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转录反应为深入了解慢性聚苯乙烯纳米塑料暴露对大型蚤的影响提供了线索。

Transcriptional response provides insights into the effect of chronic polystyrene nanoplastic exposure on Daphnia pulex.

机构信息

State Key Laboratory of Marine Environmental Science, College of Ocean and Earth Sciences, Xiamen University, Xiamen, 361102, China.

School of Life Science, East China Normal University, Shanghai, 200241, China.

出版信息

Chemosphere. 2020 Jan;238:124563. doi: 10.1016/j.chemosphere.2019.124563. Epub 2019 Aug 10.

Abstract

Nanoplastic pollution is widespread and persistent across global water systems and can cause a negative effect on aquatic organisms, especially the zooplankter which is the keystone of the food chain. The present study uses RNA sequencing to assess the global change in gene expression caused by 21 days of exposure to 75 nm polystyrene (PS) nanoplastics on Daphnia pulex, a model organism for ecotoxicity. With the threshold value at P value < 0.05 and fold change >2, 244 differentially expressed genes were obtained. Combined with real-time PCR validation of several selected genes, our results indicated that a distinct expression profile of key genes, including downregulated trehalose transporter, trehalose 6-phosphate synthase/phosphatase, chitinase and cathepsin-L as well as upregulated doublesex 1 and doublesex and mab-3 related transcription factor-like protein, contributed to the toxic effects of chronic nanoplastic exposure on Daphnia, such as slowed growth, subdued reproductive ability and reproductive pattern shifting. Our study also showed that chronic exposure to nanoplastic changed the sex ratio of D. pulex neonates. By integrating the gene expression pattern in an important model organism, this study gained insight into the molecular mechanisms of the toxic effect of chronic PS nanoplastic exposure on D. pulex, which may also extend to other nanoplastics or aquatic animals.

摘要

纳米塑料污染在全球水系中广泛存在且具有持久性,并可能对水生生物产生负面影响,尤其是浮游动物,它们是食物链的关键环节。本研究使用 RNA 测序技术,评估了 75nm 聚苯乙烯(PS)纳米塑料暴露 21 天后对水蚤(Daphnia pulex)的基因表达的全球变化,水蚤是生态毒性的模式生物。使用 P 值<0.05 和倍数变化>2 的阈值,获得了 244 个差异表达基因。结合对几个选定基因的实时 PCR 验证,我们的结果表明,关键基因的表达谱明显改变,包括下调的海藻糖转运蛋白、海藻糖 6-磷酸合酶/磷酸酶、几丁质酶和组织蛋白酶-L 以及上调的双性 1 和双性和 mab-3 相关转录因子样蛋白,这些基因导致了慢性纳米塑料暴露对水蚤的毒性作用,如生长缓慢、生殖能力减弱和生殖模式转变。我们的研究还表明,慢性暴露于纳米塑料会改变水蚤幼体的性别比例。通过整合重要模式生物的基因表达模式,本研究深入了解了慢性 PS 纳米塑料暴露对水蚤的毒性作用的分子机制,这也可能扩展到其他纳米塑料或水生动物。

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