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August 12, 20250 citations

Decline in the Relative Abundance of Antibiotic Resistance Genes in Long-Term Fertilized Soil and Its Driving Factors.

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JLJunwei LiangJHJunjie HeJZJian Zhao

Key Points

  • The relative abundance of antibiotic resistance genes did not increase significantly after 7 years of fertilization.
  • A decline in the abundance of antibiotic resistance genes was observed compared to data from the 4th year.
  • Microbial adaptation strategies related to shifts in microbiome composition were associated with the decline in antibiotic resistance genes.
  • Total heavy metal content emerged as a significant co-selective pressure affecting the abundance of antibiotic resistance genes.

Abstract

The changes in antibiotic resistance genes (ARGs) in long-term fertilized soil remain controversial. We aimed to analyze the variation characteristics of ARGs in long-term fertilized soil using metagenomic sequencing. The relative abundance of ARGs did not increase significantly after 7 years of fertilization. However, a clear decline in the relative abundance of ARGs was observed compared to the data from the 4th year. Microbial adaptation strategies in response to changes in the ARG abundance were associated with shifts in microbiome composition and function. Among these, bacterial abundance was the primary driving factor. Additionally, total heavy metal content might serve as the most significant co-selective pressure influencing ARG number. We believe that increasing the selective pressure from heavy metals and antibiotics might result in the loss of certain microbial species and a decrease in ARG abundance. This study provides novel insights into the variations of soil resistance genes under long-term fertilization.

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Cite This Study

Liang et al. (2025) studied this question.

synapsesocial.com/papers/689e03e0d61984b91e13ce6bhttps://doi.org/10.1021/acs.jafc.5c03478
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