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Transcriptional and toxic responses to saxitoxin exposure in the marine copepod Tigriopus japonicus.
Kang, Hye-Min; Lee, Jihoon; Lee, Yeon-Ju; Park, Yeun; Lee, Euihyeon; Shin, A-Young; Han, Jeonghoon; Lee, Hyi-Seung; Lee, Jong Seok; Lee, Kyun-Woo.
Affiliation
  • Kang HM; Marine Biotechnology Research Center, Korea Institute of Ocean Science and Technology, Busan, 49111, South Korea.
  • Lee J; Marine Biotechnology Research Center, Korea Institute of Ocean Science and Technology, Busan, 49111, South Korea.
  • Lee YJ; Marine Biotechnology Research Center, Korea Institute of Ocean Science and Technology, Busan, 49111, South Korea.
  • Park Y; Marine Biotechnology Research Center, Korea Institute of Ocean Science and Technology, Busan, 49111, South Korea.
  • Lee E; Marine Biotechnology Research Center, Korea Institute of Ocean Science and Technology, Busan, 49111, South Korea.
  • Shin AY; Marine Biotechnology Research Center, Korea Institute of Ocean Science and Technology, Busan, 49111, South Korea.
  • Han J; Marine Biotechnology Research Center, Korea Institute of Ocean Science and Technology, Busan, 49111, South Korea.
  • Lee HS; Marine Biotechnology Research Center, Korea Institute of Ocean Science and Technology, Busan, 49111, South Korea.
  • Lee JS; Marine Biotechnology Research Center, Korea Institute of Ocean Science and Technology, Busan, 49111, South Korea.
  • Lee KW; Marine Biotechnology Research Center, Korea Institute of Ocean Science and Technology, Busan, 49111, South Korea. Electronic address: kyunu@kiost.ac.kr.
Chemosphere ; 309(Pt 1): 136464, 2022 Dec.
Article in En | MEDLINE | ID: mdl-36122751
ABSTRACT
Saxitoxin (STX) is a highly toxic marine neurotoxin produced by phytoplankton and a growing threat to ecosystems worldwide due to the spread of toxic algae. Although STX is an established sodium channel blocker, the overall profile of transcriptional levels in STX-exposed organisms has yet to be described. Here, we describe a toxicity assay and transcriptome analysis of the copepod Tigriopus japonicus exposed to STX. The half-maximal lethal concentration of STX was 12.35 µM, and a rapid mortality slope was evident at concentrations between 12 and 13 µM. STX induced changes in swimming behavior among the copepods after 10 min of exposure. In transcriptome analysis, gene ontology revealed that the genes involved in nervous system and gene expression were highly enriched. In addition, the congenital neurological disorder and nuclear factor erythroid 2-related factor 2-mediated oxidative stress pathways were identified to be the most significant in network analysis and toxicity pathway analysis, respectively. This study provides valuable information about the effects of STX and related transcriptional responses in T. japonicus.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Saxitoxin / Copepoda Type of study: Prognostic_studies Limits: Animals Language: En Journal: Chemosphere Year: 2022 Document type: Article Affiliation country: South Korea

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Saxitoxin / Copepoda Type of study: Prognostic_studies Limits: Animals Language: En Journal: Chemosphere Year: 2022 Document type: Article Affiliation country: South Korea
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