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Path Category
Guided learning journeys that build knowledge step by step.
category · Learning · slug · learning · 7800 条 Path
共 7800 条 Path · 第 48 / 780 页
This learning path systematically covers the core concepts of epigenetics, focusing on DNA methylation, histone modification, and reprogramming. It builds from fundamental genetic principles to advanced applications in biotechnology, ensuring a comprehensive understanding for university students.
This learning path guides students through the principles and practices of directed evolution, from foundational molecular biology to advanced library design and screening strategies. It covers mutagenesis methods, selection and screening techniques, and real-world applications in protein engineering.
This learning path equips students with the knowledge to design and implement metabolic engineering strategies for genetic modification of organisms. It covers foundational biochemistry, genetic tools, pathway analysis, and engineering principles, culminating in the ability to analyze and optimize metabolic pathways for production.
This advanced learning path guides genetic engineering and synthetic biology students through the principles and practices of designing synthetic gene circuits. Starting with foundational molecular biology and genetic parts, it progresses through mathematical modeling, logic gate design, sensor integration, and practical applications, culminating in a comprehensive understanding of circuit design and implementation.
This learning path provides a comprehensive understanding of RNA interference (RNAi) technology, covering its molecular mechanisms, design principles, delivery methods, and applications in biotechnology and medicine. It is designed for genetic engineering and molecular biology students seeking systematic knowledge from fundamentals to advanced applications.
A comprehensive learning path covering the scientific foundations, vector technologies, delivery strategies, clinical applications, and ethical considerations of gene therapy. Designed for genetic engineering and medicine students to systematically understand and evaluate gene therapy approaches.
A comprehensive learning path covering the biology, mechanisms, and applications of CRISPR-Cas systems, from foundational concepts to advanced topics like Cas12 and therapeutic applications. Designed for advanced university students in genetic engineering and genetics.
A structured learning path covering the major genome editing technologies—ZFN, TALEN, and CRISPR—along with their underlying mechanisms, delivery methods, and applications. Designed for university students in genetic engineering and biology, the path progresses from foundational DNA repair concepts to advanced applications and ethical considerations.
A structured learning path covering the principles and methods of creating transgenic organisms, including essential molecular biology prerequisites, gene transfer techniques, and applications in animals, plants, and microorganisms.
This learning path guides genetic engineering and biotechnology students through the fundamental principles of gene expression, comparing prokaryotic and eukaryotic systems, and exploring vectors and optimization strategies. It builds from molecular biology basics to advanced expression system design.