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Updated: Apr 26, 2026

Isolation and Identification of Waterborne Antibiotic-Resistant Bacteria and Molecular Characterization of their Antibiotic Resistance Genes
Published on: March 3, 2023
Effects of microplastics on the high-risk antibiotic resistance genes in different layer of membrane composting
Xiao-Jian Chen1, Shi-Hua Niu1, Wei-Kang Deng2
1Wens Foodstuff Group Co., Ltd, China.
Abstract:
The formation of different layers in semipermeable membrane composting piles has been reported in previous studies. Additionally, emerging microplastic (MP) contamination has been detected in livestock and poultry manure. To better understand MPs' influence on high-risk antibiotic resistance genes (ARGs) during poultry manure semipermeable membrane composting, this study evaluated high-risk ARGs in different layers of composting piles. During membrane composting's megathermal period, MPs significantly enhanced mcr-1 and blaNDM-1 removal rates (>99.50% in each layer) vs. the blank group (P < 0.05), but tetX growth rate in the middle/bottom layers of the MPs group was over twice that of the blank group. Further tests showed MPs altered ARG-associated genera abundance and reduced ARG levels during megathermal period. During cooling, MPs increased tetX abundance by promoting the recovery of ARG host bacteria (especially Paracoccus kondratievae and Bacillus cereus). Additionally, the bottom layer's highest moisture content and electrical conductivity increased ARG host bacteria abundance on MP surfaces, posing the highest risk.
Insights
Microplastics (MPs) significantly enhanced the removal of specific antibiotic resistance genes (ARGs) during poultry manure composting. However, MPs also promoted the growth of other ARGs, particularly in the bottom layer, increasing risks.
Area of Science:
- Environmental Science
- Microbiology
- Agricultural Science
Background:
- Semipermeable membrane composting is used for poultry manure.
- Microplastic (MP) contamination is present in animal manure.
- Antibiotic resistance genes (ARGs) are a public health concern.
Purpose of the Study:
- To investigate the impact of microplastics (MPs) on high-risk antibiotic resistance genes (ARGs) during poultry manure composting.
- To analyze ARG levels in different layers of composting piles with and without MPs.
Main Methods:
- Composting experiments were conducted with and without MPs.
- High-risk ARGs (mcr-1, blaNDM-1, tetX) were quantified in different composting layers.
- Bacterial community composition associated with ARGs was analyzed.
Main Results:
- MPs significantly enhanced the removal of mcr-1 and blaNDM-1 (>99.50%) during the megathermal composting phase.
- MPs increased the growth rate of tetX in the middle and bottom layers compared to the control.
- MPs altered ARG-associated bacterial genera abundance, reducing overall ARG levels during the megathermal phase but increasing tetX during cooling.
Conclusions:
- Microplastics influence the fate of high-risk ARGs differently during composting phases.
- MPs can enhance the removal of some ARGs while promoting the proliferation of others.
- The bottom layer of compost piles with MPs poses a higher risk due to increased ARG host bacteria abundance.
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