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 154 / 780 页
This learning path provides a comprehensive understanding of receptor-mediated signaling cascades in plants, covering receptors, kinases, second messengers, and transcription factors. It integrates cell biology and molecular biology perspectives to explain how extracellular signals are perceived and transduced to elicit cellular responses.
This advanced learning path systematically covers the biosynthesis, transport, and signaling of the five major plant hormones: auxin, gibberellin, cytokinin, abscisic acid, and ethylene. It integrates organic chemistry fundamentals and plant physiology to provide a comprehensive understanding of hormone metabolism and movement.
This learning path guides metabolism students through the sequential processes by which plants convert nitrate into ammonium and then incorporate it into amino acids. It covers the enzymatic steps of nitrate and nitrite reduction, the GS-GOGAT cycle, and the synthesis of key amino acids, with foundational biochemistry as a prerequisite.
This learning path explores how plants acquire mineral nutrients from the soil and maintain cellular ion homeostasis. It covers root anatomy, membrane transport proteins, ion channels and carriers, compartmentation, and plant responses to nutrient deficiency.
This learning path provides a systematic understanding of water transport in plants, focusing on the cohesion-tension theory, the causes and consequences of embolism, and the mechanisms of repair. It integrates fluid mechanics basics and plant physiology to build a comprehensive model of xylem transport.
This path systematically explains the pressure-flow hypothesis for phloem transport, covering phloem anatomy, sugar loading and unloading, osmotic gradients, and sink-source relationships. It is designed for plant physiologists seeking a structured understanding of transport physiology.
This learning path guides advanced high school students through the core processes of plant respiration, focusing on substrate oxidation, ATP yield, alternative pathways, and regulation. It builds from basic biochemistry to the unique features of plant mitochondria, enabling a comparative understanding of energy metabolism in plants.
This learning path guides biochemistry students through the foundational concepts of bioenergetics and photosynthesis, culminating in a detailed understanding of chemiosmotic coupling and ATP production via the CF1-CF0 complex. It covers the proton gradient, the structure and function of the thylakoid ATP synthase, and the process of photophosphorylation.
This learning path guides advanced high school biology students through the light-dependent reactions of photosynthesis, focusing on the electron transport chain in the thylakoid membrane. Starting from basic biochemistry and photosynthesis, it systematically covers Photosystem II, the cytochrome b6f complex, Photosystem I, ferredoxin, and NADP+ reduction, culminating in the production of ATP and NADPH.
This learning path introduces the fundamental concepts of enzymology and applies them to key enzymes in plant metabolism. Starting with basic chemistry and enzyme structure, you will progress through enzyme kinetics, cofactors, and inhibitors, culminating in a survey of essential plant metabolic enzymes and their regulation.