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。
共 7800 条 Path · 第 44 / 780 页
This learning path systematically introduces the core concepts of biological parts—promoters, ribosome binding sites, coding sequences, and terminators—and their assembly into functional devices. It covers the central dogma of molecular biology as a foundation, then details each part type, their quantitative characterization, and their integration into genetic circuits. Designed for synthetic biology students at an intermediate level.
A systematic learning path for university students in synthetic and molecular biology to design gene regulatory circuits. It covers foundational molecular biology, transcriptional and post-transcriptional regulation, feedback control, and practical design principles, culminating in a capstone design project.
This learning path guides students through the foundational concepts and practical skills needed to design genetic circuits. It covers molecular biology basics, genetic engineering tools, mathematical modeling, and the design of logic gates, sensors, oscillators, and switches. The path emphasizes a systematic approach, integrating theory with design principles.
A beginner-friendly learning path covering the fundamental concepts and techniques for assembling DNA fragments in synthetic biology. It starts with molecular biology basics and progresses through key assembly methods like BioBricks, Gibson Assembly, and cloning, culminating in practical application and troubleshooting.
This learning path provides a systematic introduction to molecular biology, focusing on the central dogma, gene expression, and regulation, which are essential for understanding and designing genetic circuits in synthetic biology. It builds from molecular basics to advanced concepts like operons and regulatory networks, preparing students for practical circuit design.
This learning path introduces engineering principles applied to biology, covering standardization, abstraction, modularity, and design. It starts with core biology and engineering concepts, then moves through foundational biological parts and design cycles, culminating in a design project. The path is designed for beginners in synthetic biology and engineering.
This learning path introduces high school students to the principles and scope of synthetic biology. It covers essential biological concepts, the engineering design cycle, foundational technologies, and real-world applications, providing a structured entry point into this interdisciplinary field.
This learning path guides graduate students through the process of producing a thesis in genetic engineering, covering advanced molecular techniques, experimental design, data analysis, and scientific writing. It is designed to build from foundational knowledge to the practical skills needed for original research and thesis completion.
This learning path guides genetic engineering students through the process of conducting an independent research project, from hypothesis formulation to final reporting. It covers essential molecular biology techniques, experimental design, data analysis, and scientific communication, culminating in a career-ready research skill set.
This advanced graduate-level learning path equips learners with the knowledge to apply genetic engineering to enhance food security. It covers molecular biology foundations, crop transformation techniques, nutritional enhancement, sustainability considerations, and the socio-economic and regulatory challenges, culminating in a systems-level understanding of how biotechnology can contribute to global food security.