Persistent antimicrobial resistance during soil remediation driven by residual heavy metal co-selection

环境修复 抵抗性 生物 基因组 抗性(生态学) 生物修复 土壤污染 抗生素耐药性 土壤微生物学 土壤水分 生态学 环境化学 微生物 生物技术 微生物生态学 土壤修复 土壤健康 环境DNA 生态系统 土壤污染物 生物多样性 污染 环境科学 表土 污染土地 植物修复 微生物种群生物学 补救措施 冶炼 土壤分类 生物强化
作者
Rui Xue,Yiyue Zhang,Hongzhe Li,J. Li,Wenshun Ke,Shilin Hu,Chaoran Li,Faith Ka Shun Chan,Li Cui
出处
期刊:The ISME Journal [Springer Nature]
卷期号:20 (1) 被引量:1
标识
DOI:10.1093/ismejo/wrag058
摘要

Remediation of heavy metal-contaminated soil is a global priority, particularly as reclaimed land increasingly intersects with urban development and human exposure. However, the ecological consequences of soil remediation, especially its impact on antimicrobial resistance (AMR) as a global health threat, have remained poorly understood. Here, we combined single-cell Raman-D₂O probing with genome-resolved metagenomics to monitor the dynamics of phenotypic and genotypic resistance to metals and antibiotics during a 120-day remediation of soils with three contamination levels from a lead-zinc smelting site. Although chemical remediation substantially reduced bioavailable metals (by 42%-65%), AMR was not diminished. Instead, both phenotypic activity and gene abundance of metal- and antibiotic-resistant microorganisms increased, resulting in a two- to three-fold increase in AMR-associated health risks. Among 76 metagenome assembled genomes (MAGs) from phenotypic resistance communities, all Cd resistance-associated MAGs harbored multidrug resistance genes, half of which were colocalized with metal resistance determinants, and their prevalence continued to rise with remediation. These findings reveal that although remediation alleviates acute metal toxicity, residual low-concentration bioavailable metals sustain evolutionary selection for resistance, highlighting a disconnect between chemical recovery and biological safety. Moreover, the improved soil nutrient and physiochemical properties of remediated soils further promoted the proliferation of antibiotic-resistant bacteria. This study offers new ecological insights into the unintended consequences of anthropogenic interventions, underscoring the need to integrate biological safety into soil health and safety assessments.
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