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Detection of faecal bacteria and antibiotic resistance genes in biofilms attached to plastics from human-impacted coastal areas

Environmental Pollution 2022 51 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Anna Sànchez‐Vidal Anna Sànchez‐Vidal William P. de Haan, Hongxia Liang, William P. de Haan, Hongxia Liang, William P. de Haan, William P. de Haan, Anna Sànchez‐Vidal Anna Sànchez‐Vidal Anna Sànchez‐Vidal Anna Sànchez‐Vidal Anna Sànchez‐Vidal Anna Sànchez‐Vidal Anna Sànchez‐Vidal William P. de Haan, William P. de Haan, William P. de Haan, Elisenda Ballesté, Marc Cerdà-Domènech, Marc Cerdà-Domènech, Elisenda Ballesté, Anna Sànchez‐Vidal Anna Sànchez‐Vidal William P. de Haan, William P. de Haan, William P. de Haan, William P. de Haan, Anna Sànchez‐Vidal Anna Sànchez‐Vidal Javier Méndez, Javier Méndez, Anna Sànchez‐Vidal F. Lucena, Anna Sànchez‐Vidal Anna Sànchez‐Vidal F. Lucena, Anna Sànchez‐Vidal Anna Sànchez‐Vidal Anna Sànchez‐Vidal William P. de Haan, William P. de Haan, William P. de Haan, Cristina García‐Aljaro, Cristina García‐Aljaro, Anna Sànchez‐Vidal Anna Sànchez‐Vidal Anna Sànchez‐Vidal Elisenda Ballesté, Elisenda Ballesté, Anna Sànchez‐Vidal Anna Sànchez‐Vidal Anna Sànchez‐Vidal Anna Sànchez‐Vidal

Summary

Researchers analyzed biofilms on marine plastics collected from coastal areas impacted by human sewage in the Mediterranean Sea and found faecal bacteria and antibiotic resistance genes present on the plastic surfaces. The plastics harbored bacterial communities including potential pathogens like Vibrio species, with biofilm composition differing between floating plastics and those in sediments. The findings suggest that marine plastics can act as vectors for both faecal contamination and antibiotic resistance in coastal environments.

Study Type Environmental

Plastics have been proposed as vectors of bacteria as they act as a substrate for biofilms. In this study, we evaluated the abundance of faecal and marine bacteria and antibiotic resistance genes (ARGs) from biofilms adhered to marine plastics. Floating plastics and plastics from sediments were collected in coastal areas impacted by human faecal pollution in the northwestern Mediterranean Sea. Culture and/or molecular methods were used to quantify faecal indicators (E. coli, Enterococci and crAssphage), and the ARGs sulI, tetW and bla<sub>TEM</sub> and the 16S rRNA were detected by qPCR assays. Pseudomonas and Vibrio species and heterotrophic marine bacteria were also analysed via culture-based methods. Results showed that, plastic particles covered by bacterial biofilms, primarily consisted of marine bacteria including Vibrio spp. Some floating plastics had a low concentration of viable E. coli and Enterococci (42% and 67% of the plastics respectively). Considering the median area of the plastics, we detected an average of 68 cfu E. coli per item, while a higher concentration of E. coli was detected on individual plastic items, when compared with 100 ml of the surrounding water. Using qPCR, we quantified higher values of faecal indicators which included inactive and dead microorganisms, detecting up to 2.6 × 10<sup>2</sup> gc mm<sup>-2</sup>. The ARGs were detected in 67-88% of the floating plastics and in 29-57% of the sediment plastics with a concentration of up to 6.7 × 10<sup>2</sup> gc mm<sup>-2</sup>. Furthermore, enrichment of these genes was observed in biofilms compared with the surrounding water. These results show that floating plastics act as a conduit for both the attachment and transport of faecal microorganisms. In contrast, low presence of faecal indicators was detected in plastic from seafloor sediments. Therefore, although in low concentrations, faecal bacteria, and potential pathogens, were identified in marine plastics, further suggesting plastics act as a reservoir of pathogens and ARGs.

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