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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. -
Interactive lunch seminar: code standardisation and code peer review
Interested in learning more about code standardisation and code peer review? Join our interactive OSC-W lunch seminar Bring your lunch and laptop! -
Galápagos (4): the expedition film
An international research team led by the Netherlands Institute of Ecology (NIOO-KNAW), the University of San Francisco de Quito (USFQ) and the Galápagos Science Centre (GSC) is to search for invisible life on the Galápagos Islands. The diversity of bacteria and other microscopic organisms may not be evident to the naked eye, but it is essential to nature. The research team will uncover the yet unknown microbial world that Darwin could not see. Specific focus is given to microorganisms associated with the islands' giant daisies (Scalesia): unique endemic plants that are currently threatened by extinction. -
Inaugural lecture by Dedmer van de Waal
Op donderdag 6 juli houdt Dedmer van de Waal zijn oratie als bijzonder hoogleraar Aquatische Functionele Ecologie aan de Universiteit van Amsterdam. -
Follow-up funding for microbial fight against parasitic weed in Africa
Can micro-organisms in the soil help the fight against parasitic weeds in Africa? That question launched Promise six years ago. After promising initial results, the Bill & Melinda Gates Foundation has now awarded follow-up funding to the project. -
Beneath your feet, soil microbes are getting fat
Microbes, like humans, can eat 'junk food' and grow fat. This even happens when you might not expect it, according to NIOO researcher Kyle Mason-Jones -
Soil has no borders, and neither should soil policy
Zonder gezonde, biodiverse bodem geen gezonde samenleving. Maar hoe vertaal je dat in goed beleid? -
Discovering methane eating mycobacterium
Join the Pint of Science lecture where Paul Bodelier and Chrats Melkonian tell us all about their recent discovery of Mycobacterium (a type of immobile, rod-shaped bacteria) that live on eating methane. Hear what we can learn from these microbes and how we can use that to tackle the issues facing methane in our atmosphere today. -
New greenhouse gas-eating bacteria found in highly acidic sulphur cave
A team of ecologists and microbiologists that includes NIOO's Paul Bodelier has identified a unique organism in samples from a Romanian cave nicknamed 'Stinky Mountain'. The novel bacteria can grow on methane, an important greenhouse gas that contributes to global warming. -
Research waste in ecology: urgent call for action
Only about 11 to 18 percent of ecological research reaches its full informative potential. Ignoring this problem is costly. The responsibility to solve it lies with funders, publishers, research institutions as well as with the researchers themselves.