生物
营养物
适应(眼睛)
碳水化合物
生态学
碳水化合物代谢
机制(生物学)
植物
极端环境
新陈代谢
藻类
持久性(不连续性)
光合作用
联动装置(软件)
植物组织
细胞代谢
贮藏蛋白
生理适应
作者
Jan Binter,Jiří Doležal
摘要
These coordinated anatomical and physiological shifts indicate a physiology-to-anatomy linkage in which elevation-related accumulation of mobile reserves and nutrients expands living storage cells, enhances cryoprotection by lowering cellular osmotic potential, limits ice propagation, and buffers metabolism against intermittent carbon and nutrient acquisition. By connecting cellular storage pools to tissue architecture across more than three hundred Himalayan species, this study reveals a widespread yet underexplored mechanism of alpine adaptation and provides a framework for understanding how storage physiology shapes plant persistence in cold, resource-limited ecosystems.
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