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Chemically-dispersed crude oil and dispersant affects sperm fertilizing ability, but not sperm swimming behaviour in capelin (Mallotus villosus) Full text
2018
Beirão, José | Litt, Margaret | Purchase, Craig
publishedVersion | Paid Open Access
Show more [+] Less [-]Sources, distribution and effects of rare earth elements in the marine environment : Current knowledge and research gaps Full text
2021
Piarulli, Stefania | Hansen, Bjørn Henrik | Ciesielski, Tomasz Maciej | Zocher, Anna-Lena | Malzahn, Arne | Olsvik, Pål Asgeir | Sonne, Christian | Nordtug, Trond | Jenssen, Bjørn Munro | Booth, Andy | Farkas, Julia
Sources, distribution and effects of rare earth elements in the marine environment : Current knowledge and research gaps Full text
2021
Piarulli, Stefania | Hansen, Bjørn Henrik | Ciesielski, Tomasz Maciej | Zocher, Anna-Lena | Malzahn, Arne | Olsvik, Pål Asgeir | Sonne, Christian | Nordtug, Trond | Jenssen, Bjørn Munro | Booth, Andy | Farkas, Julia
publishedVersion
Show more [+] Less [-]Sources, distribution and effects of rare earth elements in the marine environment: Current knowledge and research gaps Full text
2021
Piarulli, Stefania | Hansen, Bjørn Henrik | Ciesielski, Tomasz | Zocher, Anna-Lena | Malzahn, Arne | Olsvik, Pål A. | Sonne, Christian | Nordtug, Trond | Jenssen, Bjørn Munro | Booth, Andy M. | Farkas, Júlia
Rare earth elements and yttrium (REY) are critical elements for a wide range of applications and consumer products. Their growing extraction and use can potentially lead to REY and anthropogenic-REY chemical complexes (ACC-REY) being released in the marine environment, causing concern regarding their potential effects on organisms and ecosystems. Here, we critically review the scientific knowledge on REY sources (geogenic and anthropogenic), factors affecting REY distribution and transfer in the marine environment, as well as accumulation in- and effects on marine biota. Further, we aim to draw the attention to research gaps that warrant further scientific attention to assess the potential risk posed by anthropogenic REY release. Geochemical processes affecting REY mobilisation from natural sources and factors affecting their distribution and transfer across marine compartments are well established, featuring a high variability dependent on local conditions. There is, however, a research gap with respect to evaluating the environmental distribution and fate of REY from anthropogenic sources, particularly regarding ACC-REY, which can have a high persistence in seawater. In addition, data on organismal uptake, accumulation, organ distribution and effects are scarce and at best fragmentary. Particularly, the effects of ACC-REY at organismal and community levels are, so far, not sufficiently studied. To assess the potential risks caused by anthropogenic REY release there is an urgent need to i) harmonise data reporting to promote comparability across studies and environmental matrices, ii) conduct research on transport, fate and behaviour of ACC-REY vs geogenic REY iii) deepen the knowledge on bioavailability, accumulation and effects of ACC-REY and REY mixtures at organismal and community level, which is essential for risk assessment of anthropogenic REY in marine ecosystems.
