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玉米同时暴露于聚乙烯微塑料和氧化锌纳米颗粒:对生长、归宿及相互作用的影响。

Co-exposure of maize to polyethylene microplastics and ZnO nanoparticles: Impact on growth, fate, and interaction.

作者信息

Sun Hongda, Li Zhuofan, Wen Jinyu, Zhou Qianqian, Gong Yafang, Zhao Xiaohan, Mao Hui

机构信息

College of Natural Resources and Environment, Northwest A&F University, Yangling, Shaanxi 712100, PR China; Key Laboratory of Plant Nutrition and the Agri-environment in Northwest China, Ministry of Agriculture, Yangling, Shaanxi 712100, PR China.

College of Natural Resources and Environment, Northwest A&F University, Yangling, Shaanxi 712100, PR China; Key Laboratory of Plant Nutrition and the Agri-environment in Northwest China, Ministry of Agriculture, Yangling, Shaanxi 712100, PR China.

出版信息

Sci Total Environ. 2023 Jun 10;876:162705. doi: 10.1016/j.scitotenv.2023.162705. Epub 2023 Mar 11.

Abstract

Microplastics (MPs), especially polyethylene MPs (PE MPs), which are the primary component of mulch, have attracted increasing attention in recent years. ZnO nanoparticles (NPs), which constitute a metal-based nanomaterial commonly used in agricultural production, co-converge with PE MPs in the soil. However, studies revealing the behavior and fate of ZnO NPs in soil-plant systems in the presence of MPs are limited. In this study, a pot experiment was used to evaluate the effects of maize co-exposure to PE MPs (0.5 % and 5 % w/w) and ZnO NPs (500 mg/kg) on growth, element distribution, speciation, and adsorption mechanism. The results demonstrate that individual exposure to PE MPs posed no significant toxicity; however, it significantly decreased maize grain yield (essentially 0). ZnO NP-exposure treatments significantly increased the Zn concentration and distribution intensity in maize tissues. Among them, the Zn concentration in the maize root exceeded 200 mg/kg, compared with 40 mg/kg in the grain. Moreover, the Zn concentrations in various tissues decreased in the following order: stem, leaf, cob, bract, and grain. Reassuringly, ZnO NPs still could not be transported to the maize stem under co-exposure to PE MPs. ZnO NPs had been biotransformed (64 % of the Zn was associated with histidine, with the remainder being associated with P [phytate] and cysteine) in maize stem. This study provides new insights into the plant physiological risks of PE MP and ZnO NP co-exposure in the soil-plant system and assesses the fate of ZnO NPs.

摘要

微塑料(MPs),尤其是作为地膜主要成分的聚乙烯微塑料(PE MPs),近年来受到了越来越多的关注。氧化锌纳米颗粒(ZnO NPs)是农业生产中常用的一种金属基纳米材料,它与PE MPs在土壤中共同存在。然而,关于MPs存在时ZnO NPs在土壤-植物系统中的行为和归宿的研究有限。在本研究中,通过盆栽试验评估了玉米同时暴露于PE MPs(0.5%和5% w/w)和ZnO NPs(500 mg/kg)对其生长、元素分布、形态及吸附机制的影响。结果表明,单独暴露于PE MPs不会产生显著毒性;然而,它显著降低了玉米籽粒产量(基本为0)。ZnO NPs暴露处理显著增加了玉米组织中的锌浓度和分布强度。其中,玉米根中的锌浓度超过200 mg/kg,而籽粒中的锌浓度为40 mg/kg。此外,各组织中的锌浓度按以下顺序降低:茎、叶、穗轴、苞叶和籽粒。令人放心的是,在与PE MPs共同暴露的情况下,ZnO NPs仍无法转运至玉米茎中。在玉米茎中,ZnO NPs已发生生物转化(64%的锌与组氨酸结合,其余与植酸(P)和半胱氨酸结合)。本研究为土壤-植物系统中PE MPs和ZnO NPs共同暴露对植物的生理风险提供了新的见解,并评估了ZnO NPs的归宿。

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