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微塑料尺寸依赖性对藻类赤潮异弯藻的生化和分子影响。

Microplastic size-dependent biochemical and molecular effects in alga Heterosigma akashiwo.

机构信息

Guangdong Provincial Key Laboratory of Marine Disaster Prediction and Provention, Shantou University, Shantou, Guangdong 515063, China.

South China Sea Environmental Monitoring Center, State Oceanic Administration, Guangzhou 510300, China.

出版信息

Ecotoxicol Environ Saf. 2023 Dec;268:115673. doi: 10.1016/j.ecoenv.2023.115673. Epub 2023 Nov 17.

Abstract

Micro- and nano-plastics (MNPs) are increasingly prevalent contaminants in marine ecosystems and have a variety of negative impacts on marine organisms. While their toxic impact on freshwater microalgae has been well-documented, limited research has been conducted on the influence of MNPs on marine red tide algae, despite their significant implications for human health and coastal ecological stability. This study investigated the physiological, biochemical and molecular reactions of the common harmful algal species, Heterosigma akashiwo, when exposed to polystyrene (PS) MNPs of 80 nm and 1 µm in size with the concentrations of 0, 1, 10, and 20 mg L in 12 days. The results showed that 80 nm-sized MNPs (at concentrations of 10 mg L and 20 mg L) inhibited algal growth. Despite the increased superoxide dismutase (SOD) activity and up-regulation of glutathione metabolism, exposure-induced oxidative stress remained the main cause of the inhibition. Up-regulation of aminoacyl-tRNA biosynthesis and amino acid biosynthesis pathways provide the necessary amino acid feedstock for the synthesis of antioxidant enzymes such as SOD. 1 µm sized PS MNPs increased chlorophyll a (Chl-a) content without significant effects on other parameters. In addition, H. akashiwo have an effective self-regulation ability to defend against two sized MNPs stress at concentrations of 1 mg L by upregulating gene expression related to endocytosis, biotin metabolism, and oxidative phosphorylation. These results provided evidence that H. akashiwo was able to resist exposure to 1 µm MPs, whereas 80 nm NPs exerted a toxic effect on H. akashiwo. This study deepens our understanding of the interaction between MNPs and marine harmful algal at the transcriptional level, providing valuable insights for further evaluating the potential impact of PS MNPs on harmful algal blooms in marine ecosystems.

摘要

微塑料和纳米塑料(MNPs)是海洋生态系统中越来越普遍的污染物,对海洋生物有多种负面影响。虽然它们对淡水微藻的毒性影响已有充分的记录,但对海洋赤潮藻类的影响研究有限,尽管它们对人类健康和沿海生态稳定性有重大影响。本研究调查了常见有害藻类物种赤潮异弯藻在 12 天内暴露于 80nm 和 1µm 大小的聚苯乙烯(PS)MNPs 以及浓度为 0、1、10 和 20mg/L 时的生理、生化和分子反应。结果表明,80nm 大小的 MNPs(浓度为 10mg/L 和 20mg/L)抑制了藻类的生长。尽管超氧化物歧化酶(SOD)活性增加和谷胱甘肽代谢上调,但诱导的氧化应激仍然是抑制的主要原因。氨基酸酰基-tRNA 合成和氨基酸生物合成途径的上调为 SOD 等抗氧化酶的合成提供了必要的氨基酸原料。1µm 大小的 PS MNPs 增加了叶绿素 a(Chl-a)的含量,但对其他参数没有显著影响。此外,赤潮异弯藻在 1mg/L 的浓度下通过上调与内吞作用、生物素代谢和氧化磷酸化相关的基因表达,对两种大小的 MNPs 应激具有有效的自我调节能力。这些结果表明,赤潮异弯藻能够抵抗 1µm MPs 的暴露,而 80nm NPs 对赤潮异弯藻产生毒性作用。本研究深化了我们对 MNPs 与海洋有害藻类在转录水平上相互作用的理解,为进一步评估 PS MNPs 对海洋生态系统中有害藻类大量繁殖的潜在影响提供了有价值的见解。

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