Department of Biosciences, Himachal Pradesh University, Shimla, 171005, India.
Department of Biosciences, Himachal Pradesh University, Shimla, 171005, India.
Environ Res. 2024 Dec 1;262(Pt 2):119960. doi: 10.1016/j.envres.2024.119960. Epub 2024 Sep 7.
Microplastics (MPs) pollution has raised serious environmental concerns due to its widespread generation and discharge across global ecosystems. It is estimated that approximately 400 million metric tons of plastic are produced annually, with 54% ending up as waste. The MPs account for a significant portion of this pollution. These MPs interact with heavy metals (HMs) in terrestrial ecosystems, such as cadmium (Cd), lead (Pb), and arsenic (As), which are introduced through various industrial activities at rates of thousands of tons per year. Such interactions may cause synergistic or antagonistic effects on plants. Recent studies suggest that MPs and HMs exposure impacts various physiological and biochemical pathways in plants, thereby increasing the toxicity symptoms. However, the existing scholarly understanding of the coupled effect of HMs and MPs on plants is limited, highlighting the need to explore these complex dynamics further. Through a comprehensive analysis of current research, this review underscores various pathways of MPs and HMs infiltration mechanisms, detailing their penetration, translocation, and bioaccumulation within plants. The physiological and biochemical effects of both pollutants on plants are deliberated individually and in combination. The review reveals that the co-existence of these contaminants results in a multifaceted environmental challenge, affecting overall plant growth, yield, and quality in ways that differ from individual exposure. Building on recent advancements, this article is expected to delineate the complex interactions between MPs, HMs, and plants and enhance the current understanding of the intricate interplay between them.
微塑料(MPs)污染因其在全球生态系统中广泛产生和排放而引起了严重的环境问题。据估计,每年大约有 4 亿吨塑料被生产,其中 54%最终成为废物。这些 MPs 是造成这种污染的主要原因之一。这些 MPs 与陆地生态系统中的重金属(HMs)相互作用,例如镉(Cd)、铅(Pb)和砷(As),这些重金属通过各种工业活动以每年数千吨的速度进入生态系统。这种相互作用可能会对植物产生协同或拮抗作用。最近的研究表明,MPs 和 HMs 暴露会影响植物的各种生理和生化途径,从而增加毒性症状。然而,目前对 HMs 和 MPs 对植物的耦合效应的科学理解有限,这突出表明需要进一步探索这些复杂的动态。通过对当前研究的综合分析,本综述强调了 MPs 和 HMs 渗透机制的各种途径,详细说明了它们在植物中的穿透、迁移和生物积累。分别讨论了这两种污染物对植物的生理和生化效应,并对它们的综合影响进行了讨论。该综述表明,这些污染物的共存导致了多方面的环境挑战,以不同于单独暴露的方式影响植物的整体生长、产量和质量。基于最近的进展,本文有望阐明 MPs、HMs 和植物之间的复杂相互作用,并增强对它们之间复杂相互作用的当前理解。