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Journal ArticleDOI

Prevalence of antibiotic resistance genes and bacterial pathogens in long-term manured greenhouse soils as revealed by metagenomic survey.

TLDR
High levels of antibiotics, ARGs, HPB, and HPB carrying ARGs in the manured greenhouse soils compared with those in the field soils were confirmed, and their relative abundance increased with the extension of greenhouse planting years.
Abstract
Antibiotic resistance genes (ARGs), human pathogenic bacteria (HPB), and HPB carrying ARGs pose a high risk to soil ecology and public health. Here, we used a metagenomic approach to investigate their diversity and abundance in chicken manures and greenhouse soils collected from Guli, Pulangke, and Hushu vegetable bases with different greenhouse planting years in Nanjing, Eastern China. There was a positive correlation between the levels of antibiotics, ARGs, HPB, and HPB carrying ARGs in manures and greenhouse soils. In total, 156.2–5001.4 μg/kg of antibiotic residues, 22 classes of ARGs, 32 HPB species, and 46 species of HPB carrying ARGs were found. The highest relative abundance was tetracycline resistance genes (manures) and multidrug resistance genes (greenhouse soils). The dominant HPB and HPB carrying ARGs in the manures were Bacillus anthracis, Bordetella pertussis, and B. anthracis (sulfonamide resistance gene, sul1), respectively. The corresponding findings in greenhouse soils were Mycobacterium tuberculosis and M. ulcerans, M. tuberculosis (macrolide-lincosamide-streptogramin resistance protein, MLSRP), and B. anthracis (sul1), respectively. Our findings confirmed high levels of antibiotics, ARGs, HPB, and HPB carrying ARGs in the manured greenhouse soils compared with those in the field soils, and their relative abundance increased with the extension of greenhouse planting years.

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Citations
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Journal ArticleDOI

Review of antibiotic resistance in China and its environment

TL;DR: It is important to understand the current state of antibiotic use in China and its relationship to ARG prevalence and diversity in the environment, and also future needs in mitigating the spread of antibiotic resistance in the environments, particularly under the 'planetary health' perspective.
Journal ArticleDOI

Long-term field application of sewage sludge increases the abundance of antibiotic resistance genes in soil.

TL;DR: The patterns of bacterial community and antibiotic resistance genes (ARGs) in a long-term field experiment were investigated and it was suggested that bacterial community shifts, rather than MGEs, is the major driver shaping the antibiotic resistome.
Journal ArticleDOI

Diversity, abundance, and persistence of antibiotic resistance genes in various types of animal manure following industrial composting

TL;DR: The results suggest that different animal species had significant effects on the diversity, abundance, and persistence of ARGs, where the abundance of transposons, heavy metal concentration, total nitrogen level, and the dosage and duration of exposure to antibiotics may explain these differences.
Journal ArticleDOI

Effect of different biochars on antibiotic resistance genes and bacterial community during chicken manure composting.

TL;DR: Rice straw biochar and mushroom biochar were added to lab-scale chicken manure composting to evaluate their effects on the behaviors of antibiotic resistance genes (ARGs) and on total and bio-available heavy metals (Cu, Zn and As).
Journal ArticleDOI

Organic contamination and remediation in the agricultural soils of China : a critical review

TL;DR: A critical review of published scientific data on soil pollution across China highlighted several future research directions including combined pollution, interfacial interactions, food safety, bioavailability, ecological effects, and integrated remediation methods for combined organic pollution in soil.
References
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Journal ArticleDOI

An improved Greengenes taxonomy with explicit ranks for ecological and evolutionary analyses of bacteria and archaea

TL;DR: A ‘taxonomy to tree’ approach for transferring group names from an existing taxonomy to a tree topology is developed and used to apply the Greengenes, National Center for Biotechnology Information (NCBI) and cyanoDB (Cyanobacteria only) taxonomies to a de novo tree comprising 408 315 sequences.
Journal ArticleDOI

Diverse and abundant antibiotic resistance genes in Chinese swine farms.

TL;DR: Diverse, abundant, and potentially mobile ARGs in farm samples suggest that unmonitored use of antibiotics and metals is causing the emergence and release of ARGs to the environment.
Journal ArticleDOI

Antibiotics For Emerging Pathogens

TL;DR: The emergence of multidrug resistance among the latest generation of pathogens suggests that the discovery of new scaffolds should be a priority, and promising approaches to scaffold discovery are emerging.
Journal ArticleDOI

Antibiotic Resistance Genes as Emerging Contaminants: Studies in Northern Colorado†

TL;DR: It was noted that tet(W) and tet(O) were also present in treated drinking water and recycled wastewater, suggesting that these are potential pathways for the spread of ARGs to and from humans.
Journal ArticleDOI

The shared antibiotic resistome of soil bacteria and human pathogens

TL;DR: Multidrug-resistant soil bacteria containing resistance cassettes against five classes of antibiotics are described that have perfect nucleotide identity to genes from diverse human pathogens, offering not only evidence of lateral exchange but also a mechanism by which antibiotic resistance disseminates.
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