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土壤湿度和质地在自然土壤条件下介导生菜对微(纳)塑料的吸收及生长。

Soil moisture and texture mediating the micro(nano)plastics absorption and growth of lettuce in natural soil conditions.

作者信息

Wang Jiuqi, Zhang Shaoliang, Xing Hao, Yan Pengke, Wang Jingang

机构信息

School of Resource and Environment, Northeast Agricultural University, Harbin, China.

School of Resource and Environment, Northeast Agricultural University, Harbin, China.

出版信息

J Hazard Mater. 2025 Jan 15;482:136575. doi: 10.1016/j.jhazmat.2024.136575. Epub 2024 Nov 22.

DOI:10.1016/j.jhazmat.2024.136575
PMID:39579700
Abstract

The absorption of microplastics and nanoplastics (M(N)Ps) by plants has been reported, but their uptake from natural soils that is similar to the agro-ecosystems remains unclear. Additionally, the influence of soil environment factors, such as soil moisture (SM) and soil texture (ST), on the absorption and migration of M(N)Ps from soil remains uncertain. We examined absorption of M(N)Ps of various sizes by lettuce (Lactuca sativa) in Mollisols with varying levels of SM (5, 10, 15 ml water per 2d) across different ST (23.67 % and 44.09 % sand) under controlled incubation conditions. Our results revealed high M(N)Ps absorption by lettuce from natural soil, with notable distribution, particularly in stem and even on leaf surfaces, suggesting to the potential migration path. M(N)Ps presence reduced lettuce growth across different SM and ST compared with the control group (without M(N)Ps), possibly due to the uptake of M(N)Ps. Higher SM promoted plant growth and transpiration, enhanced M(N)Ps absorption and migration, and resulted in higher concentration observed in the leaves. Moreover, an interaction between SM and ST was observed, affecting the distribution of M(N)Ps in lettuce organs. These findings underscore the significance of SM and ST as key factors affecting M(N)Ps absorption and distribution in plants.

摘要

已有报道称植物会吸收微塑料和纳米塑料(M(N)Ps),但其从类似于农业生态系统的天然土壤中的吸收情况仍不清楚。此外,土壤环境因素,如土壤湿度(SM)和土壤质地(ST),对土壤中M(N)Ps吸收和迁移的影响仍不确定。我们在可控培养条件下,研究了不同大小的M(N)Ps在不同土壤质地(砂含量分别为23.67%和44.09%)且土壤湿度水平不同(每2天5、10、15毫升水)的软土中被生菜(Lactuca sativa)吸收的情况。我们的结果显示生菜从天然土壤中对M(N)Ps的吸收量很高,且分布显著,特别是在茎部,甚至在叶片表面,这表明了潜在的迁移途径。与对照组(无M(N)Ps)相比,M(N)Ps的存在降低了不同土壤湿度和土壤质地条件下生菜的生长,这可能是由于吸收了M(N)Ps。较高的土壤湿度促进了植物生长和蒸腾作用,增强了M(N)Ps的吸收和迁移,并导致叶片中观察到更高的浓度。此外,还观察到土壤湿度和土壤质地之间的相互作用,影响了M(N)Ps在生菜器官中的分布。这些发现强调了土壤湿度和土壤质地作为影响植物中M(N)Ps吸收和分布的关键因素的重要性。

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