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微(纳)塑料对高等植物及根际环境的影响。

Effects of micro(nano)plastics on higher plants and the rhizosphere environment.

机构信息

College of Marine Sciences, South China Agricultural University, Guangzhou 510642, China; Southern Marine Science and Engineering Guangdong Laboratory, Zhuhai 528478, China.

College of Marine Sciences, South China Agricultural University, Guangzhou 510642, China; Southern Marine Science and Engineering Guangdong Laboratory, Zhuhai 528478, China; Institute of Eco-Environmental Research, Guangxi Key Laboratory of Marine Natural Products and Combinatorial Biosynthesis Chemistry, Biophysical and Environmental Science Research Center, Guangxi Academy of Sciences, Nanning 530007, China.

出版信息

Sci Total Environ. 2022 Feb 10;807(Pt 1):150841. doi: 10.1016/j.scitotenv.2021.150841. Epub 2021 Oct 8.

Abstract

Microplastic/nanoplastic (MP/NP) pollution has emerged as one of the world's most serious environmental issues, with the potential for grave consequences for ecosystems and human health. This review summarizes the current literature on the impacts of MPs/NPs on higher plants to reveal their phytotoxicity. MPs/NPs can be absorbed into plant roots and then enter and translocate to other tissues by transpirational pull. The interaction between plastic particles and plants not only causes oxidative stress but also induces adverse impacts on photosynthesis, metabolism, genetic expression, and other growth parameters. Furthermore, the combination of MP/NP pollution with other contaminants makes the joint effect more complex. The phytotoxicity of MPs/NPs depends on the characteristics of the plastic particles (exposure dose, size, shape, type, age, and surface charge) and of the plants (species, tissues, and growth stage). The ecotoxicity of MPs/NPs in plant species' surrounding habitats is also discussed. MPs/NPs can alter soil characteristics such as soil structure, water holding capacity, and pH in the rhizosphere. In addition, the rhizosphere microbial community composition and diversity were observed to change in the presence of MPs/NPs. Therefore, MPs/NPs can indirectly affect plant growth by changing the soil properties and the microbial community. In addition, suggestions for future study directions were also given. In summary, this review highlights the potential effects of MPs/NPs on higher plants and the surrounding environment and calls for additional studies to be carried out on the impact of plastic particles on the ecosystem and human health.

摘要

微塑料/纳米塑料 (MP/NP) 污染已成为世界上最严重的环境问题之一,对生态系统和人类健康可能造成严重后果。本综述总结了有关 MPs/NPs 对高等植物影响的现有文献,以揭示其植物毒性。MPs/NPs 可以被植物根系吸收,然后通过蒸腾拉力进入并转移到其他组织中。塑料颗粒与植物之间的相互作用不仅会引起氧化应激,还会对光合作用、代谢、基因表达和其他生长参数产生不良影响。此外,MP/NP 污染与其他污染物的结合使联合效应更加复杂。MPs/NPs 的植物毒性取决于塑料颗粒的特性(暴露剂量、大小、形状、类型、年龄和表面电荷)和植物的特性(物种、组织和生长阶段)。还讨论了 MPs/NPs 在植物周围栖息地的生态毒性。MPs/NPs 可以改变根际土壤的特性,如土壤结构、持水能力和 pH 值。此外,还观察到 MPs/NPs 的存在会改变根际微生物群落的组成和多样性。因此,MPs/NPs 可以通过改变土壤性质和微生物群落间接影响植物的生长。此外,还提出了未来研究方向的建议。总之,本综述强调了 MPs/NPs 对高等植物及其周围环境的潜在影响,并呼吁开展更多关于塑料颗粒对生态系统和人类健康影响的研究。

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