0
Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Environmental Sources Policy & Risk Sign in to save

Dynamic evolution of antibiotic resistance genes in plastisphere in the vertical profile of urban rivers

Water Research 2023 35 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 60 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Zhenhua Yan, Zhenhua Yan, Runren Jiang, Runren Jiang, Zhenhua Yan, Zhenhua Yan, Zhenhua Yan, Runren Jiang, Runren Jiang, Zhenhua Yan, Zhenhua Yan, Yu‐Fang Chen, Yu‐Fang Chen, Zhenhua Yan, Yu‐Fang Chen, Zhenhua Yan, Yu‐Fang Chen, Yu‐Fang Chen, G. R. Lu, G. R. Lu, Zhenhua Yan, Zhenhua Yan, Zhenhua Yan, Zhenhua Yan, Zhenhua Yan, Runren Jiang, Zhenhua Yan, Runren Jiang, Zhenhua Yan, Yan Zhang, Yixin Zhou, Zhenhua Yan, Zhenhua Yan, Zhenhua Yan, Yu‐Fang Chen, Runren Jiang, Runren Jiang, Runren Jiang, Zhenhua Yan, Runren Jiang, Zhenhua Yan, Zhenhua Yan, Zhenhua Yan, Runren Jiang, Runren Jiang, Zhenhua Yan, Yan Zhang, Zhenhua Yan, Runren Jiang, Runren Jiang, Zhenhua Yan, Runren Jiang, Zhenhua Yan, Zhenhua Yan, Zhenhua Yan, Saiyu Yuan Min Wang, G. R. Lu, Zhenhua Yan, Min Wang, Min Wang, Zhenhua Yan, G. R. Lu, Zhenhua Yan, Saiyu Yuan Saiyu Yuan G. R. Lu, G. R. Lu, Zhenhua Yan, Saiyu Yuan

Summary

This study found that microplastics floating at different depths in urban rivers act as hotspots for antibiotic resistance genes, which help bacteria survive antibiotic treatment. The type of plastic matters: biodegradable plastics like PLA harbored more resistance genes than conventional PET plastic. This is concerning because microplastics in waterways could help spread drug-resistant bacteria that eventually reach human water supplies.

Study Type Environmental

Microplastics (MPs) can vertically transport in the aquatic environment due to their aging and biofouling, forming distinct plastisphere in different water layers. However, even though MPs have been regarded as hotspots for antibiotic resistance genes (ARGs), little is known about the propagation and transfer of ARGs in plastisphere in waters, especially in the vertical profile. Therefore, this study investigated the dynamic responses and evolution of ARGs in different plastisphere distributed vertically in an urbanized river. The biofilm biomass in the polylactic acid (PLA) plastisphere was relatively higher than that in the polyethylene terephthalate (PET), showing depth-decay variations. The ARGs abundance in plastisphere were much higher than that in the surrounding waters, especially for the PLA. In the vertical profiles, the ARGs abundance in the PET plastisphere increased with water depths, while the highest abundance of ARGs in the PLA mostly appeared at intermediate waters. In the temporal dynamic, the ARGs abundance in plastisphere increased and then decreased, which may be dominated by the MP types at the initial periods. After long-term exposure, the influences of water depths seemed to be strengthened, especially in the PET plastisphere. Compared with surface waters, the microbiota attached in plastisphere in deep waters showed high species richness, strong diversity, and complex interactions, which was basically consistent with the changes of nutrient contents in different water layers. These vertical variations in microbiota and nutrients (e.g., nitrogen) may be responsible for the propagation of ARGs in plastisphere in deep waters. The host bacteria for ARGs in plastisphere was also developed as water depth increased, leading to an enrichment of ARGs in deep waters. In addition, the abundance of ARGs in plastisphere in bottom waters was positively correlated with the mobile genetic elements (MGEs) of intI1 and tnpA05, indicative of a frequent horizontal gene transfer of ARGs. Overall, water depth played a critical role in the propagation of ARGs in plastisphere, which should not be ignored in a long time series. This study provides new insights into the dynamic evolution of ARGs propagation in plastisphere under increasing global MPs pollution, especially in the vertical profile.

Sign in to start a discussion.

Share this paper