Show more [+] Less [-]Sources, distribution and effects of rare earth elements in the marine environment: Current knowledge and research gaps Full text
2021
Piarulli, Stefania | Hansen, Bjørn Henrik | Ciesielski, Tomasz Maciej | Zocher, Anna-Lena | Malzahn, Arne | Olsvik, Pål Asgeir | Sonne, Christian | Nordtug, Trond | Jenssen, Bjørn Munro | Booth, Andy | Farkas, Julia
Rare earth elements and yttrium (REY) are critical elements for a wide range of applications and consumer products. Their growing extraction and use can potentially lead to REY and anthropogenic-REY chemical complexes (ACC-REY) being released in the marine environment, causing concern regarding their potential effects on organisms and ecosystems. Here, we critically review the scientific knowledge on REY sources (geogenic and anthropogenic), factors affecting REY distribution and transfer in the marine environment, as well as accumulation in- and effects on marine biota. Further, we aim to draw the attention to research gaps that warrant further scientific attention to assess the potential risk posed by anthropogenic REY release. Geochemical processes affecting REY mobilisation from natural sources and factors affecting their distribution and transfer across marine compartments are well established, featuring a high variability dependent on local conditions. There is, however, a research gap with respect to evaluating the environmental distribution and fate of REY from anthropogenic sources, particularly regarding ACC-REY, which can have a high persistence in seawater. In addition, data on organismal uptake, accumulation, organ distribution and effects are scarce and at best fragmentary. Particularly, the effects of ACC-REY at organismal and community levels are, so far, not sufficiently studied. To assess the potential risks caused by anthropogenic REY release there is an urgent need to i) harmonise data reporting to promote comparability across studies and environmental matrices, ii) conduct research on transport, fate and behaviour of ACC-REY vs geogenic REY iii) deepen the knowledge on bioavailability, accumulation and effects of ACC-REY and REY mixtures at organismal and community level, which is essential for risk assessment of anthropogenic REY in marine ecosystems. | publishedVersion
Show more [+] Less [-]Mixture toxicity of 6PPD-quinone and polystyrene nanoplastics in zebrafish Full text
2024
Varshney, Shubham | Oconnor, Olivia Leal | Gora, Adnan Hussain | Rehman, Saima | Kiron, Viswanath | Siriyappagouder, Prabhugouda | Dahle, Dalia | Kögel, Tanja | Ørnsrud, Robin | Olsvik, Pål Asgeir
Mixture toxicity of 6PPD-quinone and polystyrene nanoplastics in zebrafish Full text
2024
Varshney, Shubham | Oconnor, Olivia Leal | Gora, Adnan Hussain | Rehman, Saima | Kiron, Viswanath | Siriyappagouder, Prabhugouda | Dahle, Dalia | Kögel, Tanja | Ørnsrud, Robin | Olsvik, Pål Asgeir
publishedVersion
Show more [+] Less [-]Mixture toxicity of 6PPD-quinone and polystyrene nanoplastics in zebrafish | Mixture toxicity of 6PPD-quinone and polystyrene nanoplastics in zebrafish Full text
2024
Varshney, Shubham | Oconnor, Olivia Leal | Gora, Adnan Hussain | Rehman, Saima | Kiron, Viswanath | Siriyappagouder, Prabhugouda | Dahle, Dalia | Kögel, Tanja | Ørnsrud, Robin | Olsvik, Pål Asgeir
Plastic pollution, including micro- and nanoplastics, is a growing concern. Tyre-wear particles (TWPs) are the second largest source of microplastics in the ocean following abrasion of synthetic fibres. In addition to the particles themselves, TWPs contain many harmful chemicals, including 6PPD. This chemical reacts with atmospheric ozone and forms the toxic compound 6PPD-quinone (6PPDq), which poses a danger to aquatic life. There is a knowledge gap in understanding risks associated with the combined toxicity of nanoplastics (NPs) and 6PPDq. The present study aimed to investigate the toxicity of NPs and 6PPDq on adult zebrafish using phenotypic (behaviour, histology) and transcriptomic endpoints. Zebrafish were exposed to four treatments: control (contaminant-free), 50 μg/L 6PPDq, 3 mg/L polystyrene (PS)-NPs, and a combination of 50 μg/L 6PPDq and 3 mg/L PS-NPs. We did not observe locomotory dysregulation in zebrafish exposed to NPs. However, we found significant hyperlocomotion in zebrafish exposed to 6PPDq and this effect was even more substantial after co-exposure with PS-NPs. This study explores the molecular mechanisms behind these effects, identifying genes associated with neurotransmitters and fatty acid metabolism that were dysregulated by the co-exposure. Transcriptomic analysis further showed that both 6PPDq and PS-NPs impacted cellular processes associated with sterol biosynthesis, cholesterol metabolism, and muscle tissue development. The effects on these mechanisms were stronger in co-exposed zebrafish, indicating a heightened risk to cellular integrity and mitochondrial dysfunction. These results highlight the significance of mixture toxicity when studying the effects of NPs and associated chemicals like 6PPDq. | publishedVersion
