High-resolution multiomics links nutrients and mixotrophy to toxicity in a harmful bloom of the haptophyte .

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Hauptverfasser: Otte, Antonia, Wohlrab, Sylke, Moritz, Franco, Müller, Constanze, Janouškovec, Jan, Michálek, Jan, Cembella, Allan, Voss, Daniela, Wang, Xinhui, Tebben, Jan, Larsen, Thomas Ostenfeld, Edvardsen, Bente, Schmitt-Kopplin, Philippe, John, Uwe
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Sprache:en
Veröffentlicht: Science advances 2025
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author Otte, Antonia
Wohlrab, Sylke
Moritz, Franco
Müller, Constanze
Janouškovec, Jan
Michálek, Jan
Cembella, Allan
Voss, Daniela
Wang, Xinhui
Tebben, Jan
Larsen, Thomas Ostenfeld
Edvardsen, Bente
Schmitt-Kopplin, Philippe
John, Uwe
author_facet Otte, Antonia
Wohlrab, Sylke
Moritz, Franco
Müller, Constanze
Janouškovec, Jan
Michálek, Jan
Cembella, Allan
Voss, Daniela
Wang, Xinhui
Tebben, Jan
Larsen, Thomas Ostenfeld
Edvardsen, Bente
Schmitt-Kopplin, Philippe
John, Uwe
Otte, Antonia
Wohlrab, Sylke
Moritz, Franco
Müller, Constanze
Janouškovec, Jan
Michálek, Jan
Cembella, Allan
Voss, Daniela
Wang, Xinhui
Tebben, Jan
Larsen, Thomas Ostenfeld
Edvardsen, Bente
Schmitt-Kopplin, Philippe
John, Uwe
collection PubMed - marine biology
contents High-resolution multiomics links nutrients and mixotrophy to toxicity in a harmful bloom of the haptophyte . Otte, Antonia Wohlrab, Sylke Moritz, Franco Müller, Constanze Janouškovec, Jan Michálek, Jan Cembella, Allan Voss, Daniela Wang, Xinhui Tebben, Jan Larsen, Thomas Ostenfeld Edvardsen, Bente Schmitt-Kopplin, Philippe John, Uwe Harmful Algal Bloom Haptophyta Nutrients Polyketide Synthases Multiomics Harmful algal blooms (HABs) of the toxigenic haptophyte are known to cause fish mortalities and collateral ecosystem damage. The ichthyotoxic mechanisms are poorly understood but likely dependent on toxigenesis by polyketide synthases (PKSs). We hypothesize that induction of PKS activity facilitates mixotrophic behavior during nutrient-depleted bloom conditions. To identify potential in situ stimuli for growth, toxigenicity, and bloom persistence, we compared environmental factors and biological processes identified by metaomics to HABs between two fjords in northern Norway. We identified the polyketide ichthyotoxin leadbeaterin-1 from the bloom and found potentially associated candidate PKS genes of which most were higher expressed at bloom stations. A relative depletion of inorganic nitrogen and phosphate during the bloom was correlated with higher expression of genes involved in endocytosis, autophagy, and lysosomal activity. Mixotrophy is evidently a compensatory nutritional strategy coupled to induction of toxigenesis and other metabolomic processes as biotic factors linked to bloom dynamics.
format Artículo científico
id pubmed_40561027
institution PubMed
language en
publishDate 2025
publisher Science advances
record_format pubmed
spellingShingle High-resolution multiomics links nutrients and mixotrophy to toxicity in a harmful bloom of the haptophyte .
Otte, Antonia
Wohlrab, Sylke
Moritz, Franco
Müller, Constanze
Janouškovec, Jan
Michálek, Jan
Cembella, Allan
Voss, Daniela
Wang, Xinhui
Tebben, Jan
Larsen, Thomas Ostenfeld
Edvardsen, Bente
Schmitt-Kopplin, Philippe
John, Uwe
Harmful Algal Bloom
Haptophyta
Nutrients
Polyketide Synthases
Multiomics
High-resolution multiomics links nutrients and mixotrophy to toxicity in a harmful bloom of the haptophyte . Otte, Antonia Wohlrab, Sylke Moritz, Franco Müller, Constanze Janouškovec, Jan Michálek, Jan Cembella, Allan Voss, Daniela Wang, Xinhui Tebben, Jan Larsen, Thomas Ostenfeld Edvardsen, Bente Schmitt-Kopplin, Philippe John, Uwe Harmful Algal Bloom Haptophyta Nutrients Polyketide Synthases Multiomics Harmful algal blooms (HABs) of the toxigenic haptophyte are known to cause fish mortalities and collateral ecosystem damage. The ichthyotoxic mechanisms are poorly understood but likely dependent on toxigenesis by polyketide synthases (PKSs). We hypothesize that induction of PKS activity facilitates mixotrophic behavior during nutrient-depleted bloom conditions. To identify potential in situ stimuli for growth, toxigenicity, and bloom persistence, we compared environmental factors and biological processes identified by metaomics to HABs between two fjords in northern Norway. We identified the polyketide ichthyotoxin leadbeaterin-1 from the bloom and found potentially associated candidate PKS genes of which most were higher expressed at bloom stations. A relative depletion of inorganic nitrogen and phosphate during the bloom was correlated with higher expression of genes involved in endocytosis, autophagy, and lysosomal activity. Mixotrophy is evidently a compensatory nutritional strategy coupled to induction of toxigenesis and other metabolomic processes as biotic factors linked to bloom dynamics.
title High-resolution multiomics links nutrients and mixotrophy to toxicity in a harmful bloom of the haptophyte .
topic Harmful Algal Bloom
Haptophyta
Nutrients
Polyketide Synthases
Multiomics
url https://pubmed.ncbi.nlm.nih.gov/40561027/