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	<title>2019 Archives - One Earth - One Ocean e. V.</title>
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		<title>Plastics in the North Atlantic garbage patch: A boat-microbe for hitchhikers and plastic degraders</title>
		<link>https://oneearth-oneocean.com/en/2018-en/2018/plastics-in-the-north-atlantic-garbage-patch-a-boat-microbe-for-hitchhikers-and-plastic-degraders/</link>
					<comments>https://oneearth-oneocean.com/en/2018-en/2018/plastics-in-the-north-atlantic-garbage-patch-a-boat-microbe-for-hitchhikers-and-plastic-degraders/#respond</comments>
		
		<dc:creator><![CDATA[Rüdiger Stöhr]]></dc:creator>
		<pubDate>Sun, 14 Jan 2018 14:15:39 +0000</pubDate>
				<category><![CDATA[2018]]></category>
		<category><![CDATA[2019]]></category>
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		<guid isPermaLink="false">https://oneearth-oneocean.com/2018/01/14/plastics-in-the-north-atlantic-garbage-patch-a-boat-microbe-for-hitchhikers-and-plastic-degraders/</guid>

					<description><![CDATA[<p>Debroas Didier, Mone Anne, Ter Halle Alexandra, Plastics in the North Atlantic garbage patch: A boat-microbe for hitchhikers and plastic degraders, Science of The Total Environment, Volumes 599?600, 1 December 2017, Pages 1222-1232, ISSN 0048-9697, https://doi.org/10.1016/j.scitotenv.2017.05.059. (http://www.sciencedirect.com/science/article/pii/S0048969717311579)Abstract Plastic is a broad name given to different polymers with high molecular weight that impact wildlife. Their fragmentation leads to a continuum of debris sizes (meso to microplastics) entrapped in gyres and colonized by microorganisms. In the present work, the structure of eukaryotes, bacteria and Archaea was studied by a metabarcoding approach, and statistical analysis associated with network building was used to define a core microbiome at the plastic surface. Most of the bacteria significantly associated with the plastic waste originated from non-marine ecosystems, and numerous species can be considered as hitchhikers, whereas others act as keystone species (e.g., Rhodobacterales, Rhizobiales, Streptomycetales and Cyanobacteria) in the biofilm. The chemical analysis provides evidence for a specific colonization of the polymers. Alphaproteobacteria and Gammaproteobacteria significantly dominated mesoplastics consisting of poly(ethylene terephthalate) and polystyrene. Polyethylene was also dominated by these bacterial classes and Actinobacteria. Microplastics were made of polyethylene but differed in their crystallinity, and the majorities were colonized by Betaproteobacteria. Our study indicated that the bacteria inhabiting plastics harboured distinct metabolisms from those present in the surrounding water. For instance, the metabolic pathway involved in xenobiotic degradation was overrepresented on the plastic surface. Keywords: meso and micro-plastics; Microbial populations; Metabarcoding; Metabolic pathways; North Atlantic gyre</p>
<p>The post <a href="https://oneearth-oneocean.com/en/2018-en/2018/plastics-in-the-north-atlantic-garbage-patch-a-boat-microbe-for-hitchhikers-and-plastic-degraders/">Plastics in the North Atlantic garbage patch: A boat-microbe for hitchhikers and plastic degraders</a> appeared first on <a href="https://oneearth-oneocean.com/en/">One Earth - One Ocean e. V.</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p>Debroas Didier, Mone Anne, Ter Halle Alexandra, Plastics in the North<br />
Atlantic garbage patch: A boat-microbe for hitchhikers and plastic<br />
degraders, Science of The Total Environment, Volumes 599?600, 1 December<br />
2017, Pages 1222-1232, ISSN 0048-9697,<br />
<a href="https://doi.org/10.1016/j.scitotenv.2017.05.059" target="_blank" rel="noopener noreferrer">https://doi.org/10.1016/j.scitotenv.2017.05.059</a>.<br />
(<a href="http://www.sciencedirect.com/science/article/pii/S0048969717311579" target="_blank" rel="noopener noreferrer">http://www.sciencedirect.com/science/article/pii/S0048969717311579</a>)Abstract<br />
Plastic is a broad name given to different polymers with high molecular<br />
weight that impact wildlife. Their fragmentation leads to a continuum of<br />
debris sizes (meso to microplastics) entrapped in gyres and colonized by<br />
microorganisms. In the present work, the structure of eukaryotes,<br />
bacteria and Archaea was studied by a metabarcoding approach, and<br />
statistical analysis associated with network building was used to define<br />
a core microbiome at the plastic surface. Most of the bacteria<br />
significantly associated with the plastic waste originated from<br />
non-marine ecosystems, and numerous species can be considered as<br />
hitchhikers, whereas others act as keystone species (e.g., Rhodobacterales, Rhizobiales, Streptomycetales and Cyanobacteria) in the biofilm. The chemical analysis provides evidence for a specific<br />
colonization of the polymers. Alphaproteobacteria and<br />
Gammaproteobacteria significantly dominated mesoplastics consisting of<br />
poly(ethylene terephthalate) and polystyrene. Polyethylene was also<br />
dominated by these bacterial classes and Actinobacteria. Microplastics<br />
were made of polyethylene but differed in their crystallinity, and the<br />
majorities were colonized by Betaproteobacteria. Our study indicated<br />
that the bacteria inhabiting plastics harboured distinct metabolisms<br />
from those present in the surrounding water. For instance, the metabolic<br />
pathway involved in xenobiotic degradation was overrepresented on the<br />
plastic surface.<br />
Keywords: meso and micro-plastics; Microbial populations; Metabarcoding;<br />
Metabolic pathways; North Atlantic gyre</p>
<p>The post <a href="https://oneearth-oneocean.com/en/2018-en/2018/plastics-in-the-north-atlantic-garbage-patch-a-boat-microbe-for-hitchhikers-and-plastic-degraders/">Plastics in the North Atlantic garbage patch: A boat-microbe for hitchhikers and plastic degraders</a> appeared first on <a href="https://oneearth-oneocean.com/en/">One Earth - One Ocean e. V.</a>.</p>
]]></content:encoded>
					
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