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纳米塑料毒性对潜在超积累植物——浮萍(Lemna minor L.)的积累、激素调节和耐受机制的影响

The impacts of nanoplastic toxicity on the accumulation, hormonal regulation and tolerance mechanisms in a potential hyperaccumulator - Lemna minor L.

机构信息

Department of Biotechnology, Faculty of Science, Selcuk University, Selcuklu, 42130, Konya, Turkey.

Department of Molecular Biology and Genetics, Faculty of Science, Necmettin Erbakan University, Meram, 42090, Konya, Turkey.

出版信息

J Hazard Mater. 2022 Oct 15;440:129692. doi: 10.1016/j.jhazmat.2022.129692. Epub 2022 Jul 28.

Abstract

Plastic pollution, which is currently one of the most striking problems of our time, raises concerns about the dispersal of micro and nano-sized plastic particles in ecosystems and their toxic effects on living organisms. This study was designed to reveal the toxic effects of polystyrene nanoplastic (PS NP) exposure on the freshwater macrophyte Lemna minor. In addition, elucidating the interaction of this aquatic plant, which is used extensively in the phytoremediation of water contaminants and wastewater treatment facilities, with nanoplastics will guide the development of remediation techniques. For this purpose, we examined nanoplastic accumulation, oxidative stress markers, photosynthetic efficiency, antioxidant system activity and phytohormonal changes in L. minor leaves subjected to PS NP stress (P-1, 100 mg L; P-2, 200 mg L PS NP). Our results showed no evidence of PS NP-induced oxidative damage in P-1 group plants, although PS NP accumulation reached 56 µg g in the leaves. Also, no significant changes in chlorophyll a fluorescence parameters were observed in this group, indicating unaffected photosynthetic efficiency. PS NP exposure triggered the antioxidant system in L. minor plants and resulted in a 3- and 4.6-fold increase in superoxide dismutase (SOD) activity in the P-1 and P-2 groups. On the other hand, high-dose PS NP treatment resulted in insufficient antioxidant activity in the P-2 group and increased hydrogen peroxide (HO) and lipid peroxidation (TBARS contents) by 25 % and 17 % compared to the control plants. Furthermore, PS NP exposure triggered abscisic acid biosynthesis (two-fold in the P-1 and three-fold in the P-2 group), which is also involved in regulating the stress response. In conclusion, L. minor plants tolerated NP accumulation without growth suppression, oxidative stress damage and limitations in photosynthetic capacity and have the potential to be used in remediation studies of NP-contaminated waters.

摘要

塑料污染是当前最引人关注的问题之一,它引发了人们对微纳米塑料颗粒在生态系统中扩散及其对生物毒性的担忧。本研究旨在揭示聚苯乙烯纳米塑料(PS NP)暴露对淡水大型植物浮萍(Lemna minor)的毒性影响。此外,阐明这种水生植物与纳米塑料的相互作用,该植物广泛用于水污染物的植物修复和废水处理设施,将指导修复技术的发展。为此,我们研究了 PS NP 胁迫下浮萍叶片的纳米塑料积累、氧化应激标志物、光合作用效率、抗氧化系统活性和植物激素变化(P-1,100 mg/L;P-2,200 mg/L PS NP)。结果表明,在 P-1 组中,尽管叶片中 PS NP 积累达到 56 µg/g,但未观察到 PS NP 诱导的氧化损伤。此外,该组的叶绿素 a 荧光参数没有明显变化,表明光合作用效率不受影响。PS NP 暴露触发了浮萍植物的抗氧化系统,导致 P-1 和 P-2 组中超氧化物歧化酶(SOD)活性分别增加了 3 倍和 4.6 倍。另一方面,高剂量 PS NP 处理导致 P-2 组抗氧化活性不足,与对照植物相比,过氧化氢(HO)和脂质过氧化(TBARS 含量)分别增加了 25%和 17%。此外,PS NP 暴露触发了脱落酸(ABA)的生物合成(P-1 组增加了两倍,P-2 组增加了三倍),这也参与了胁迫反应的调节。总之,浮萍植物耐受 NP 积累,没有生长抑制、氧化应激损伤和光合作用能力受限,并有潜力用于 NP 污染水的修复研究。

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