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1.
Nat Commun ; 13(1): 4175, 2022 07 26.
Artículo en Inglés | MEDLINE | ID: mdl-35882837

RESUMEN

Plastic debris widely pollutes freshwaters. Abiotic and biotic degradation of plastics releases carbon-based substrates that are available for heterotrophic growth, but little is known about how these novel organic compounds influence microbial metabolism. Here we found leachate from plastic shopping bags was chemically distinct and more bioavailable than natural organic matter from 29 Scandinavian lakes. Consequently, plastic leachate increased bacterial biomass acquisition by 2.29-times when added at an environmentally-relevant concentration to lake surface waters. These results were not solely attributable to the amount of dissolved organic carbon provided by the leachate. Bacterial growth was 1.72-times more efficient with plastic leachate because the added carbon was more accessible than natural organic matter. These effects varied with both the availability of alternate, especially labile, carbon sources and bacterial diversity. Together, our results suggest that plastic pollution may stimulate aquatic food webs and highlight where pollution mitigation strategies could be most effective.


Asunto(s)
Lagos , Plásticos , Bacterias/metabolismo , Carbono/metabolismo , Contaminación Ambiental/análisis , Procesos Heterotróficos , Plásticos/química
2.
PLoS Biol ; 19(9): e3001389, 2021 09.
Artículo en Inglés | MEDLINE | ID: mdl-34520450

RESUMEN

Pollution from microplastics and anthropogenic fibres threatens lakes, but we know little about what factors predict its accumulation. Lakes may be especially contaminated because of long water retention times and proximity to pollution sources. Here, we surveyed anthropogenic microparticles, i.e., microplastics and anthropogenic fibres, in surface waters of 67 European lakes spanning 30° of latitude and large environmental gradients. By collating data from >2,100 published net tows, we found that microparticle concentrations in our field survey were higher than previously reported in lakes and comparable to rivers and oceans. We then related microparticle concentrations in our field survey to surrounding land use, water chemistry, and plastic emissions to sites estimated from local hydrology, population density, and waste production. Microparticle concentrations in European lakes quadrupled as both estimated mismanaged waste inputs and wastewater treatment loads increased in catchments. Concentrations decreased by 2 and 5 times over the range of surrounding forest cover and potential in-lake biodegradation, respectively. As anthropogenic debris continues to pollute the environment, our data will help contextualise future work, and our models can inform control and remediation efforts.


Asunto(s)
Lagos , Microplásticos , Material Particulado , Contaminantes del Agua/análisis , Ecosistema , Europa (Continente) , Agua Dulce/química , Hidrología , Plásticos , Aguas Residuales
3.
ISME J ; 8(1): 245-8, 2014 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-24132076

RESUMEN

Phytoplankton produce large amounts of polysaccharide gel material known as transparent exopolymer particles (TEP). We investigated the potential links between phytoplankton-derived TEP and microbial community structure in the sea surface microlayer and underlying water at the English Channel time-series station L4 during a spring diatom bloom, and in two adjacent estuaries. Major changes in bacterioneuston and bacterioplankton community structure occurred after the peak of the spring bloom at L4, and coincided with the significant decline of microlayer and water column TEP. Increased abundance of Flavobacteriales and Rhodobacterales in bacterioneuston and bacterioplankton communities at L4 was significantly related to the TEP decline, indicating that both taxa could be responsible. The results suggest that TEP is an important factor in determining microbial diversity in coastal waters, and that TEP utilisation could be a niche occupied by Flavobacteriales and Rhodobacterales.


Asunto(s)
Fenómenos Fisiológicos Bacterianos , Fitoplancton/química , Polisacáridos/metabolismo , Estaciones del Año , Agua de Mar/química , Agua de Mar/microbiología , Bacterias/metabolismo , Flavobacteriaceae/fisiología , Océanos y Mares , Fitoplancton/microbiología , Rhodobacteraceae/fisiología
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