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 151 / 780 页
This graduate-level learning path equips plant breeders with the physiological principles and tools needed to select traits that enhance resource-use efficiency and yield potential. It covers foundational concepts in crop physiology and breeding, then dives into harvest index, radiation use efficiency, and modern phenotyping approaches, culminating in a framework for integrating physiology into breeding decisions.
This advanced graduate-level path equips oilseed breeders with a mechanistic understanding of oil biosynthesis and yield physiology. It covers fatty acid synthesis, triacylglycerol assembly, source-sink dynamics, seed filling, and oil quality, linking molecular pathways to agronomic traits for informed breeding decisions.
This learning path focuses on the physiological principles underlying the production of beverage crops such as coffee, tea, and cacao, with emphasis on secondary metabolites, pruning, shading, and harvest timing. Designed for agronomists in tropical regions, it integrates plant physiology with practical crop management to enhance yield and quality.
This learning path equips animal nutritionists with a physiological understanding of forage crops to optimize both quality and yield. It covers key concepts from plant growth stages to fiber accumulation and regrowth mechanisms, linking physiological processes to management decisions.
This learning path equips food technologists with the physiological knowledge needed to manage ripening and senescence in stored fruit. It covers the respiratory climacteric, chilling injury, and controlled atmosphere storage, emphasizing the underlying mechanisms and practical applications.
This learning path provides seed technologists with a focused understanding of the physiological processes underlying seed germination, from water uptake through reserve mobilization and dormancy break. It covers essential prerequisites in seed structure and plant biochemistry, then explores each phase of germination in a logical sequence, emphasizing practical implications for seed testing and handling.
This learning path equips horticulture professionals with a comprehensive understanding of plant growth regulators (PGRs), from fundamental hormone physiology to practical application techniques. It covers auxins, gibberellins, cytokinins, and ethylene, emphasizing their roles in plant development and how to apply this knowledge for growth and development control in horticultural settings.
This path equips agricultural engineers to schedule irrigation using plant water status indicators. It covers soil-plant-atmosphere water relations, water potential measurement, evapotranspiration, soil moisture thresholds, and deficit irrigation strategies, culminating in the design of a practical irrigation schedule.
This learning path equips agronomists with the knowledge to align fertilizer applications with crop physiological needs. It covers essential plant mineral nutrition concepts, critical nutrient levels, uptake dynamics, and tissue testing methods, culminating in practical strategies for demand-based nutrient management.
This learning path bridges plant physiology and ecosystem ecology to explain how physiological efficiency determines carbon storage. Designed for climate policy experts, it covers photosynthesis, respiration, allocation, and soil carbon dynamics, culminating in an integrated understanding of net ecosystem carbon balance.