物微生物修复能力。随后,建立了三种修复体系:KBC-SLs(鸢尾花)。+ 2 wt% S-K-BC), KBC+ SLs(鸢尾花)。+ 2 wt% K-BC + 3×10-4 mol SLs)和KBC(鸢尾花)。+ 2 wt% K-BC)研究对植物微生物修复的增强作用。KBC-SLs、KBC+SLs和KBC对石油烃(PHs)的去除率分别为64.0%、53.6%和46.7%,均高于植物单独处理组的27.8%。经过90天的修复实验,宏基因组学显示,KBC-SLs提高了ph降解细菌(放线菌群+34.3%,酸杆菌群+23.3%)和关键基因(alkB +32.3%, nidB +49.8%, xylC +33.4%)的丰度。代谢组学发现,KBC-SLs通过上调脂肪酸和多环芳烃(PAHs)代谢途径促进PHs降解。宏基因组学和代谢组学的关联分析显示,小ph代谢产物与小ph降解微生物(如棕榈酸与拟杆菌门、肉豆蔻酸与酸杆菌门)之间存在较强的正相关关系。ph代谢产物与ph降解基因间甲基酸与nahE (K14585)、xylM (K15757)呈正相关。此外,KBC-SLs通过促进植物生长、根系活性、土壤酶和植物-微生物协同作用,增强了ph污染土壤的植物-微生物修复能力。本研究证实了S-K-BC有效增强了ph污染土壤的植物-微生物修复,为绿色和可持续修复技术提供了有价值的见解。
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来源期刊
Environmental Research
Environmental Research 环境科学-公共卫生、环境卫生与职业卫生
CiteScore
12.60
自引率
8.40%
发文量
2480
审稿时长
4.7 months
期刊介绍: The Environmental Research journal presents a broad range of interdisciplinary research, focused on addressing worldwide environmental concerns and featuring innovative findings. Our publication strives to explore relevant anthropogenic issues across various environmental sectors, showcasing practical applications in real-life settings.
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