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National Aeronautics and Space Administration (NASA) | Merritt Island, Florida | United States | about 7 hours ago
to develop resilient crops for bioregenerative life support systems and future exploration missions. The ideal participant brings prior knowledge of genomic selection and prediction techniques from applied
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highly motivated Postdoctoral Research Associate to contribute to research focused on cover crop improvement, agronomic performance, and plant responses to environmental stress. The successful candidate
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approaches in plant breeding, offers new opportunities to address this. One such challenge is to improve complex traits such as crop tolerance to dynamic environmental conditions in the current era of global
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imagery, and conduct APSIM simulations to address research questions related to crop physiology, plant breeding, nitrogen management, water quality, crop rotations, and predictive agriculture. The position
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pathogens Verticillium dahliae and Fusarium oxysporum are a primary constraint on production of high value specialty crops in California. Synthetic chemical soil fumigants can partially control these diseases
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 20 days ago
. Description: Overview The Earth’s terrestrial biosphere is a dynamic system where vegetation physiology, soil biogeochemistry, geomorphic evolution, and anthropogenic management intersect to drive global carbon
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African agriculture. It is based on the collaboration and synergy of several research programs targeting diverse disciplines of research in agriculture, such as Microbiome, Omics, Plant Physiology and Crop
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agriculture, such as Microbiome, Omics, Plant Physiology and Crop Improvement, Plant Pathology, By-products Valorization, Soil Sciences, Agronomy, and Sustainable Farming… Job / Project description: 1 year
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such challenge is to improve complex traits such as crop tolerance to dynamic environmental conditions in the current era of global climate change and how to best incorporate this in plant breeding strategies
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vegetative cells can tolerate severe desiccation and subsequently resume normal growth following rehydration. How a differentiated cell can undergo such an extreme physiological transition while preserving