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Effects of microplastics on typical macrobenthos in sargassum ecosystems

Environmental Research 2024 3 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Jiong Wu, Shiqi Jiang, Shiqi Jiang, Jiaxin Zhang, Ruikun Sun, Ruikun Sun, Wen Lu, Xing Chen, Zhenqing Dai, Zhenqing Dai, Zhonglian Lian, Chengyong Li

Summary

Researchers studied the distribution and toxic effects of microplastics on macrobenthos organisms living in Sargassum seaweed ecosystems. They found that microplastic accumulation in these organisms increased in a concentration-dependent manner, though no significant bioaccumulation was observed up the food chain. The study revealed that microplastics induced oxidative stress and altered intestinal microflora composition in the exposed organisms.

Study Type Environmental

Recently, microplastics (MPs) have attracted extensive attention to their wide distribution and potential toxicity in ecosystems. However, there was a lack of research focused on MPs in seaweed bed ecosystems. This study investigated the distribution and toxicity of MPs in macrobenthos in Sargassum ecosystem. According to the in-situ investigation results, the abundance of MPs in the sediment was 0.9-2.3 items/g, the indoor microcosmic experiment was constructed. After exposure to MPs (0, 2, and 20 items/g) for 30 days, the abundance of MPs in macrobenthos exhibits a concentration-dependent increase. However, there was no significant bioaccumulation of MPs at the trophic level. The indoor toxicity test revealed that MPs induced oxidative stress and altered intestinal microflora composition in macrobenthos, even at actual environmental concentrations (2 items/g). It may result in a perturbation of the organism's homeostatic equilibrium. High-concentration (20 items/g) MPs had a greater impact on alkaline phosphatase (AKP) in Mollusks. The increase in AKP activity could be indicative of an adaptive mechanism in some macrobenthos while the decline in AKP activity might signal a decrease in their survival. These results elucidated the fate of MPs in ecosystem and the ecological risks of MPs to large benthic animals on model environmental conditions.

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