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微(纳)塑料对陆生植物的影响:发芽、生长和凋落物

Impacts of Micro(nano)plastics on Terrestrial Plants: Germination, Growth, and Litter.

作者信息

Li Xiaodong, Wang Rongyu, Dai Wei, Luan Yaning, Li Jing

机构信息

The Key Laboratory for Silviculture and Conservation of Ministry of Education, College of Forestry, Beijing Forestry University, Beijing 100083, China.

School of Environment and Civil Engineering, Jiangnan University, Wuxi 214122, China.

出版信息

Plants (Basel). 2023 Oct 12;12(20):3554. doi: 10.3390/plants12203554.

Abstract

Micro(nano)plastics (MNP) are pervasive in various environmental media and pose a global environmental pollution issue, particularly in terrestrial ecosystems, where they exert a significant impact on plant growth and development. This paper builds upon prior research to analyze and consolidate the effects of MNP on soil properties, seed germination, plant growth, and litter decomposition. The objective is to elucidate the environmental behavior of MNP and their mechanisms of influence on the plant life cycle. The unique physicochemical and electrical properties of MNP enable them to modify soil structure, water retention capacity, and pH. They can potentially act as "electron shuttles" or disrupt natural "electron shuttles" in litter decomposition, thereby interfering with nutrient transport and availability in the soil. Furthermore, MNP can physically obstruct nutrient and water channels within plants, impacting nutrient and water absorption. Once infiltrating plant tissues, MNP can form eco-coronas with plant proteins. Together with MNP adsorbed on the plant's surface and within its tissues, they disrupt normal physiological processes, leading to changes in photosynthesis, biomass, cellular toxicity, genetics, nutrient uptake, and gene expression. These changes, in turn, influence seed germination and plant growth and development. As a burgeoning research field, future studies should delve deeper into various aspects of these changes, such as elucidating the pathways and mechanisms through which MNP enter plant tissues, assessing their intensity and mechanisms of toxicity on different plant species, and exploring the relationship between micro(nano)plastics and "electron shuttles". These endeavors will contribute to establishing a more comprehensive theoretical framework for understanding the environmental behavior of MNP and their impact on plants.

摘要

微(纳)塑料(MNP)在各种环境介质中普遍存在,构成了一个全球环境污染问题,尤其是在陆地生态系统中,它们对植物的生长发育产生重大影响。本文在先前研究的基础上,分析并整合了微(纳)塑料对土壤性质、种子萌发、植物生长和凋落物分解的影响。目的是阐明微(纳)塑料的环境行为及其对植物生命周期的影响机制。微(纳)塑料独特的物理化学和电学性质使其能够改变土壤结构、保水能力和pH值。它们可能充当“电子穿梭体”,或在凋落物分解过程中破坏天然的“电子穿梭体”,从而干扰土壤中的养分运输和有效性。此外,微(纳)塑料会在物理上阻塞植物体内的养分和水分通道,影响养分和水分吸收。一旦渗入植物组织,微(纳)塑料会与植物蛋白形成生态冠。与吸附在植物表面和组织内的微(纳)塑料一起,它们会扰乱正常的生理过程,导致光合作用、生物量、细胞毒性、遗传学、养分吸收和基因表达发生变化。这些变化进而影响种子萌发以及植物的生长和发育。作为一个新兴的研究领域,未来的研究应更深入地探究这些变化的各个方面,例如阐明微(纳)塑料进入植物组织的途径和机制,评估它们对不同植物物种的毒性强度和机制,以及探索微(纳)塑料与“电子穿梭体”之间的关系。这些努力将有助于建立一个更全面的理论框架,以理解微(纳)塑料的环境行为及其对植物的影响。

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