聚乙烯微塑料对芥蓝的影响:毒性机理研究

IF 5.3 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Hao Wu, Beibei He, Bocheng Chen, An Liu
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引用次数: 0

摘要

聚乙烯微塑料(PE-MPs)对生态环境(包括动物和植物)具有毒性。这项研究调查了光降解的 PE-MPs 对 Brassica rapa 的毒性,Brassica rapa 是一种典型的模式植物,生命周期只有 30 天左右。与空白组相比,光降解的 PE-MPs 会抑制芸苔属植物的生长,茎长减少了 11.94% 至 51.11%,鲜重和干重分别减少了 18.56% 至 27.46% 和 1.90% 至 6.91%。接受更多光辐射的 PE-MPs 变得更加疏水。这就抑制了 PE-MPs 随着植物吸水过程进入植物体内。此外,当 PE-MPs 位于土壤下层时,芸薹属植物需要更长的时间才能接触到它们,因此与 PE-MPs 位于土壤上层的情况相比,毒性效应较低。研究结果还表明,光降解 PE-MPs 暴露组的丙二醛(MDA)含量增加了 1.37%-7.28%,而过氧化氢酶活性(CAT)增加了 60.11%。这说明 PE-MPs 能引起植物的氧化胁迫反应,诱导植物抵抗外部胁迫。转录组分析结果表明,受 PE-MPs 影响的芥蓝,与植物-病原体相互作用途径相关的基因显著上调,而核糖体途径基因则显著下调。这导致生长率下降,核糖体亚基的平衡水平降低,从而导致叶脉发育异常。这些结论表明了光降解的 PE-MPs 对甘蓝的毒性作用和破坏机制。本研究的新颖之处在于利用单变量分析和转录组分析来研究光降解的 PE-MPs 如何对甘蓝产生毒性。研究结果可为揭示MPs对植物生长的影响提供理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of polyethylene microplastics on Brassica rapa: Toxicity mechanism investigation

Polyethylene microplastics (PE-MPs) have toxicity to ecological environment, including animals and plants. This study investigated the toxicity of photodegraded PE-MPs on Brassica rapa, which is a typical model plant and only have around a 30-day life cycle. It is noted that the presence of photodegraded PE-MPs inhibited Brassica rapa growth since the stem length decreased by 11.94%–51.11 % while the fresh weight and dry weight decreased by 18.56%–27.46 % and 1.90 %–6.91 % respectively, compared to the blank group. PE-MPs receiving more light radiation became more hydrophobic. This inhibited PE-MPs entering the plant body along with the process of plant absorbing water. Furthermore, when PE-MPs were located in the lower soil layers, Brassica rapa reaching them needs a longer time, hence showing lower toxicity effect than the case of PE-MPs located in the upper soil layer. The research outcomes also indicated that malondialdehyde (MDA) contents in photodegraded PE-MPs exposure group increased by 1.37%–7.28 % while the catalase activity (CAT) increased by 60.11 %. This means that PE-MPs caused oxidative stress response in plants, inducing plants to resist external stress. Transcriptomic analysis results showed that Brassica rapa, which was affected by PE-MPs, significantly up-regulated genes related to the plant-pathogen interaction pathway while the ribosome pathway genes were significantly down-regulated. This led to a decrease in growth rate and a decrease in the homeostatic level of the ribosomal subunit and hence resulting in abnormal leaf vein development. These conclusions indicated the toxic effect and damage mechanism of photodegraded PE-MPs on Brassica rapa. The novelty of this study was to use both univariate analysis and transcriptomic analysis to investigate how photodegraded PE-MPs exert toxicity on Brassica rapa. The results can provide a theoretical basis for revealing the influence of MPs on plant growth.

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来源期刊
Emerging Contaminants
Emerging Contaminants Medicine-Public Health, Environmental and Occupational Health
CiteScore
10.00
自引率
6.70%
发文量
35
审稿时长
44 days
期刊介绍: Emerging Contaminants is an outlet for world-leading research addressing problems associated with environmental contamination caused by emerging contaminants and their solutions. Emerging contaminants are defined as chemicals that are not currently (or have been only recently) regulated and about which there exist concerns regarding their impact on human or ecological health. Examples of emerging contaminants include disinfection by-products, pharmaceutical and personal care products, persistent organic chemicals, and mercury etc. as well as their degradation products. We encourage papers addressing science that facilitates greater understanding of the nature, extent, and impacts of the presence of emerging contaminants in the environment; technology that exploits original principles to reduce and control their environmental presence; as well as the development, implementation and efficacy of national and international policies to protect human health and the environment from emerging contaminants.
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