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宏基因组分析揭示了生物可利用重金属对稻田土壤抗生素抗性组的显著影响。

Significant effects of bioavailable heavy metals on antibiotic resistome in paddy soils as revealed by metagenomic analysis.

作者信息

Hou Jie, Li Ye, Liu Mengqi, Qu Zheng, Du Zhaolin, An Yi, Yang Fengxia, Yao Yanpo

机构信息

Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, Tianjin 300191, China.

School of Environment Science and Engineering, Tianjin University, Tianjin 300350, China.

出版信息

J Hazard Mater. 2025 Jan 15;482:136587. doi: 10.1016/j.jhazmat.2024.136587. Epub 2024 Nov 19.

Abstract

Heavy metals (HMs) act as a long-term selective pressure for the emergence and maintenance of antibiotic resistance genes (ARGs) in agricultural soils. However, the effects of HMs on ARG distributions in paddy soils and the underlying mechanisms remain unclear. In this study, 74 soil samples were collected from the paddy fields to explore the impact of HMs on ARG profiles. A total of 468 ARGs were detected in HM-contaminated soils. Variation partitioning analysis (VPA) and redundancy analysis (RDA) demonstrated that the bioavailable HMs contributed more significantly to ARG composition compared to the total HM content (8.59 % vs. 3.97 %). Structural equation models (SEMs) showed that bioavailable HMs affected ARGs mainly by negatively altering the microbial diversity. Furthermore, the co-occurrence analysis of ARGs and metal resistant genes (MRGs) was further performed at the metagenome-assembled genomes (MAGs) level. Consequently, 1145 MAGs that assigned to 29 bacterial phyla were found to concurrently harbor ARGs and MRGs, with the bacterial phyla Pseudomonadota being predominant ARG-MRG-carrying microbes for most coexistence types of ARGs and MRGs, i.e., multidrug-As, polymyxin-Cd, Quinolone-Cd, Beta-lactam-Pb, and multidrug-Zn. Our findings highlight that the extensive coexistence of ARG-MRG in microbial genomes is an important reason for the ARG pollution in HM-contaminated paddy soils.

摘要

重金属(HMs)是农业土壤中抗生素抗性基因(ARGs)出现和维持的长期选择压力。然而,HMs对稻田土壤中ARG分布的影响及其潜在机制仍不清楚。在本研究中,从稻田采集了74个土壤样本,以探讨HMs对ARG谱的影响。在受HM污染的土壤中总共检测到468个ARGs。变异分配分析(VPA)和冗余分析(RDA)表明,与总HM含量相比,生物可利用的HMs对ARG组成的贡献更为显著(8.59%对3.97%)。结构方程模型(SEMs)表明,生物可利用的HMs主要通过负面改变微生物多样性来影响ARGs。此外,在宏基因组组装基因组(MAGs)水平上进一步进行了ARGs和金属抗性基因(MRGs)的共现分析。结果发现,1145个属于29个细菌门的MAGs同时携带ARGs和MRGs,对于大多数ARGs和MRGs的共存类型,即多药-砷、多粘菌素-镉、喹诺酮-镉、β-内酰胺-铅和多药-锌,假单胞菌门是主要的携带ARGs-MRGs的微生物。我们的研究结果强调,ARGs-MRGs在微生物基因组中的广泛共存是受HM污染的稻田土壤中ARG污染的重要原因。

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