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Predicting plant-soil feedbacks from plant traits
In nature, plants cannot grow without soil biota such as fungi and bacteria. Successful plants are able to harness positive, growth-promoting soil organisms while avoiding the negative effects of others. Which plant traits can predict these interactions, or the success of a plant? Researchers and plant breeders would like to know. In a paper in the Journal of Ecology of August 24, a team from the Netherlands Institute of Ecology (NIOO-KNAW), Wageningen University and the Universität Leipzig tested exactly this and found thick roots to be a leading trait. -
Predicting the impact of climate change on population size
How can we tell if climate change really affects the population dynamics of a species? "Changes to behaviour, weight or appearance don't always mean population numbers are de- or increasing." NIOO-researcher Martijn van de Pol presents a novel approach to answering the question in the June issue of Ecology Letters. -
A living, breathing building
As sustainable as possible, in as many respects as possible: that was the imperative when the Netherlands Institute of Ecology (NIOO-KNAW) commissioned a new building. And we have done it! -
Importance of biological clock can only be seen in the wild
The impact of biological clocks on nature and our lives is enormous. Jet lag, mating, bird migration: so much depends on the keeping of time in our bodies and those of other organisms. The latest issue of the world's oldest scientific journal is dedicated entirely to the topic. Featuring researchers from the Netherlands. -
Root chemistry of range-expanding plants may predict invasiveness risk
Most plants that expand their range within their own continent - e.g. under pressure from climate change - won't end up dominating other species. According to NIOO-researcher Rutger Wilschut, possible invasiveness may be predicted by root chemistry not found in native plants. -
PhD thesis defence Eline Ampt-Blom: plant-fungal interactions effects on disease risk belowground
Eline Ampt-Blom will defend her PhD thesis "Deciphering belowground plant-fungal interactions to understand the effects of biodiversity on disease risk" -
PhD defence Melanie Lindner: Bird reproduction in a warming world
Melanie Lindner will defend her PhD thesis titled "Avian seasonal reproduction in times of global warming: Insights from evolution, ecology and (epi-)genomics" -
NIOO Theme Climate change
We are in the midst of a climate crisis. Our climate system is undergoing a dramatic number of changes, many of which can be attributed to anthropogenic influences, including greenhouse gas emission-induced changes to global surface temperatures, precipitation, glacier mass loss, sea levels, salt intrusion, and ocean heat content. -
Light Pollution
Illumination of forest edges leads to a decrease in moth numbers and changes in the behaviour and success of bigger day as well as night-active animals in the long run. What did we find out at NIOO and what can we do with these results? -
Working together
There’s a lot that we can learn from nature! Performing and promoting research, together with policy makers, nature managers and businesses - and sharing the new knowledge it produces. That is NIOO's strength.