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Published on: October 31, 2019
Culturable macroplastic-associated potential human pathogens in coral reef lagoons, Madagascar
Rakotovao Raherimino1, Tania Crucitti2, Marc Troussellier3
1IH.SM Toliara, Route du Port, BP 141, 601 Toliara, Madagascar; UMR MARBEC, Université Montpellier, IRD, CNRS, Ifremer, Montpellier, France.
Abstract:
Potentially human pathogenic bacteria (PHPBs) have been detected in plastic-associated marine microbiomes, primarily through DNA-based methods. However, data on their culturability and concentrations on plastics remain limited, yet are essential to assess actual health risks. To address this gap, 70 floating macroplastic and 20 seawater samples were collected from two human-impacted reef lagoons in southwestern Madagascar (Atsimo-Andrefana region). PHPBs were cultured from their microbiomes using selective media and quantified. Macroplastics were predominantly polypropylene (34 %) and polyamide (31 %). In increasing order of concentration, four culturable PHPBs, Staphylococcus aureus, Escherichia coli, Enterococcus faecalis, and Vibrio Harveyi clade species, were identified on both macroplastics and in seawater, across all sites and polymer types. Notably, 52 % of macroplastic samples harbored two PHPB species simultaneously, while only 7 % were PHPB-free. Concentrations of all PHPBs were consistently and significantly higher on macroplastics than in seawater, regardless of the measurement unit or polymer type, with the Vibrio Harveyi clade being the most abundant. No significant correlations were observed among PHPB species concentrations, suggesting limited interaction and independent colonization. These findings indicate that floating macroplastics may serve as reservoirs and fomites for viable PHPBs. However, their potential impacts on ecosystems and human health should be interpreted cautiously. We emphasize the need to contextualize PHPB concentration data by considering factors such as exposure pathways, environmental persistence, and bacterial virulence, rather than relying solely on concentration-based comparisons, which may lead to misinterpretation.
Insights
Floating plastic debris acts as a reservoir for potentially human pathogenic bacteria (PHPBs). These bacteria are more concentrated on plastics than in surrounding seawater, highlighting a potential health risk.
Area of Science:
- Marine microbiology
- Environmental science
- Public health
Background:
- Potentially human pathogenic bacteria (PHPBs) are found in marine plastic microbiomes, but their culturability and concentration on plastics are poorly understood.
- Assessing actual health risks requires data on viable PHPBs associated with marine plastics.
Purpose of the Study:
- To investigate the culturability and concentration of PHPBs on floating macroplastics in human-impacted reef lagoons.
- To compare PHPB levels on plastics versus surrounding seawater.
Main Methods:
- Collected 70 macroplastic and 20 seawater samples from southwestern Madagascar.
- Utilized selective media to culture and quantify PHPBs from plastic and water samples.
- Identified dominant PHPB species using culture-based methods.
Main Results:
- Four culturable PHPBs (Staphylococcus aureus, Escherichia coli, Enterococcus faecalis, Vibrio Harveyi clade) were identified on plastics and in seawater.
- 52% of plastic samples harbored multiple PHPB species; only 7% were PHPB-free.
- PHPB concentrations were significantly higher on macroplastics than in seawater, with the Vibrio Harveyi clade most abundant.
Conclusions:
- Floating macroplastics serve as reservoirs and fomites for viable PHPBs.
- Interpreting health risks requires contextualizing bacterial concentration data with exposure, persistence, and virulence factors.
- Solely relying on concentration data for risk assessment may lead to misinterpretation.
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