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Effect and mechanism of microplastics exposure against microalgae: Photosynthesis and oxidative stress

The Science of The Total Environment 2023 54 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 70 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Xiaowei Zheng, Jue Li, Xiaowei Zheng, Xiaowei Zheng, Xiaowei Zheng, Xiaowei Zheng, Xiaowei Zheng, Xiaowei Zheng, Xiaowei Zheng, Yanyao Li, Yanyao Li, Xiaowei Zheng, Xianglin Liu, Xiaowei Zheng, Qihui Li, Xiaowei Zheng, Yanyao Li, Xianglin Liu, Honghui Huang, Xianglin Liu, Yanyao Li, Xiaowei Zheng, Xianglin Liu, Yanyao Li, Liangliang Zhang, Xianglin Liu, Honghui Huang, Yanyao Li, Qihui Li, Qihui Li, Yanyao Li, Yanyao Li, Yanyao Li, Xianglin Liu, Shun Zhang, Xiangrong Wang, Zhengqiu Fan Xianglin Liu, Zhengqiu Fan Yanyao Li, Yanyao Li, Zhengqiu Fan Weizhen Zhang, Yanyao Li, Xianglin Liu, Xiangrong Wang, Yanyao Li, Weizhen Zhang, Weizhen Zhang, Weizhen Zhang, Zhengqiu Fan Honghui Huang, Qihui Li, Qihui Li, Qihui Li, Yuqiang Zhao, Yuqiang Zhao, Yuqiang Zhao, Yuqiang Zhao, Zhengqiu Fan Xunfeng Chen, Xunfeng Chen, Xunfeng Chen, Zhengqiu Fan Zhengqiu Fan Xiangrong Wang, Xiangrong Wang, Zhengqiu Fan Honghui Huang, Honghui Huang, Zhengqiu Fan Honghui Huang, Zhengqiu Fan

Summary

Meta-analysis of 55 studies (835 endpoints) found that microplastics reduce chlorophyll-a content and hinder electron transfer in microalgae photosynthetic systems, causing oxidative stress damage. Effects were concentration- and size-dependent, with freshwater microalgae more susceptible than marine species.

Study Type Review

The occurrence of microplastics (MPs) within aquatic ecosystems attracts a major environmental concern. It was demonstrated MPs could cause various ecotoxicological effects on microalgae. However, existing data on the effects of MPs on microalgae showed great variability among studies. Here, we performed a meta-analysis of the latest studies on the effects of MPs on photosynthesis and oxidative stress in microalgae. A total of 835 biological endpoints were investigated from 55 studies extracted, and 37 % of them were significantly affected by MPs. In this study, the impact of MPs against microalgae was concentration-dependent and size-dependent, and microalgae were more susceptible to MPs stress in freshwater than marine. Additionally, we summarized the biological functions of microalgae that are primarily affected by MPs. Under MPs exposure, the content of chlorophyll a (Chl-a) was reduced and electron transfer in the photosynthetic system was hindered, causing electron accumulation and oxidative stress damage, which may also affect biological processes such as energy production, carbon fixation, lipid metabolism, and nucleic acid metabolism. Finally, our findings provide important insights into the effects of MPs stress on photosynthesis and oxidative stress in microalga and enhance the current understanding of the potential risk of MPs pollution on aquatic organisms.

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