Path Catalog
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Path Catalog
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共 7800 条 Path · 第 139 / 780 页
This advanced learning path equips molecular biologists with the knowledge to design and apply RNA interference (RNAi) for targeted gene suppression, focusing on agricultural applications such as pest and virus control. It covers the molecular mechanisms of siRNA and miRNA pathways, design principles for effective silencing, and strategies for delivering RNAi in agricultural settings.
This learning path provides a foundational understanding of the regulatory frameworks governing genetically modified organisms (GMOs), focusing on biosafety, risk assessment, labeling, and international guidelines. Designed for policy and lab professionals, it covers basic legal principles and their application in agricultural biotechnology.
This advanced learning path equips breeders with the knowledge and skills to use molecular markers for trait selection. It covers essential genetics and statistics, marker technologies (SSR, SNP), QTL mapping, and practical selection strategies, culminating in the design of a marker-assisted selection program.
This learning path systematically covers the principles, practice, and applications of particle bombardment (biolistics) for plant transformation. It begins with foundational plant cell biology and transformation concepts, progresses through the mechanics of the gene gun and microparticle preparation, and culminates in the analysis of transient and stable expression. The path is designed for biotech researchers seeking a comprehensive understanding of this key agricultural biotechnology tool.
This advanced learning path provides a comprehensive understanding of Agrobacterium-based gene transfer in plants, covering the Ti plasmid, virulence machinery, co-cultivation techniques, and selection strategies. Designed for molecular biologists, it integrates molecular cloning fundamentals with practical application in plant biotechnology.
This learning path equips lab technologists with the knowledge and skills to propagate plants using sterile culture techniques. It covers media preparation, explant handling, micropropagation stages, and hardening, emphasizing aseptic technique throughout.
This learning path equips diagnostic technicians with the knowledge and skills to apply PCR for detection and diagnostics in agricultural biotechnology. It covers fundamental molecular biology concepts, PCR theory, primer design, cycling parameters, gel visualization, and real-time PCR, with practical applications in pathogen detection and GMO testing.
This learning path guides biotech students through the essential steps of plasmid-based cloning: understanding vectors, using restriction enzymes, ligating DNA fragments, transforming host cells, and selecting successful clones. It builds a solid foundation in molecular biology techniques and their practical application in agricultural biotechnology.
This learning path introduces future breeders to the foundational genetic principles of segregation, independent assortment, and dihybrid crosses, and demonstrates how these principles are applied in plant breeding to develop improved varieties. Learners will progress from basic genetic concepts to practical breeding applications.
A beginner-friendly path for high school students entering an agricultural biotechnology lab. It covers essential safety protocols, basic equipment handling, and core techniques including pipetting, gel electrophoresis, and PCR basics. This path prepares learners for safe and effective work in a biotech lab setting.