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The Ability of Gastropods of Lake Baikal to the Feeding and Excretion of Microplastic Particles with Different Morphological Structures
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Researchers conducted laboratory experiments with three gastropod species from Lake Baikal -- including the endemic Benedictia baicalensis -- exposing them to polystyrene fragments and polyester fibers alongside food, and found all species were capable of ingesting and excreting microplastics. The rate of microplastic excretion was species-specific and correlated directly with particle morphology, suggesting differential ecological risk for endemic versus widespread species.
Studies of the pollution of Lake Baikal with microplastic particles have been started quite recently. Almost all research is focused on the assessment of surface water pollution, while the impact of microplastics on Baikal organisms remains unexplored. We conducted a laboratory experiment involving three species of gastropod mollusks, the Palearctic Lymnaea stagnalis (L., 1758) and Radix auricularia (L., 1758), as well as the Baikal endemic Benedictia baicalensis (Gerstfeldt, 1859). Two types of microplastics were used in the experiment: fragments of polystyrene and polyester fibers, prepared independently in the laboratory. These plastic particles, along with the food mixture, were placed in aquariums with mollusks. In total, as a result of the experiment, 386 preparations with mollusk excrement were obtained, of which 144 preparations were for the Radix auricularia species, 176 for the Lymnaea stagnalis species, and 67 for the Benedictia baicalensis species, the experiment with the latter species was carried out only with microplastic fragments. All preparations were analyzed according to the degree of fluorescence. The data were statistically processed using Spearman’s rank correlation coefficient. The data obtained allowed us to conclude that gastropods of these species are able to absorb microplastic particles and remove them from the body. However, the rate of removal of microplastic particles from the body of a mollusk is species-specific, and also directly depends on the morphological structure of microplastic particles.
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The Ability of Gastropods of Lake Baikal to Consume and Excrete Microplastic Particles of Different Morphological Structures
AI summary Read the abstract
Researchers conducted a laboratory experiment with three gastropod species from Lake Baikal -- including the endemic Benedictia baicalensis -- feeding them polystyrene fragments and polyester fibers alongside food, and analyzing 386 excrement preparations to assess each species' ability to consume and excrete morphologically distinct microplastic particle types.
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Researchers developed a new framework for assessing the ecological risks of microplastics to freshwater organisms by focusing on species that are known to actually ingest them. The study found that current risk assessment methods may underestimate the danger to freshwater ecosystems and that species known to eat microplastics showed different sensitivity patterns than the broader population of test organisms.
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Researchers analyzed gastrointestinal contents of fish species from Lake Baikal for microplastic particles, finding plastics in a proportion of sampled fish across multiple species. Fibres dominated the ingested particle types, and microplastic occurrence correlated with proximity to tourist and recreational areas along the lakeshore, linking human activity to plastic ingestion in this globally important freshwater system.
Microplastics in Sediments of the Littoral Zone and Beach of Lake Baikal
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Researchers quantified microplastic particles of different morphologies in beach and littoral zone sediments of Lake Baikal, the first study to focus specifically on sediment rather than surface water at this iconic lake. Higher concentrations were found in finer sediment fractions near human-use areas, with fibers as the dominant form.
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