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Suzanne McGowan appointed Professor of Aquatic Ecosystem Dynamics
Meet the new Special Professor of Aquatic Ecosystem Dynamics: Suzanne McGowan. As of 2024 she is appointed at Utrecht University. Her chair offers a unique combination between the university's faculties of Science and Geosciences. McGowan integrates this with her main affiliation as the Head of Aquatic Ecology at the Netherlands Institute of Ecology (NIOO-KNAW). As a professor, she aims to uncover how water ecosystems have been functioning, and how the major changes on our planet affect this. -
“Waterecosystemen veranderen razendsnel”
Suzanne McGowan is benoemd tot bijzonder hoogleraar Aquatic Ecosystem Dynamics bij de Universiteit Utrecht. Zij gaat zich richten op de vraag hoe waterecosystemen werken, en hoe die onder invloed staan van de grote veranderingen die onze planeet doormaakt. McGowan blijft daarnaast verbonden aan het Nederlands Instituut voor Ecologie (NIOO-KNAW) als hoofd van de afdeling AquatischeEcologie. Als hoogleraar zal ze bruggen slaan tussen diverse onderzoeksgroepen. -
Seasonal timing
Species can adapt over the course of time. As the lives of species are altered by climate change, a different seasonal timing could make them adapt to an early spring, for example. How does this work, and what are the limits to such adaptations? -
How do nutrients and temperature affect cyanobacterial bloom toxicity?
Toxic cyanobacterial blooms threaten freshwater quality, made worse by climate change and eutrophication. The toxicity of these blooms depends not only on cyanobacteria quantity but also on the presence potentially toxin-producing species and genotypes, and their varied toxin production. -
How do nutrients and temperature affect cyanobacterial bloom toxicity?
Toxic cyanobacterial blooms threaten freshwater quality, made worse by climate change and eutrophication. The toxicity of these blooms depends not only on cyanobacteria quantity but also on the presence potentially toxin-producing species and genotypes, and their varied toxin production. -
Climate change impacts on harmful algal blooms
Harmful cyanobacterial blooms produce toxins that are a major threat to water quality and human health. Blooms increase with eutrophication and are expected to be amplified by climate change. Yet, we lack a mechanistic understanding on the toxicity of blooms, and their response to the complex interplay of multiple global change factors. Bloom toxicity is determined by a combination of mechanisms acting at different ecological scales, ranging from cyanobacterial biomass accumulation in the ecosystem, to the dominance of toxic species in the community, contribution of toxic genotypes in the population, and the amounts of toxins in cells. -
Developing digital twins to help understand ecosystems
LTER-LIFE aims to study and predict how global change affects ecosystems. It is one of nine projects that have just won funding for setting up and improving large-scale research infrastructure. -
Digitale tweelingen gaan helpen ecosystemen beter te begrijpen
LTER-LIFE, met als hoofdaanvrager Marcel Visser (NIOO-KNAW), is een van de negen projecten die in totaal 140 miljoen euro ontvangen om grootschalige wetenschappelijke infrastructuur op te zetten of te verbeteren. -
Symposium Platform Blauwalgen 'Blauwalgen in Nederland: onderzoek en beheer’
Op 9 februari 2023 organiseert het Platform Blauwalgen het symposium: ‘Blauwalgen in Nederland: onderzoek en beheer’. Tijdens de bijeenkomst worden er onderzoeken gepresenteerd op het gebied van monitoring en mitigatie van overlast door blauwalgen. -
Highlights
A few highlights of the NIOO-KNAW building.