Polystyrene microplastics decrease accumulation of essential fatty acids in common freshwater algae.
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[1] P. Mayer,et al. Surface-Related Toxicity of Polystyrene Beads to Nematodes and the Role of Food Availability. , 2020, Environmental science & technology.
[2] J. Hou,et al. Acute effects of nanoplastics and microplastics on periphytic biofilms depending on particle size, concentration and surface modification. , 2019, Environmental pollution.
[3] L. Campos,et al. Assessment of microplastics in freshwater systems: A review. , 2019, The Science of the total environment.
[4] Basak Guven,et al. Microplastics in the environment: A critical review of current understanding and identification of future research needs. , 2019, Environmental pollution.
[5] N. Bolan,et al. Particulate plastics as a vector for toxic trace-element uptake by aquatic and terrestrial organisms and human health risk. , 2019, Environment international.
[6] Yuxuan Zhang,et al. Effect of microplastics exposure on the photosynthesis system of freshwater algae. , 2019, Journal of hazardous materials.
[7] S. Anggoro,et al. Evaluation of the Interaction Among Microalgae Spirulina sp, Plastics Polyethylene Terephthalate and Polypropylene in Freshwater Environment , 2019, Journal of Ecological Engineering.
[8] Armando C. Duarte,et al. Effects of microplastics on microalgae populations: A critical review. , 2019, The Science of the total environment.
[9] C. Rochman,et al. The complex issue of chemicals and microplastic pollution: A case study in North Pacific lanternfish. , 2019, Environmental pollution.
[10] Richard C. Thompson,et al. A catchment‐scale perspective of plastic pollution , 2019, Global change biology.
[11] S. Ormerod,et al. Microplastic ingestion by riverine macroinvertebrates. , 2019, The Science of the total environment.
[12] Miguel Oliveira,et al. Studies of the effects of microplastics on aquatic organisms: What do we know and where should we focus our efforts in the future? , 2018, The Science of the total environment.
[13] Wei Li,et al. Phytoplankton response to polystyrene microplastics: Perspective from an entire growth period. , 2018, Chemosphere.
[14] A. Koelmans,et al. Accumulation of Plastic Debris and Associated Contaminants in Aquatic Food Webs , 2018, Environmental science & technology.
[15] M. I. Khan,et al. The promising future of microalgae: current status, challenges, and optimization of a sustainable and renewable industry for biofuels, feed, and other products , 2018, Microbial Cell Factories.
[16] M. Wagner,et al. Interactions of Microplastics with Freshwater Biota , 2018 .
[17] L. Mabinya,et al. Algae as an Important Resource of Natural Products of Medical and Biotechnological Importance: A Mini-Review , 2017 .
[18] T. Galloway,et al. A small-scale, portable method for extracting microplastics from marine sediments. , 2017, Environmental pollution.
[19] A. Huvet,et al. Interactions between polystyrene microplastics and marine phytoplankton lead to species-specific hetero-aggregation. , 2017, Environmental pollution.
[20] F. Lagarde,et al. Microplastic interactions with freshwater microalgae: Hetero-aggregation and changes in plastic density appear strongly dependent on polymer type. , 2016, Environmental pollution.
[21] Didem Gökçe. Algae as an Indicator of Water Quality , 2016 .
[22] Y. K. Agrawal,et al. Bioindicators: the natural indicator of environmental pollution , 2016 .
[23] H. Ren,et al. Uptake and Accumulation of Polystyrene Microplastics in Zebrafish (Danio rerio) and Toxic Effects in Liver. , 2016, Environmental science & technology.
[24] A. D. Vethaak,et al. Do plastic particles affect microalgal photosynthesis and growth? , 2016, Aquatic toxicology.
[25] L. Katz,et al. Distribution of Fullerene Nanoparticles between Water and Solid Supported Lipid Membranes: Thermodynamics and Effects of Membrane Composition on Distribution. , 2015, Environmental science & technology.
[26] Melanie Bergmann,et al. Marine Anthropogenic Litter , 2015, Springer International Publishing.
[27] Richard C. Thompson,et al. Microplastics in freshwater systems: a review of the emerging threats, identification of knowledge gaps and prioritisation of research needs. , 2015, Water research.
[28] Amy Lusher,et al. Microplastics in the Marine Environment: Distribution, Interactions and Effects , 2015 .
[29] J. Stevenson,et al. Ecological assessments with algae: a review and synthesis , 2014, Journal of phycology.
[30] P. Dörmann,et al. Galactolipids in Plant Membranes , 2013 .
[31] Richard E Engler,et al. The complex interaction between marine debris and toxic chemicals in the ocean. , 2012, Environmental science & technology.
[32] Johannes E. Schindelin,et al. Fiji: an open-source platform for biological-image analysis , 2012, Nature Methods.
[33] J. Harwood,et al. RISING WATER TEMPERATURES ALTER LIPID DYNAMICS AND REDUCE N‐3 ESSENTIAL FATTY ACID CONCENTRATIONS IN SCENEDESMUS OBLIQUUS (CHLOROPHYTA) 1 , 2011, Journal of phycology.
[34] P. Bhattacharya,et al. Physical Adsorption of Charged Plastic Nanoparticles Affects Algal Photosynthesis , 2010 .
[35] M. Kates. Techniques of Lipidology: Isolation, Analysis, and Identification of Lipids , 2010 .
[36] M. Merzlyak,et al. COORDINATED CAROTENOID AND LIPID SYNTHESES INDUCED IN PARIETOCHLORIS INCISA (CHLOROPHYTA, TREBOUXIOPHYCEAE) MUTANT DEFICIENT IN Δ5 DESATURASE BY NITROGEN STARVATION AND HIGH LIGHT 1 , 2010 .
[37] C. Parrish. Essential Fatty Acids in Aquatic Food Webs , 2009 .
[38] J. Harwood,et al. Algal lipids and effect of the environment on their biochemistry , 2009 .
[39] J. Harwood,et al. Lipids and lipid metabolism in eukaryotic algae. , 2006, Progress in lipid research.
[40] M. T. Arts,et al. Essential fatty acids in the planktonic food web and their ecological role for higher trophic levels , 2004 .
[41] C. Goldman,et al. A highly unsaturated fatty acid predicts carbon transfer between primary producers and consumers , 2000, Nature.
[42] J. G. Bell,et al. Lipid nutrition of marine fish during early development : current status and future directions , 1999 .
[43] Harold C. Bold,et al. The Morphology of Chlamydomonas chlamydogama, Sp. Nov. , 1949 .