Show more [+] Less [-]Impact of aquaculture and agriculture nutrient sources on macroalgae in a bioassay study | Impact of aquaculture and agriculture nutrient sources on macroalgae in a bioassay study Full text
2021
Streicher, Michael Daniel | Reiss, Henning | Reiss, Katrin
Impact of aquaculture and agriculture nutrient sources on macroalgae in a bioassay study | Impact of aquaculture and agriculture nutrient sources on macroalgae in a bioassay study Full text
2021
Streicher, Michael Daniel | Reiss, Henning | Reiss, Katrin
Eutrophication is a major threat to aquatic ecosystems, because excessive nutrient enrichment may result in the loss of ecosystem services. Fjord systems are specifically under pressure due to nutrient input from land (agriculture) and sea (aquaculture). In this bioassay study, we have analyzed the effect of different nutrient sources, as well as their combination, on growth, nutrient composition and recruitment of habitat-forming and ephemeral macrophytes. We found that agricultural fertilizer increased growth for all algae (except Fucus), while the fish farm effluents mainly increased growth of Ulva. The C:N ratio was hardly affected by the fish farm, but decreased significantly in all algae when agriculture fertilizer was added. Most interestingly, however, distance to the fish farm modulated the algal response to the fertilizer. Our results demonstrate the importance of studying effects of multiple stressors in aquatic ecosystems to sustainably manage the consequences of anthropogenic impacts. | publishedVersion
Show more [+] Less [-]Impact of aquaculture and agriculture nutrient sources on macroalgae in a bioassay study Full text
2021
Streicher, Michael D. | Reiss, Henning | Reiss, Katrin
Eutrophication is a major threat to aquatic ecosystems, because excessive nutrient enrichment may result in the loss of ecosystem services. Fjord systems are specifically under pressure due to nutrient input from land (agriculture) and sea (aquaculture). In this bioassay study, we have analyzed the effect of different nutrient sources, as well as their combination, on growth, nutrient composition and recruitment of habitat-forming and ephemeral macrophytes. We found that agricultural fertilizer increased growth for all algae (except Fucus), while the fish farm effluents mainly increased growth of Ulva. The C:N ratio was hardly affected by the fish farm, but decreased significantly in all algae when agriculture fertilizer was added. Most interestingly, however, distance to the fish farm modulated the algal response to the fertilizer. Our results demonstrate the importance of studying effects of multiple stressors in aquatic ecosystems to sustainably manage the consequences of anthropogenic impacts.
Show more [+] Less [-]Distinct polymer-dependent sorption of persistent pollutants associated with Atlantic salmon farming to microplastics | Distinct polymer-dependent sorption of persistent pollutants associated with Atlantic salmon farming to microplastics Full text
2022
Abihssira Garcia, Isabel Sofia | Kögel, Tanja | Gomiero, Alessio | Kristensen, Torstein | Krogstad, Morten | Olsvik, Pål Asgeir
publishedVersion
Show more [+] Less [-]Reduced acid deposition leads to a new start for brown trout (Salmo trutta) in an acidified lake in Southern Norway Full text
2018
Lund, Espen | Garmo, Øyvind A. | de Wit, Heleen A. | Kristensen, Torstein | Hawley, Kate L. | Wright, Richard F.
Author's accepted version (postprint). | This is an Accepted Manuscript of an article published by Springer in Water, Air and Soil Pollution on 27/10/2018. | Available online: https://link.springer.com/article/10.1007/s11270-018-4013-9 | acceptedVersion
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