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 159 / 780 页
This learning path guides students with a basic genetics background through the principles of Mendelian inheritance and their application to plant traits. Starting with essential terminology and Mendel's laws, it progresses through monohybrid and dihybrid crosses, Punnett squares, test crosses, and statistical analysis, culminating in practical plant breeding applications.
This learning path introduces high school biology enthusiasts to the fascinating ways plants sense and respond to their environment. Starting with the basics of plant hormones and cellular signaling, it covers the major tropisms (phototropism, gravitropism, thigmotropism) and nastic movements, explaining the underlying mechanisms and their adaptive significance.
This learning path guides undergraduate biology majors through the molecular and hormonal mechanisms that orchestrate plant development, from embryogenesis to organ formation. It covers key genetic model systems, signaling pathways, and the roles of major hormones, emphasizing how they integrate to shape the plant body.
This learning path introduces the roles of three key plant hormones—cytokinins, abscisic acid, and ethylene—in regulating cell division, stress responses, fruit ripening, and senescence. It starts with basic plant hormone concepts, then explores each hormone's functions and interconnections, culminating in an integrated understanding of hormonal regulation.
This learning path introduces the plant hormones auxin and gibberellin, focusing on their roles in growth and development. It covers auxin transport and its role in phototropism, and gibberellin effects on stem elongation, with practical applications.
This learning path introduces high school plant science students to the essential nutrients required for plant growth, distinguishing macronutrients from micronutrients, and explaining their physiological roles. It covers deficiency symptoms and the basics of soil-plant interactions, with a prerequisite module on basic chemistry to ensure foundational understanding.
This learning path guides plant science students through the fundamental processes of water movement in plants, from soil to atmosphere. It begins with the basic physics of diffusion and osmosis, progresses through water potential and the pathways of water transport, and culminates in the mechanisms of transpiration and stomatal regulation. The path emphasizes the cohesion-tension theory and the role of stomata in balancing water loss with gas exchange.
This learning path guides advanced high school biology students through the core processes of plant metabolism, starting with basic biochemistry and photosynthesis, then detailing cellular respiration (glycolysis, Krebs cycle, oxidative phosphorylation) and photorespiration, and finally comparing these pathways to understand energy balance in plants.
This learning path introduces high school students to the Calvin cycle, focusing on carbon fixation, the role of RuBisCO, and the synthesis of sugars. It begins with essential prerequisites about photosynthesis and light reactions, then progresses through the three phases of the Calvin cycle, culminating in the regeneration of RuBP and the production of G3P.
This path guides high school biology students from basic chemistry and plant cell structure through the light-dependent reactions of photosynthesis. It covers chlorophyll, photosystems, the electron transport chain, and the production of ATP and NADPH, ensuring a solid understanding of how light energy is converted into chemical energy.