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https://accedacris.ulpgc.es/jspui/handle/10553/151464
| Título: | Plastic leachates promote marine protozoan growth | Autores/as: | Le Du-Carrée,Jessy Romera-Castillo, Cristina Almeda, Rodrigo |
Clasificación UNESCO: | 251001 Oceanografía biológica 330811 Control de la contaminación del agua 331210 Plásticos |
Palabras clave: | Doc Heterotrophic Dinoflagellate Leachate Marine protozoans Microplastics, et al. |
Fecha de publicación: | 2025 | Proyectos: | Impacto de Los Aditivos Lixiviados de Los Microplásticos en El Plancton | Publicación seriada: | ISME Journal | Resumen: | Millions of tons of plastic enter the ocean annually, yet the effects of their leachates on the microbial loop are poorly understood. This study investigates how dissolved organic carbon released from field-collected plastics and a bioplastic influences the growth of the protozoan Oxyrrhis marina and its associated bacterial community. Plastics increased dissolved organic carbon concentrations in seawater by 5 to 34-fold, stimulating O. marina growth by up to an order of magnitude compared with the control. After exposure to conventional beach plastic leachates and bioplastic leachates, O. marina exhibited growth rates up to 0.3 and 0.4 d-1, respectively, even in the absence of microalgal prey. We estimated that each gram of microplastics could lead to daily assimilation of up to 0.7 g of carbon per gram of protozoan, indicating that plastic-derived carbon enhances heterotrophic metabolism in the microbial loop through osmotrophy. Given that autotrophic prokaryotes are negatively impacted by plastic leachates and that plastic pollution is expected to triple in the coming decades, plastic leaching could alter the balance between microbial primary production and heterotrophy in the ocean. | URI: | https://accedacris.ulpgc.es/jspui/handle/10553/151464 | ISSN: | 1751-7362 | DOI: | 10.1093/ismejo/wraf195 | Fuente: | ISME Journal [ISSN 1751-7362],v. 19 (1), (Enero 2025) |
| Colección: | Artículos |
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