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 155 / 780 页
This learning path guides plant science students from basic plant anatomy through the cellular mechanisms of stomatal opening and closing, including turgor-driven changes and ABA signaling, to an integrated understanding of gas exchange regulation.
This learning path introduces the mechanisms by which ions and molecules move across plant cell membranes, from simple diffusion to active transport via pumps, symporters, and antiporters. It builds foundational cell biology knowledge and applies it to plant physiology contexts.
This learning path guides beginning plant physiology students through the essential concepts of osmosis and water potential. Starting with basic chemistry and cell structure, it builds up to the quantitative relationships between solute potential, pressure potential, and water potential, and their application to plant water relations.
This learning path introduces high school students to the fundamental concepts of plant physiology, covering key plant functions, growth, development, and responses to the environment. It builds from basic biology to specialized topics, ensuring a solid foundation for further study in plant science.
A comprehensive learning path for aspiring plant researchers to master the full cycle of scientific inquiry: from formulating hypotheses and designing rigorous experiments, through data analysis and interpretation, to effective scientific communication. Emphasizes reproducibility, ethics, and critical evaluation of literature, integrating graduate-level plant biology knowledge throughout.
A comprehensive learning path for graduate-level plant researchers covering the full research cycle: from formulating hypotheses and designing rigorous experiments, through data analysis and scientific writing, to ethical conduct and reproducible research. The path integrates plant biology domain knowledge with research methodology, emphasizing critical thinking and communication skills.
This path equips nanotechnology researchers with the knowledge to apply nanomaterials for targeted pesticide delivery and biosensing in plants. It starts with fundamental concepts in nanotechnology, progresses through plant biology and nanoparticle-plant interactions, and culminates in the design of nanocarriers and nanosensors for agricultural applications.
This learning path explores how plants respond to microgravity and extraterrestrial conditions, covering basic plant physiology, stress responses, closed-loop life support systems, and food production for space missions. It is designed for university-level learners with an interest in space science, progressing from foundational concepts to applied astrobotany.
This advanced learning path equips microbial ecologists with the knowledge to manipulate rhizosphere microbial communities for improved plant health. It covers foundational concepts in plant-microbe interactions, the structure and function of rhizosphere microbiomes, and engineering strategies, with a focus on ecological understanding and practical applications.
This advanced learning path equips pharmaceutical biotechnologists with the knowledge and skills to critically evaluate plants as production platforms for recombinant proteins. It covers the core principles of molecular farming, transient and stable expression systems, downstream processing, and regulatory/quality considerations, culminating in a comparative evaluation framework.