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Guided learning journeys that build knowledge step by step.
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7817 Paths · page 570 / 782
A structured learning path covering essential microbiology lab skills, from safety and aseptic technique to media preparation, culturing, streaking, staining, and microscopy. Designed for university students seeking practical career skills.
This learning path explores the bidirectional relationship between climate change and microbial communities, focusing on carbon and methane cycles, permafrost thaw, and microbial feedback mechanisms. Designed for ecology and environmental biology students at an intermediate level, it builds from basic ecological principles to advanced climate-microbe interactions.
This learning path equips environmental science students with the knowledge to understand and apply microbial processes for cleaning up polluted environments. It covers foundational microbiology, key biodegradation mechanisms, and specific applications for oil spills, heavy metals, and pesticides, culminating in practical bioremediation strategies.
This learning path equips public health students with foundational microbiology knowledge and its application to epidemiology, disease surveillance, outbreak investigation, vaccination, and hygiene. It covers essential concepts from microbial biology to public health interventions, emphasizing the role of microorganisms in population health.
This learning path explores the diverse roles of microorganisms in marine ecosystems, from primary production to biogeochemical cycling. It covers microbial loops, viral impacts, deep-sea microbial life, and the interplay between microbes and global nutrient cycles, providing a comprehensive understanding of marine microbial ecology.
This advanced graduate-level path explores the spectrum of interactions between microbes and plants, from beneficial symbioses like rhizobia and mycorrhizae to pathogenic relationships and biocontrol strategies. It integrates plant biology, microbiology, and molecular plant-microbe interactions to provide a comprehensive understanding of the phytobiome.
This advanced graduate-level path covers the molecular mechanisms of quorum sensing, the stages of biofilm formation, structural and functional aspects of biofilms, their role in chronic infections, and industrial applications. It builds from foundational microbiology to cutting-edge research topics, emphasizing the transition from planktonic to multicellular community behavior.
This advanced learning path equips public health and microbiology students with a comprehensive understanding of how infectious diseases emerge and how they can be controlled. It covers foundational microbiology, host-pathogen interactions, epidemiological principles, zoonotic transmission, epidemic dynamics, case studies of major outbreaks, and culminates in strategies for pandemic preparedness and response.
This advanced graduate-level path explores the molecular interplay between hosts and pathogens, focusing on immune evasion, pathogen recognition, inflammation, cell death, and chronic infections. It builds from basic immunology to a systems-level understanding of host-pathogen co-evolution.
This advanced graduate-level path guides bioengineering students through the principles and practices of microbial synthetic biology. It covers foundational microbial genetics, the design and construction of gene circuits, metabolic engineering strategies, biosensor development, synthetic genomics, and industrial applications, culminating in a capstone project.