Antibiotics in the Soil Environment—Degradation and Their Impact on Microbial Activity and Diversity
Антибиотики в почвенной среде — деградация и их влияние на микробную активность и разнообразие
2019-03-07
SCID: 54.1/xkgye7sq
Discuss with AI
antibiotic degradationantibiotic persistenceantibiotic resistance genesmicrobial diversitysoil microbial communities
Figures from the paper
Abstract (AI)
Antibiotics play a key role in the management of infectious diseases in humans, animals, livestock, and aquacultures all over the world. The release of increasing amount of antibiotics into waters and soils creates a potential threat to all microorganisms in these environments. This review addresses issues related to the fate and degradation of antibiotics in soils and the impact of antibiotics on the structural, genetic and functional diversity of microbial communities. Due to the emergence of bacterial resistance to antibiotics, which is considered a worldwide public health problem, the abundance and diversity of antibiotic resistance genes (ARGs) in soils are also discussed. When antibiotic residues enter the soil, the main processes determining their persistence are sorption to organic particles and degradation/transformation. The wide range of DT50 values for antibiotic residues in soils shows that the processes governing persistence depend on a number of different factors, e.g., physico-chemical properties of the residue, characteristics of the soil, and climatic factors (temperature, rainfall, and humidity). The results presented in this review show that antibiotics affect soil microorganisms by changing their enzyme activity and ability to metabolize different carbon sources, as well as by altering the overall microbial biomass and the relative abundance of different groups (i.e., Gram-negative bacteria, Gram-positive bacteria, and fungi) in microbial communities. Studies using methods based on analyses of nucleic acids prove that antibiotics alter the biodiversity of microbial communities and the presence of many types of ARGs in soil are affected by agricultural and human activities. It is worth emphasizing that studies on ARGs in soil have resulted in the discovery of new genes and enzymes responsible for bacterial resistance to antibiotics. However, many ambiguous results indicate that precise estimation of the impact of antibiotics on the activity and diversity of soil microbial communities is a great challenge.
Key Findings
1
Agricultural and human activities affect soil antibiotic resistance genes, with research identifying previously unknown resistance genes and enzymes; precise impact estimates remain difficult because findings are ambiguous.
2
Antibiotic persistence in soil is governed primarily by sorption and degradation or transformation processes.
3
Antibiotic residues alter soil microbial enzyme activity, carbon-source metabolism, total biomass, and the relative abundance of bacterial and fungal groups.
4
Nucleic-acid-based studies show that antibiotics change microbial community biodiversity and influence the abundance of diverse antibiotic resistance genes in soil.
5
Soil antibiotic DT50 values vary widely because of residue physicochemical properties, soil characteristics, and climatic factors including temperature, rainfall, and humidity.
Research Object
Antibiotic residues in the soil environment
Research Subject
The degradation, persistence, and impacts of antibiotics on the structural, genetic, and functional diversity and activity of soil microorganisms, including the abundance and diversity of antibiotic resistance genes
Publication Details
Publication Date
2019-03-07
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest