Metabolomics revealing the response of rice (Oryza sativa L.) exposed to polystyrene microplastics

水稻 微塑料 化学 代谢组学 核酸 食品科学 稻属 抗氧化剂 开枪 生物量(生态学) 环境化学 园艺 生物 农学 生物化学 色谱法 基因
作者
Xiang Wu,Yao Liu,Shanshan Yin,Keke Xiao,Qiao Xiong,Shijie Bian,Sha Liang,Huijie Hou,Jingping Hu,Jiakuan Yang
出处
期刊:Environmental Pollution [Elsevier BV]
卷期号:266 (Pt 1): 115159-115159 被引量:254
标识
DOI:10.1016/j.envpol.2020.115159
摘要

Large amounts of microplastics accumulate in the agricultural soil. Microplastics would stress the crops but the underlying mechanism remains unclear. Herein, a laboratory exposure and field trials were carried out to investigate the response of rice (Oryza sativa L. II You. 900) to stress induced by polystyrene microplastics (PS-MPs) using a metabolomic approach. After laboratory exposure for 21 days, the decreases in shoot biomass of rice exposed to low, medium and high doses of PS-MPs were 13.1% (CV = 4.1%), 18.8% (CV = 3.7%), and 40.3% (CV = 9.2%), respectively, while the antioxidant enzymes showed an inverted upper-U shape when exposed to PS-MPs. A total of 24 samples from three exposure dose levels were included in the metabolic analysis. The metabolites of 12 amino acids, 16 saccharides, 26 organic acids and 17 others (lipids and polyols) in leaves decreased after the exposure to both 50 mg L-1 and 250 mg L-1 PS-MPs doses with hydroponically-cultured. The inhibition of perturbed biological pathway causes the biosynthesis of amino acids, nucleic acids, fatty acids and some secondary metabolites decreased which indicate that the energy expenditure exceeded the substance accumulation. In order to further validate the effects of PS-MPs on rice leaves obtained from the laboratory-scale experiments, a field-trial experiment was conducted. After 142 days of cultivation in farmland, the results with a maximum of 25.9% lower biomass in the crops exposed with PS-MPs. As such, the presence of PS-MPs may affect rice production by altering the metabolic systems of rice. Long-term exposure of PS-MPs to rice might be a potential risk to rice safety and quality.
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