Environment International (Aug 2024)

Environmentally persistent microbial contamination in agricultural soils: High risk of pathogenicity and antibiotic resistance

  • Lin Zhu,
  • Yongchang Xu,
  • Jingpeng Li,
  • Guoping Lin,
  • Xuezhu Han,
  • Jiaming Yi,
  • Thilini Jayaprada,
  • Zhenchao Zhou,
  • Yiqian Ying,
  • Meizhen Wang

Journal volume & issue
Vol. 190
p. 108902

Abstract

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Persistent microbial contamination commonly occurs in the environment. However, the characteristics and associated risks remain largely unknown. The coexistence of virulence factor genes (VFGs) and “last-resort” antibiotic resistance genes (LARGs) on human bacterial pathogens (HBPs) are notorious, creating ecological concerns and health risks. Herein, we explored the pathogenicity and antibiotic resistance levels of LARG-harboring HBPs in agricultural soils. Our findings revealed a high distribution level of VFGs and LARGs in soils (an absolute abundance up to 4.7 × 107 gene copies/g soil) by quantitative PCR (qPCR). Furthermore, most isolated LARG-harboring HBPs exhibited a 100 % lethality rate to Galleria mellonella. LARG-carrying plasmids had a low fitness cost to their host bacteria, implying the high adaptation of these plasmids within the HBPs. Most importantly, multiple LARG and VFG plasmid fusion and core genetic arrangements suggested that these LARG/VFG-linked plasmids endowed the stable and persistent horizontal spread of these genes in and/or cross the species and environments. This study not only unveiled high risk, multisource, compliance and stability aspects of environmentally persistent microbial contamination but also illuminated the importance of linking the phenotype-genotype-niche colonization of environmental microbial contamination within “One Health” framework.

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