Path Catalog
正在从 AllPath API 加载 Path Catalog…
Path Catalog
正在从 AllPath API 加载 Path Catalog…
Path Catalog
列表数据实时取自 GET /api/v1/paths,仅包含存在已发布版本的 Path。
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共 7800 条 Path · 第 138 / 780 页
This graduate-level learning path equips policy and science communication professionals with the conceptual tools to analyze ethical controversies and public perception of agricultural biotechnology. It covers foundational bioethics, GMO science, risk communication, labeling debates, and responsible innovation frameworks, culminating in a comprehensive analysis project.
This advanced graduate-level path equips legal and business students with a comprehensive understanding of intellectual property rights in agricultural biotechnology. It covers foundational IP concepts, patent law specifics for biotech, plant variety protection (PBR), licensing strategies, and infringement analysis, culminating in strategic management of IP portfolios.
This advanced graduate-level path equips stress biologists with the knowledge to engineer crops for enhanced tolerance to drought, salinity, and heat. It integrates plant stress physiology, molecular mechanisms, and biotechnological strategies, emphasizing a systems approach.
This advanced graduate-level path equips crop protection researchers with the knowledge and skills to design, develop, and evaluate transgenic crops resistant to pests and diseases. It covers essential molecular biology, plant transformation, and key resistance strategies including Bt genes, virus resistance, fungal resistance, and RNAi, with a strong foundation in plant pathology.
This advanced graduate-level path equips systems biologists with the knowledge and skills to design synthetic genetic circuits and metabolic pathways in plant chassis. It covers foundational genetic engineering, plant transformation, genetic circuit design, biosensors, and metabolic engineering, culminating in a design project.
This learning path provides a systematic understanding of epigenetic mechanisms—DNA methylation, histone modifications, and non-coding RNAs—and their roles in creating heritable phenotypic variation (epialleles) relevant to plant breeding. It bridges molecular genetics fundamentals with advanced epigenomics and breeding applications, emphasizing the heritability and stability of epigenetic marks for crop improvement.
This path equips genome editors with advanced skills in precise editing technologies, focusing on base and prime editors. It covers underlying mechanisms, design principles, efficiency considerations, and applications, building from CRISPR fundamentals.
This advanced graduate path equips biotech researchers with the knowledge and skills to modify proteins for improved agricultural function. It covers foundational protein biochemistry, rational design via site-directed mutagenesis, directed evolution, and practical protein expression systems, culminating in a project that integrates these techniques.
This advanced graduate-level path equips analytical biochemists with the knowledge and skills to apply metabolomics in assessing crop quality using LC-MS and GC-MS. It covers experimental design, sample preparation, data processing, statistical analysis, and pathway mapping, culminating in the application of these techniques to evaluate crop quality attributes.
This advanced learning path equips biotech students with a deep understanding of CRISPR-Cas9 genome editing, from the molecular mechanisms of Cas9 and guide RNA to DNA repair pathways and practical design considerations. It emphasizes applications in agricultural biotechnology, including targeted mutagenesis for crop improvement.