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Triclosan changes community composition and selects for specific bacterial taxa in marine periphyton biofilms in low nanomolar concentration

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#metagenomics Triclosan changes community composition and selects for specific bacterial taxa in marine periphyton biofilms in low nanomolar concentration [PeerJ Preprints] https://t.co/sf2Wc68oG8, see more https://t.co/x5gdmk9AHC
RT @ThoBaSwe: And while we're at it: here's our take on the effects of #triclosan on natural marine microbial communities. https://t.co/…
RT @ThoBaSwe: And while we're at it: here's our take on the effects of #triclosan on natural marine microbial communities. https://t.co/…
#marine #metagenomics Triclosan changes community composition and selects for specific bacterial taxa in marine periphyton biofilms in low nanomolar concentration [PeerJ Preprints] https://t.co/sf2Wc68oG8, see more https://t.co/ZnpQRMgWzP
#marine #metagenomics Triclosan changes community composition and selects for specific bacterial taxa in marine periphyton biofilms in low nanomolar concentration [PeerJ Preprints] https://t.co/sf2Wc68oG8, see more https://t.co/p7PQDGL3cI
#marine #metagenomics Triclosan changes community composition and selects for specific bacterial taxa in marine periphyton biofilms in low nanomolar concentration [PeerJ Preprints] https://t.co/sf2Wc68oG8, see more https://t.co/mx2E7Oz9MP
RT @ThoBaSwe: And while we're at it: here's our take on the effects of #triclosan on natural marine microbial communities. https://t.co/…
356 days ago
RT @ThoBaSwe: And while we're at it: here's our take on the effects of #triclosan on natural marine microbial communities. https://t.co/…
And while we're at it: here's our take on the effects of #triclosan on natural marine microbial communities. https://t.co/ZlLeiJ5IGK #openaccess @K_Martin_E #preprint #metagenomics https://t.co/mYQAKLS8aQ
368 days ago
Triclosan changes community composition and selects for specific bacterial taxa in marine periphyton biofilms in low nanomolar concentration https://t.co/YZIlhCIdUe
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Supplemental Information

Supplementary figures and supplementary table 1 and 2

This file contains supplementary figures and supplementary table 1 and 2. Figure and table captions are present below and above the figures and tables, respectively.

DOI: 10.7287/peerj.preprints.27125v1/supp-1

Supplementary table 3

Exel file with 4 sheets. Three sheets contain statistics for pairwise comparisons of OTU relative abundance between unexposed control samples and low (3.16 nM), intermediate (31.6 nM) and high (316 nM) triclosan exposure. One sheet contain regression statistics of OTU relative abundance vs. triclosan concentration.

DOI: 10.7287/peerj.preprints.27125v1/supp-2

Additional Information

Competing Interests

There are no competing interests.

Author Contributions

K. Martin Eriksson conceived and designed the experiments, performed the experiments, analyzed the data, contributed reagents/materials/analysis tools, prepared figures and/or tables, authored or reviewed drafts of the paper, approved the final draft.

Kemal Sanli conceived and designed the experiments, performed the experiments, analyzed the data, contributed reagents/materials/analysis tools, authored or reviewed drafts of the paper, approved the final draft.

Henrik Nilsson analyzed the data, contributed reagents/materials/analysis tools, authored or reviewed drafts of the paper, approved the final draft.

Alexander Eiler conceived and designed the experiments, analyzed the data, contributed reagents/materials/analysis tools, authored or reviewed drafts of the paper, approved the final draft.

Natalia Corcoll contributed reagents/materials/analysis tools, authored or reviewed drafts of the paper, approved the final draft.

Henrik Johansson conceived and designed the experiments, performed the experiments.

Thomas Backhaus conceived and designed the experiments, contributed reagents/materials/analysis tools, authored or reviewed drafts of the paper, approved the final draft.

Hans Blanck conceived and designed the experiments, performed the experiments, contributed reagents/materials/analysis tools.

Erik Kristiansson conceived and designed the experiments, analyzed the data, contributed reagents/materials/analysis tools, prepared figures and/or tables, authored or reviewed drafts of the paper, approved the final draft.

DNA Deposition

The following information was supplied regarding the deposition of DNA sequences:

The raw sequence data are deposited at NCBI under the BioProject accession number PRJNA320539, and with the SRA Experiment accession numbers SRX1744264 - SRX1744266, SRX1744269 - SRX1744273 and SRX1744275 - SRX1744279.

Data Deposition

The following information was supplied regarding data availability:

NCBI, BioProject accession number PRJNA320539, and with the SRA Experiment accession numbers SRX1744264 - SRX1744266, SRX1744269 - SRX1744273 and SRX1744275 - SRX1744279.

Funding

Funding for this work has been received from the Swedish Research Council Formas for the project NICE - Novel instruments for effect-based assessment of chemical pollution in coastal ecosystems (2011-01733) and the project HerbEvol (2015-1464), the EU Commission for the project SOLUTIONS (FP7, grant agreement 603437) and University of Gothenburg for the FRAM Centre for Future Chemical Risk Assessment and Management Strategies The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.


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