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Environmental Contamination with Micro- and Nanoplastics Changes the Phototaxis of Euryhaline Zooplankton to Paired Photostimulation

Water 2022 12 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Yuri N. Morgalev, Victor Dyomin, Sergey Morgalev, Alexandra Davydova, Tamara Morgaleva, Oksana Kondratova, Igor Polovtsev, Nikolay Kirillov, Alexey Olshukov

Summary

A paired photostimulation behavioral assay using freshwater crustaceans was validated for detecting micro- and nanoplastic contamination in saltwater reservoirs, with zooplankton behavioral responsiveness serving as an early warning indicator. The method offers a rapid, biologically integrative approach to assessing plastic pollution in aquatic environments.

Study Type Environmental

Our earlier studies showed that paired photostimulation allows the detection of pollutants in an aqueous medium according to the behavioral responses of freshwater Crustacea. The first stimulus initiated and stabilized the behavioral response. The increase in response to the second stimulus made it possible to assess the responsiveness of the zooplankton community. This paper studies the validity of this method for the detection of micro- and nanoplastic contamination of saltwater reservoirs according to the behavioral response of Artemia salina and Moina salina crustaceans. The studies were conducted in laboratory conditions using a submersible holographic camera developed by us, which ensures the in situ detection of the concentration and speed of crustaceans in a volume of up to 1 dm3, as well as makes it possible to change the intensity and duration of the attracting light. It was established that the phototropic response of crustaceans decreases in seawater at the cumulative dose of exposure to microplastics—0.15 mg∙dm−3∙h and nanoplastics—0.3 mg∙dm−3∙h. The paired photostimulation reveals the altering effect of micro- and nanoplastics in the saltwater medium no later than 3 h after their appearance, which indicates the promising potential of this method for the alarm response in monitoring the environmental well-being of water bodies.

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