Back to Search Start Over

Insights into the molecular response of Dioithona rigida to selenium nanoparticles: de novo transcriptome assembly and differential gene expression analysis

Authors :
Vineeth Kumar Chirayil Meethalepurayil
Karthick Velu
Inbakandan Dhinakarasamy
Lok Kumar Shrestha
Katsuhiko Ariga
Eldon Raj Rene
Ganesh Kumar Vijayakumar
Ravi Mani
Aravind Radhakrishnapillai
Stalin Dhas Tharmathass
Sowmiya Prasad
Source :
Science and Technology of Advanced Materials, Vol 25, Iss 1 (2024)
Publication Year :
2024
Publisher :
Taylor & Francis Group, 2024.

Abstract

The impact of contaminants on Copepod sp. and its molecular response is least explored, despite their abundance and dominance among invertebrates in aquatic environments. In the present investigation, Dioithona rigida, a cyclopoid zooplankton, was treated with selenium nanoparticles (SeNPs) to determine the associated biochemical changes, and the chronic exposure effects were recorded using transcriptomic analysis. It was found that, SeNPs were acutely toxic with a lethal dose 50% of 140.9 mg/L. The de novo assembled transcriptome of the copepod comprised 81,814 transcripts, which underwent subsequent annotations to biological processes (23,378), cellular components (21,414), and molecular functions (31,015). Comparison of the expressed transcripts against the treated sample showed that a total of 186 transcript genes were differentially expressed among the D. rigida treatments (control and SeNPs). The significant downregulated genes are coding for DNA repair, DNA-templated DNA replication, DNA integration, oxidoreductase activity and transmembrane transport. Similarly, significant upregulations were observed in protein phosphatase binding and regulation of membrane repolarization. Understanding the impact of SeNPs on copepods is crucial not only for aquatic ecosystem health but also for human health, as these organisms play a key role in marine food webs, ultimately affecting the fish consumed by humans. By elucidating the molecular responses and potential toxicological effects of SeNPs, this study provides key insights for risk assessments and regulatory policies, ensuring the safety of seafood and protecting human health from the unintended consequences of nanoparticle pollution.

Details

Language :
English
ISSN :
14686996 and 18785514
Volume :
25
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Science and Technology of Advanced Materials
Publication Type :
Academic Journal
Accession number :
edsdoj.211b2002b85c4f58b5c31c7329870625
Document Type :
article
Full Text :
https://doi.org/10.1080/14686996.2024.2379758