Natural Revegetation Alters Habitat Conditions, Bacterial Components, and Polycyclic Aromatic Hydrocarbon (PAH)-Degrading Communities in Aged PAH-Polluted Soils.

IF 4.2 2区 生物学 Q2 MICROBIOLOGY
Jinrong Huang, Heng Liang, Lilong Huang, Qi Li, Lei Ji, Yingna Xing, Chang Zhou, Jianing Wang, Xiaowen Fu
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Abstract

The vegetation restoration of contaminated sites plays a critical role in ensuring the sustained stability and functional integrity of natural ecosystems. However, during the natural revegetation process, the variations in habitat conditions, bacterial community structure, and metabolic functions in aged, polluted soil are still unclear. In the present study, we investigated aged, polycyclic aromatic hydrocarbon (PAH)-polluted soils at closed, abandoned oil well sites from the Yellow River Delta. Using gene amplification and real-time qPCR methods, the abundance, taxonomy, and diversity characteristics of indigenous bacterial communities and functional bacteria carrying C12O genes in both vegetated soils and bare soils were investigated. The results show that natural revegetation significantly changes the physicochemical parameters, PAH content, and bacterial community structure of aged, PAH-polluted soils. When comparing the abundance and components of PAH-degrading bacterial communities in vegetated and bare soils, the PAH-degrading potential was revealed to be stimulated by vegetation communities. Through correlation analysis, dual stress from soil salinity and PAH contamination in bacterial communities was revealed to be mediated through alterations in the soil's physicochemical properties by local vegetation. The network analysis revealed that bacterial communities in vegetated soils have higher network connectivity. These results elucidate the alterations in habitat conditions, bacterial components, and PAH-degrading communities following vegetation restoration, providing critical insights for optimizing ecological rehabilitation strategies in salinized and contaminated ecosystems.

自然植被恢复改变了多环芳烃污染土壤的生境条件、细菌组成和多环芳烃降解群落
污染场地的植被恢复对确保自然生态系统的持续稳定和功能完整具有至关重要的作用。然而,在自然植被恢复过程中,老化污染土壤的生境条件、细菌群落结构和代谢功能的变化尚不清楚。在本研究中,我们研究了黄河三角洲封闭废弃油井遗址中老化、多环芳烃(PAH)污染的土壤。采用基因扩增和实时qPCR方法,研究了植被土壤和裸地土壤中携带c120基因的原生细菌群落和功能细菌的丰度、分类和多样性特征。结果表明,自然植被恢复显著改变了老化、多环芳烃污染土壤的理化参数、多环芳烃含量和细菌群落结构。通过比较植被和裸地土壤中降解多环芳烃的细菌群落的丰度和组成,揭示了植被群落对多环芳烃的降解潜力的促进作用。通过相关分析,揭示了土壤盐度和多环芳烃污染对细菌群落的双重胁迫是通过当地植被对土壤理化性质的改变来介导的。网络分析表明,植被土壤中细菌群落具有较高的网络连通性。这些结果阐明了植被恢复后生境条件、细菌组成和多环芳烃降解群落的变化,为优化盐碱化和污染生态系统的生态恢复策略提供了重要见解。
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来源期刊
Microorganisms
Microorganisms Medicine-Microbiology (medical)
CiteScore
7.40
自引率
6.70%
发文量
2168
审稿时长
20.03 days
期刊介绍: Microorganisms (ISSN 2076-2607) is an international, peer-reviewed open access journal which provides an advanced forum for studies related to prokaryotic and eukaryotic microorganisms, viruses and prions. It publishes reviews, research papers and communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files and software regarding the full details of the calculation or experimental procedure, if unable to be published in a normal way, can be deposited as supplementary electronic material.
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