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1.
Mar Pollut Bull ; 191: 114914, 2023 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-37080021

RESUMO

Modeling studies illustrate the potential for long-range transport of plastics into the Arctic, although the degree to which this occurs remains relatively undocumented. We utilised a teaching exercise at a UArctic summer school graduate course in Nuuk, Greenland to conduct a preliminary in-depth analysis of beach litter sources in the Nuup Kangerlua fjord. Students and instructors collected and analysed 1800 litter items weighing 200 kg from one location in the fjord and another at its mouth. The results suggest a predominance of local sources to macrolitter, rather than long-range transport from Europe. Fisheries-related items and rope were common. Packaging which could be identified was largely suspected to be products distributed in Greenland, and soft plastics, which rarely disperse far from its source, were also common. The results suggest local measures to reduce mismanaged waste and emissions from fisheries are important for reducing marine litter in West Greenland.


Assuntos
Monitoramento Ambiental , Resíduos , Humanos , Resíduos/análise , Monitoramento Ambiental/métodos , Groenlândia , Plásticos , Instituições Acadêmicas , Estudantes , Praias
2.
Mar Drugs ; 8(4): 1011-48, 2010 Mar 31.
Artigo em Inglês | MEDLINE | ID: mdl-20479965

RESUMO

Marine dinoflagellates are the single most important group of algae that produce toxins, which have a global impact on human activities. The toxins are chemically diverse, and include macrolides, cyclic polyethers, spirolides and purine alkaloids. Whereas there is a multitude of studies describing the pharmacology of these toxins, there is limited or no knowledge regarding the biochemistry and molecular genetics involved in their biosynthesis. Recently, however, exciting advances have been made. Expressed sequence tag sequencing studies have revealed important insights into the transcriptomes of dinoflagellates, whereas other studies have implicated polyketide synthase genes in the biosynthesis of cyclic polyether toxins, and the molecular genetic basis for the biosynthesis of paralytic shellfish toxins has been elucidated in cyanobacteria. This review summarises the recent progress that has been made regarding the unusual genomes of dinoflagellates, the biosynthesis and molecular genetics of dinoflagellate toxins. In addition, the evolution of these metabolic pathways will be discussed, and an outlook for future research and possible applications is provided.


Assuntos
Dinoflagellida/metabolismo , Macrolídeos/metabolismo , Toxinas Marinhas/biossíntese , Dinoflagellida/genética , Etiquetas de Sequências Expressas , Perfilação da Expressão Gênica , Genoma de Protozoário , Humanos , Biologia Molecular
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