Zoeken
Filteren op
Type
Labels
Dossiers
Thema's
Afdelingen
Taal
Active filters
61 zoekresultaten
Zoekresultaten
-
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? -
Adaptation of species
During recent centuries, human activities have dramatically changed the habitats of wild animals, plants and micro-organisms. Ecologists at NIOO are interested in how species can adapt to these rapid changes, for example through (micro)evolution. The ability of organisms to do this has a major impact on biodiversity and the functioning of ecosystems. -
Soorten passen zich aan
De afgelopen eeuwen hebben activiteiten van de mens de leefomgevingen van wilde dieren, planten en micro-organismen indringend veranderd. Ecologen van het NIOO zijn geïnteresseerd in hoe soorten zich aan deze snelle veranderingen kunnen aanpassen, bijvoorbeeld door (micro)evolutie. Het vermogen van organismen om dit te doen heeft een grote invloed op de biodiversiteit en het functioneren van ecosystemen. -
Dealing with bluegreen algae
Worldwide, excessive nutrient loads in lakes and reservoirs have led to the rapid increase of harmful cyanobacteria. Blooms of these algae block the use of surface water for drinking, irrigation and recreation. Climate change is expected to further increase the frequency, duration, and magnitude of cyanobacterial blooms. Aquatic ecologists from NIOO are busy gaining more detailed insights into cyanobacterial blooms across scales, in future climates and in respect to toxicity. -
Omgaan met blauwalgen
Wereldwijd heeft een grote aanvoer van voedingsstoffen in meren en andere wateren geleid tot overmatige groei van blauwalgen. De 'bloei' van deze algen kan ervoor zorgen dat oppervlaktewater niet meer te gebruiken is als drinkwater, voor irrigatie en recreatie. Klimaatverandering vergroot naar verwachting de frequentie, duur en intensiteit van de algenbloei. Aquatisch ecologen van het NIOO zijn op zoek naar meer kennis over de bloei van blauwalgen in het huidige en toekomstige klimaat, en hun giftigheid. -
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. -
NLSEB meetings on Evolutionary Biology
The 6th conference of the Netherlands Society for Evolutionary Biology (NLSEB) will take place on the 22nd (PhD/postdoc meeting) and 23rd (main meeting) of April 2024. -
Bijeenkomsten NLSEB over evolutionaire biologie
The 6th conference of the Netherlands Society for Evolutionary Biology (NLSEB) will take place on the 22nd (PhD/postdoc meeting) and 23rd (main meeting) of April 2024. -
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.