Global Certificate in Plant-Microbe Interactions & Innovation
-- ViewingNowThe Global Certificate in Plant-Microbe Interactions & Innovation is a comprehensive course that explores the complex relationships between plants and microbes. This course is crucial in today's world where sustainable agriculture and food security are of paramount importance.
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⢠Introduction to Plant-Microbe Interactions: Overview of the complex relationships between plants and microbes, including beneficial, neutral, and pathogenic interactions.
⢠Microbial Communities in Soil and Rhizosphere: Examination of the diverse microbial communities present in soil and the plant rhizosphere, focusing on their composition, function, and interaction with plants.
⢠Plant Growth-Promoting Microbes: Exploration of microbes that enhance plant growth and health, such as nitrogen-fixing bacteria, phosphate-solubilizing bacteria, and mycorrhizal fungi.
⢠Plant-Microbe Symbioses: In-depth analysis of mutualistic symbiotic relationships between plants and microbes, including legume-rhizobia and actinorhizal symbioses.
⢠Plant Disease and Microbial Pathogens: Investigation of plant diseases caused by microbial pathogens, including bacterial, fungal, and viral infections. Emphasis on molecular mechanisms of pathogenesis and host defense responses.
⢠Molecular Mechanisms of Plant-Microbe Signaling: Overview of the intricate signaling pathways involved in plant-microbe interactions, including molecular dialogues, hormonal crosstalk, and gene regulation.
⢠Biotechnological Applications in Plant-Microbe Interactions: Examination of cutting-edge biotechnological strategies to enhance beneficial plant-microbe interactions, such as genetic engineering, microbial consortia, and bioinoculant development.
⢠Sustainable Agriculture and Plant-Microbe Innovation: Exploration of the role of plant-microbe interactions in promoting sustainable agriculture and mitigating the environmental impacts of modern farming practices.
⢠Emerging Topics in Plant-Microbe Research: Discussion of recent advances and future perspectives in
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