Abundance and antibiotic susceptibility of Vibrio spp. isolated from microplastics
Abundance and antibiotic susceptibility of Vibrio spp. isolated from microplastics
Abstract:
In recent years, there has been a growing concern for ‘microplastics’ (particles < 5 mm) in the marine environment. Since plastics degrade very slowly, they remain in the environment on much longer timescales than most natural substrates and can thus provide a novel habitat for colonization by microbial communities (Zettler et al. 2013 Environ. Sci. Technol. 47:7137). The full spectrum of relationships between microplastics and bacteria, however, is little understood. In summer 2015, we examined microplastics collected from a tributary of the lower Chesapeake Bay and determined the presence, abundance, and antibiotic-resistance profiles of Vibrio spp. found on them. We collected 22 microplastic pieces, paired seawater samples, and from them cultured 44 putative Vibrio spp. isolates, 18 of which were PCR-confirmed as V. parahaemolyticus and 3 as V. vulnificus. There were no PCR-confirmed V. cholerae isolates. We used the Kirby-Bauer disk diffusion susceptibility test to examine the isolates’ response to six antibiotics: chloramphenicol (30μg), gentamicin (10μg), ampicillin (10μg), streptomycin (10μg), tetracycline (30μg), and rifampin (5μg). Vibrio isolates were susceptible to three or more of the six antibiotics tested and all were susceptible to tetracycline and chloramphenicol. There were no apparent differences between the antibiotic susceptibilities of vibrios isolated from microplastics compared to those from the water column. In every instance tested, vibrios on microplastics were enriched by at least two orders of magnitude compared to those from paired seawater samples. This study demonstrates that microplastic particles serve as a habitat for Vibrio species, in particular V. vulnificus and V. parahaemolyticus, confirming the conjecture of Zettler et al. (2013) that plastics may serve as a vector for these and other potentially pathogenic bacteria.