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Microbial Farming to increase plant productivity
Plant-growth promoting microbes (PGPM) are a viable alternative to traditional fertilizers for enhancing plant productivity and improving soil quality without environmental pollution. The use of PGPM in agriculture has been hampered by a lack of reproducible results and the difficulty of transferring this technology to the field. This inconsistent success primarily reflects competition or resistance of the original soil microbiome to inoculants, as well as the negative effects of management practices such as fertilization on plant interactions with the soil microbiome and the efficiency of ecosystem services delivered by PGPM. We were the first to circumvent this problem under field conditions by manipulating the soil microbiome to successfully obtain consistent, positive effects of inoculated microbes on plant productivity (Cipriano et al., 2016;https://doi.org/10.1093/femsec/fiw197). However, the influence of the indigenous soil microbiome on plants remains largely unknown. We propose to investigate this tripartite, PGPM-plant-soil microbiome interaction in plant quality and productivity using state-of-the-art ‘omics’ and bioinformatics approaches to investigate facilitation (positive interactions) and competition (negative interactions) by both microbes and PGPM within the plant realized niche following gradients of both soil diversity and nutrient availability. This research will facilitate the development of innovative methods for agricultural and horticultural starting material production using PGPM for sustainable crop production by combining techniques to reduce nutrient input and enhance the efficiency and long-lasting effects of PGPM. This research proposal will integrate approaches to obtain a fundamental understanding of these tripartite interactions in a smart microbiome engineered plant production system for sustainable high-quality crop production. -
Clever songbird's genome may hold key to evolution of learning
The great tit has revealed its genetic code, offering new insight into how species adapt to a changing planet. Initial findings suggest that epigenetics – what’s on rather than what’s in the gene – may have played a key role in the evolution of the ability to learn. And not just that of birds... -
'Excellent' rating for NIOO's Avian Migration Centre
WAGENINGEN - NIOO-KNAW's Centre for Avian Migration and Demography has ringed birds and studied their migration patterns for over a century. In its first-ever peer review, the Centre has been rated 'excellent'. -
Extreme weather has greater impact on nature than expected
An oystercatcher nest is washed away in a storm surge. Australian passerine birds die during a heatwave. A late frost in their breeding area kills off a group of American cliff swallows. Small tragedies that may seem unrelated, but point to the underlying long-term impact of extreme climatic events. In the special June issue of Philosophical Transactions of the Royal Society B, NIOO researchers launch a new approach to these 'extreme' studies. -
Micro-organisms will help African farmers
Sorghum is the fifth most important cereal in the world. In sub-Saharan Africa, many farmers rely on this grain for food and feed. But Striga, a parasitic weed, can have a devastating impact on crop yield. With an 8-million-dollar grant from the Bill & Melinda Gates Foundation, an international team will now explore the potential of soil microbes to offer crop protection. The Netherlands Institute of Ecology (NIOO-KNAW) is coordinating this 5-year project. -
Why nature restoration takes time: fungi grow 'relationships'
‘Relationships’ in the soil become stronger during the process of nature restoration. Although all major groups of soil life are already present in former agricultural soils, they are not really ‘connected’ at first. These connections need time to (literally) grow, and fungi are the star performers here. A European research team led by the Netherlands Institute of Ecology (NIOO-KNAW) has shown the complete network of soil life for the first time. This Wednesday, the results of the extensive study are published in Nature Communications. -
Wadden Sea report: breeding birds in the danger zone
ZEIST/WAGENINGEN/NIJMEGEN - Birds that breed in the Dutch Wadden Sea are facing serious problems, according to a new report that brings together all available data from the past two decades. The report was launched at the inaugural symposium of the new Centre for Avian Population Studies (CAPS). -
'It depends': soil organic matter doesn't automatically increase crop yield
More organic matter in the soil may be beneficial for the climate, but contrary to what's been assumed it doesn't automatically increase crop yield. The amount is not the only factor, concludes research by NIOO's Stijn van Gils: it also depends on the context. -
Frisian lapwings fan out across Europe in winter
Northern lapwings are easy to spot during the breeding season, with their noisy aerial acrobatics. But as research led by the Netherlands Institute of Ecology (NIOO-KNAW) shows, lapwings that breed virtually next to each other in spring may spend their winters thousands of kilometres apart. As a survival strategy, it's not enough to stop the species' ongoing decline. -
It takes more than two to tango: Microbial communities influence sex and reproduction in animals
The reproductive tracts of males and females contain whole communities of micro-organisms. These microbes can have considerable impact on (animal) fertility and reproduction, as shown by Melissah Rowe from the NIOO-KNAW.