Path Category
Loading Path Category from the AllPath API…
Path Category
Loading Path Category from the AllPath API…
Path Category
Guided learning journeys that build knowledge step by step.
category · Learning · slug · learning · 7817 Paths
7817 Paths · page 571 / 782
This path guides graduate students in microbial evolution through the concepts and methods of microbial phylogenetics and taxonomy. It covers molecular markers such as 16S rRNA and MLST, whole-genome phylogenies, and the integration of these approaches into modern microbial species definitions. The path emphasizes practical bioinformatics skills for constructing and interpreting phylogenetic trees.
A comprehensive graduate-level learning path covering the molecular biology of viruses, from virion structure and classification through replication strategies, host interactions, oncogenesis, and antiviral strategies. Designed for virology students seeking systematic depth, it integrates genetics, immunology, and therapeutic applications.
This advanced graduate-level path guides learners through the principles and process of antimicrobial drug discovery. It covers target identification, screening strategies, natural product exploration, resistance mechanisms, and development considerations, integrating basic pharmacology and microbiology knowledge.
A graduate-level learning path that systematically explores how bacteria cause disease at the molecular level. It covers essential bacteriology, host-microbe interactions, virulence factors, secretion systems, toxins, biofilms, and immune evasion, building from foundational concepts to advanced mechanisms.
This advanced graduate-level path guides systems biology students through the foundational microbiology needed to study microbial communities at the systems level, covering core concepts, interactions, modeling, and analysis approaches. It progresses from basic microbiology to advanced modeling and omics integration, emphasizing a systems perspective.
This graduate-level learning path explores the human microbiome's role in health and disease, from foundational microbiology to advanced therapeutic applications. It covers core concepts like microbial ecology and dysbiosis, then examines specific disease associations and emerging microbiome-based therapies. Designed for microbiology and biomedical students, the path integrates knowledge across disciplines to prepare learners for research or clinical applications.
This path equips microbiology and bioinformatics students with the skills to apply whole-genome sequencing and analysis to microorganisms. It covers the complete workflow from sequencing technologies and quality control through assembly, annotation, and comparative genomics, including pangenome analysis. The focus is on practical, career-oriented competencies in bacterial genomics.
This learning path equips biotechnology students with the knowledge to understand and evaluate the industrial use of microorganisms. It covers fundamental microbiology, fermentation technology, and specific applications in producing antibiotics, enzymes, bioplastics, and biofuels, culminating in an integrated view of industrial bioprocesses.
This learning path equips food science graduate students with a deep understanding of how microorganisms drive food fermentation, cause spoilage, and pose safety risks. It covers essential microbiology foundations, beneficial and harmful microbes, preservation techniques, and regulatory frameworks, culminating in a capstone project applying this knowledge to real-world scenarios.
This learning path introduces the fundamental concepts of environmental microbiology, focusing on the roles of microorganisms in biogeochemical cycles, microbial ecology, bioremediation, and extremophiles. It builds from basic microbiology and ecology to advanced applications, providing a systematic understanding of how microbes drive environmental processes.