Path Catalog
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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 49 / 780 页
A systematic learning path covering the principles, techniques, and applications of DNA sequencing, from foundational molecular biology to Sanger sequencing, next-generation sequencing technologies, and data analysis.
A comprehensive learning path covering the fundamental principles of Polymerase Chain Reaction (PCR), its key variants (RT-PCR, qPCR), practical applications, and optimization strategies. Designed for genetic engineering and biology students at an intermediate university level.
A systematic learning path for genetic engineering students covering the core techniques of gene cloning, from the principles of recombinant DNA through vector design, library construction, screening, and expression analysis.
This learning path introduces the core concepts and techniques of recombinant DNA technology, focusing on restriction enzymes, ligation, cloning, and vectors. It builds from fundamental molecular biology knowledge through practical cloning workflows, culminating in applications and safety considerations. Designed for university students in genetic engineering and biotechnology.
A systematic path covering the core molecular biology concepts needed for genetic engineering, from cell biology and DNA structure through replication, transcription, translation, and gene regulation. Each node builds on the previous to establish a solid foundation for understanding and manipulating genetic systems.
This learning path introduces the core concepts of genetics needed for genetic engineering, starting from basic cell biology and DNA structure, through Mendelian inheritance, gene structure, and mutations. It provides a systematic foundation for understanding how genes are inherited, expressed, and altered.
A beginner-friendly introduction to genetic engineering, covering essential biology and genetics prerequisites, core DNA manipulation techniques, gene cloning, vectors, and real-world applications. Designed for high school students new to the field.
This learning path guides graduate students through the process of producing a thesis in biotechnology, from research design to data analysis and final writing. It emphasizes the integration of scientific rigor, data skills, and academic writing.
This path guides biotechnology students through designing and executing an independent research project, from hypothesis formulation to final reporting. It covers experimental design, data collection and analysis, and professional communication, preparing learners for a career in biotechnology research.
This advanced graduate learning path equips learners to apply biotechnology toward sustainable development goals. It covers foundational molecular biology and genetic engineering, advanced applications in food security, health, and environmental sustainability, and integrates development studies and bioethics for responsible innovation. The path emphasizes critical evaluation of biotechnological solutions in real-world development contexts.