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From genes to toxins: Profiling Prymnesium parvum during a riverine harmful algal bloom.
Mora, Demetrio; Schlüsener, Michael; Fischer, Helmut; Kleinteich, Julia; Schulz, Manoj; Ternes, Thomas; Thiel, Joana; Wick, Arne; Krenek, Sascha.
Affiliation
  • Mora D; Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany; Current address: Observatory for Climate, Environment and Biodiversity (OCEB), Luxembourg Institute of Science and Technology (LIST), 41 rue du Brill, 4422 Belvaux, Luxembourg.
  • Schlüsener M; Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany.
  • Fischer H; Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany.
  • Kleinteich J; Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany.
  • Schulz M; Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany.
  • Ternes T; Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany.
  • Thiel J; Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany.
  • Wick A; Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany.
  • Krenek S; Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany. Electronic address: krenek@bafg.de.
Harmful Algae ; 136: 102644, 2024 Jun.
Article in En | MEDLINE | ID: mdl-38876525
ABSTRACT
Blooms of Prymnesium parvum, a unicellular alga globally distributed in marine and brackish environments, frequently result in massive fish kills due to the production of toxins called prymnesins by this haptophyte. In August 2022, a harmful algal bloom (HAB) of this species occurred in the lower Oder River (Poland and Germany), which caused mass mortalities of fish and other organisms. This HAB was linked to low discharge of the Oder and mining activities that caused a significant increase in salinity. In this context, we report on the molecular detection and screening of this haptophyte and its toxins in environmental samples and clonal cultures derived thereof. Both conventional PCR and droplet digital PCR assays reliably detected P. parvum in environmental samples. eDNA metabarcoding using the V4 region of the 18S rRNA gene revealed a single Prymnesium sequence variant, but failed to identify it to species level. Four clonal cultures established from environmental samples were unambiguously identified as P. parvum by molecular phylogenetics (near full-length 18S rRNA gene) and light microscopy. Phylogenetic analysis (ITS1-5.8S-ITS2 marker region) placed the cultured phylotype within a clade containing other P. parvum strains known to produce B-type prymnesins. Toxin-screening of the cultures using liquid chromatography-electrospray ionization - time of flight mass spectrometry identified B-type prymnesins, which were also detected in extracts of filter residues from water samples of the Oder collected during the HAB. Overall, our investigation provides a detailed characterization of P. parvum, including their prymnesins, during this HAB in the Oder River, contributing valuable insights into this ecological disaster. In addition, the droplet digital PCR assay established here will be useful for future monitoring of low levels of P. parvum on the Oder River or any other salt-impacted and brackish water bodies.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Phylogeny / Rivers / Harmful Algal Bloom / Haptophyta Country/Region as subject: Europa Language: En Journal: Harmful Algae Year: 2024 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Phylogeny / Rivers / Harmful Algal Bloom / Haptophyta Country/Region as subject: Europa Language: En Journal: Harmful Algae Year: 2024 Document type: Article Affiliation country: