4.7 Article

Two genes related to reproductive development in the juvenile prawn, Macrobrachium nipponense: Molecular characterization and transcriptional response to nanoplastic exposure

期刊

CHEMOSPHERE
卷 281, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2021.130827

关键词

Nanoplastics; Macrobrachium nipponense; Plastic pollution; Wee1 protein kinase; OTU domain ubiquitin aldehyde binding protein; Gene expression

资金

  1. Scientific Research Project of Shanghai Science and Technology Commission [18DZ1204802]
  2. Science Foundation for Young Scientists of Jiangsu in China [20171093]
  3. Major Project of Hydrobios Resources in Jiangsu Province [ZYHB16-3]

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Research on oriental river prawns exposed to nanoplastics revealed that the expression of reproductive-related genes may be affected, leading to inhibition of gene expression at certain concentrations. The study suggests that nanoplastic exposure could have differing effects on gene expression in male and female reproductive organs of M. nipponense.
Plastic pollution in the form of nanoplastics poses a global threat to aquatic ecosystems and the organisms inhabiting them. However, few studies have been conducted on the effects of nanoplastic exposure on reproductive development in crustaceans. In order to address this issue, juvenile oriental river prawns (Macrobrachium nipponense) were exposed to different concentrations of 75-nm polystyrene nanoplastics (0, 5, 10, 20, 40 mg/L) for 28 days. In order to study the regulation of reproduction-related genes in the presence of nanoplastics, the Wee1 protein kinase gene (Wee1) and OTU domain ubiquitin aldehyde binding protein gene (OTUB) were selected. In this study, for the first time, the full-length cDNA of Mn-Wee1 and Mn-OTUB were cloned from M. nipponense. Homologous alignments revealed that Mn-Wee1 had a highly conserved function-critical sequence, and that Mn-OTUB was more closely related to OTUB1 than OTUB2. With increasing concentration of nanoplastics, the expression of both genes increased initially, then decreased. The inhibition of expression of Wee1 and OTUB occurred in 40 mg/L group, respectively. Analysis of the data also indicated that nanoplastic exposure might have differing effects on gene expression in M. nipponense male and female reproductive organs.

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