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Risks of microplastics on germination and growth of pepper (Capsicum annuum L.) depending on the type, concentration, and particle size

Environmental Technology & Innovation 2025 4 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 58 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Sashuang Rong, Sashuang Rong, Sashuang Rong, Guiming Liu, Guiming Liu, Guiming Liu, Shutao Wang, Shutao Wang, Fang Feng, Fang Feng, Fang Feng, Wei Liu Sashuang Rong, Sashuang Rong, Sashuang Rong, Shutao Wang, Shutao Wang, Shutao Wang, Sashuang Rong, Shutao Wang, Shutao Wang, Shutao Wang, Shutao Wang, Sashuang Rong, Shutao Wang, Fang Feng, Sashuang Rong, Fang Feng, Sashuang Rong, Sashuang Rong, Huiwei Zhao, Sashuang Rong, Sashuang Rong, Sashuang Rong, Huang Jia, Guiming Liu, Huang Jia, Huiwei Zhao, Sashuang Rong, Sashuang Rong, Mei Wang, Sashuang Rong, Guiming Liu, Guiming Liu, Guiming Liu, Shutao Wang, Sashuang Rong, Huiwei Zhao, Mei Wang, Sashuang Rong, Huiwei Zhao, Sashuang Rong, Sashuang Rong, Sashuang Rong, Huiwei Zhao, Sashuang Rong, Huiwei Zhao, Wei Liu Shiming Su, Shiming Su, Shiming Su, Sashuang Rong, Sashuang Rong, Shiming Su, Shiming Su, Shiming Su, Shutao Wang, Shiming Su, Shiming Su, Wei Liu Wei Liu Wei Liu Mei Wang, Wei Liu

Summary

Researchers tested how different types, concentrations, and sizes of microplastics affect pepper seed germination and seedling growth. They found that most microplastic treatments inhibited germination and that polyethylene terephthalate (PET) particles were generally the most harmful to seedling development. The study also revealed that larger microplastic particles tended to cause more oxidative stress in the plants, suggesting particle size plays an important role in toxicity.

Microplastics (MPs) accumulation is a growing concern and poses potential risks to cultivated vegetables. An accurate assessment of the risks associated with microplastics on seedling germination and growth is essential, particularly considering factors such as concentration, species, and particle size. Therefore, a cultivation experiment was conducted to investigate the risks of MPs on pepper with varying concentrations and particle sizes of polyethylene (PE), polypropylene (PP), and polyethylene terephthalate (PET). Our results indicated that germination of pepper seeds was inhibited in most cases, with the inhibition ranging from 6.28 % to 15.99 %. The addition of PP and PET-MPs resulted in a significant reduction in root weight and length in pepper seedlings. Generally, the growth of pepper seedlings was more significantly affected by PET than by PE or PP. Furthermore, MPs induced oxidative stress in peppers, which varied with particle sizes. The effects of small-size (25 μm) treatments were ranked as PET > PP > PE, and the average values of the integrated biomarker response index (IBRv2) were 4.02, 3.67, and 3.66, respectively. In contrast, the IBRv2 values for the large-size (300 μm) treatments were ranked as PE > PP > PET, with average IBRv2 values of 7.68, 7.36, and 6.86, respectively. This suggests that an increase in particle size of MPs enhances oxidative stress. These findings allowed a more comprehensive assessment of the mechanisms of phytotoxicity of MPs to pepper plants. • PE, PP and PET-MPs had inhibitory effects on pepper seed germination and seedling growth. • MPs affected pepper antioxidant enzyme activity and organic matter content. • Increased particle size of MPs enhances oxidative stress.

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