• search hit 1 of 3
Back to Result List

Microplastics: New substrates for heterotrophic activity contribute to altering organic matter cycles in aquatic ecosystems

  • Heterotrophic microbes with the capability to process considerable amounts of organic matter can colonize microplastic particles (MP) in aquatic ecosystems. Weather colonization of microorganisms on MP will alter ecological niche and functioning of microbial communities remains still unanswered. Therefore, we compared the functional diversity of biofilms on microplastics when incubated in three lakes in northeastern Germany differing in trophy and limnological features. For all lakes, we compared heterotrophic activities of MP biofilms with those of microorganisms in the surrounding water by using Biolog (R) EcoPlates and assessed their oxygen consumption in microcosm assays with and without MP. The present study found that the total biofilm biomass was higher in the oligo-mesotrophic and dystrophic lakes than in the eutrophic lake. In all lakes, functional diversity profiles of MP biofilms consistently differed from those in the surrounding water. However, solely in the oligo-mesotrophic lake MP biofilms had a higher functionalHeterotrophic microbes with the capability to process considerable amounts of organic matter can colonize microplastic particles (MP) in aquatic ecosystems. Weather colonization of microorganisms on MP will alter ecological niche and functioning of microbial communities remains still unanswered. Therefore, we compared the functional diversity of biofilms on microplastics when incubated in three lakes in northeastern Germany differing in trophy and limnological features. For all lakes, we compared heterotrophic activities of MP biofilms with those of microorganisms in the surrounding water by using Biolog (R) EcoPlates and assessed their oxygen consumption in microcosm assays with and without MP. The present study found that the total biofilm biomass was higher in the oligo-mesotrophic and dystrophic lakes than in the eutrophic lake. In all lakes, functional diversity profiles of MP biofilms consistently differed from those in the surrounding water. However, solely in the oligo-mesotrophic lake MP biofilms had a higher functional richness compared to the ambient water. These results demonstrate that the functionality and hence the ecological role of MP-associated microbial communities are context-dependent, i.e. different environments lead to substantial changes in biomass build up and heterotrophic activities of MP biofilms. We propose that MP surfaces act as new niches for aquatic microorganisms and that the constantly increasing MP pollution has the potential to globally impact carbon dynamics of pelagic environments by altering heterotrophic activities. (C) 2018 Elsevier B.V. All rights reserved.show moreshow less

Export metadata

Additional Services

Search Google Scholar Statistics
Metadaten
Author details:María de Jesús Arias AndrésORCiDGND, Marie Therese KettnerORCiDGND, Takeshi MikiORCiD, Hans-Peter GrossartORCiDGND
DOI:https://doi.org/10.1016/j.scitotenv.2018.04.199
ISSN:0048-9697
ISSN:1879-1026
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/29710570
Title of parent work (English):The science of the total environment : an international journal for scientific research into the environment and its relationship with man
Publisher:Elsevier
Place of publishing:Amsterdam
Publication type:Article
Language:English
Year of first publication:2018
Publication year:2018
Release date:2021/10/06
Tag:Biofilms; Functional diversity; Heterotrophic activity; Microorganisms; Microplastics; Multi-functionality index; Total biomass
Volume:635
Number of pages:8
First page:1152
Last Page:1159
Funding institution:Leibniz SAW project MikrOMIK [SAW-2014-IOW-2]; Ministry of Science and Technology, TaiwanMinistry of Science and Technology, Taiwan [MOST104-2621-B-002-005-MY3]; Alexander von Humboldt Foundation (Humboldt Research Fellowship for Experienced Researchers), Germany
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Biochemie und Biologie
DDC classification:5 Naturwissenschaften und Mathematik / 57 Biowissenschaften; Biologie / 570 Biowissenschaften; Biologie
Peer review:Referiert
Accept ✔
This website uses technically necessary session cookies. By continuing to use the website, you agree to this. You can find our privacy policy here.