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Biodiversiteit op het NIOO-terrein
Bij het NIOO streven we ernaar om de biodiversiteit op de groene daken en het onderzoeksterrein te stimuleren. Ter ere van de 68e verjaardag van het instituut in 2022 starten NIOO-onderzoekers met een BioBlitz, waarbij NIOO-ers in periodes van een jaar soorten zoeken op het eigen terrein. -
How genetic research contributes to effective lion conservation
Human measures to protect lions have an impact on the genetic health of populations. Dutch and Kenyan scientists discovered this by analysing the DNA of 171 Kenyan lions. "By fencing reserves, for example, the chance of inbreeding increases." With the knowledge and tools from the research, management authorities in Kenya can better protect their valuable wildlife in the future.
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Hoe genetisch onderzoek bijdraagt aan effectieve bescherming van de leeuw
Menselijke maatregelen om leeuwen te beschermen hebben impact op de genetische gezondheid van de populaties. Dat ontdekten Nederlandse en Keniaanse wetenschappers door het DNA van 171 Keniaanse leeuwen te analyseren. "Door bijvoorbeeld reservaten te omheinen, neemt de kans op inteelt toe." Met de kennis en tools uit het onderzoek kunnen beheerinstanties in Kenia hun waardevolle wildlife in de toekomst nog beter beschermen. -
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? -
Biodiversity on the NIOO terrain
At NIOO we strive to stimulate the biodiversity on the green roofs and the terrain. On the occasion of NIOO’s 68th birthday, colleagues launched a BioBlitz: a period of biological surveying to record the living species within a designated area. -
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. -
The Galápagos Microbiome Project: voyage of discovery to an invisible world
How unique and diverse is the invisible life of the Galápagos Islands? That is the key question to which a team of international researchers, led by the Netherlands Institute of Ecology (NIOO-KNAW), is seeking answers. This year, they went on an expedition to the iconic islands to study the microbial life there. Insights from their research can contribute to the conservation of indigenous plant species and, in particular, Scalesia: the giant daisy.