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Number of Opportunities Available: 1 Primary Supervisor - Professor Diane Saunders Every year fungal pathogens destroy 10–23% of all major calorie and commodity crops. Traditionally, to limit fungal
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adaptation is crucial for both natural plant populations and crops. Heritable trait variation fuels such adaptation. While heritable trait variation in plants can arise from genetic and epigenetic sources
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Plant-Microbe Interactions group and work within the NWO Vici project ResistoBiome: Predictive microbiome modelling for resilient and sustainable potato cropping systems. In this project, you will
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. Agricultural robots, drones, IoT sensors, and smart farming platforms are transforming crop production by improving efficiency, reducing labour, and supporting more sustainable practices. However, these
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, drought and crop failure there is now much greater pressure for legal and policy interventions. Many countries have framework laws that provide for adaptation but there are significant gaps in areas
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agricultural technologies increased crop productivity and rural incomes. At the same time, these changes reshaped economic, political, and social power in rural communities. They also exposed farmers to new
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of the position is to monitor the conditions of crop, pasture, and their growth environment to support agricultural decision making with advanced remote sensing and geospatial technologies. Responsibilities
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used for validation and replication. This PhD position is hosted by Wageningen University & Research, within the Laboratory of Entomology and the crop protection team of the Greenhouse Unit in Bleiswijk
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signalling pathways in plants, and may identify new potential targets that could be manipulated to improve stress tolerance in crop species. This PhD project will undertake a multi-disciplinary approach
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finance, with interest in farming systems. Animal or crop production systems, with proven interest in farm economics. Experience with quantitative methods, such as farm accounting, modelling, or statistical