非生物成分
生物
化学生态学
食草动物
植物化学
生态学
化学防御
亚热带
植物
代谢组学
非生物胁迫
热带和亚热带湿润阔叶林
植物生态学
植物生理学
陆生植物
生态系统
山地生态
生物逆境
生物成分
亚高山森林
化学成分
木本植物
β多样性
生长季节
营养物
陆地生态系统
生物多样性
分歧(语言学)
高山植物
无脊椎动物
作者
Mengesha Asefa,Lu Sun,Yazhou Zhang,Susan R. Whitehead,Guorui Xu,Xiaoyang Song,Min Cao,Yunyun He,Su Yao,Jie Yang,Nathan G. Swenson
摘要
Plants produce diverse metabolites to defend against biotic and abiotic stresses. However, quantification of plant chemical defenses along environmental gradients has largely focused on aboveground organs, leaving belowground patterns poorly understood. To address how leaf and root defense chemistry shifts with changing biotic and abiotic conditions, we compared untargeted metabolomics of 183 species across elevational gradients spanning tropical, subtropical, and subalpine forests. Leaves and roots showed distinct chemical compositions across elevations, with phytochemical diversity declining from tropical to subalpine forests, corresponding with shifts in herbivore pressure and soil conditions. These patterns suggest that local variation in biotic and abiotic pressures across elevations may be associated with gradients in phytochemical diversity. We also uncovered contrasting patterns of chemical strategies between organs. Leaf chemistry shifts from polar, fast-turnover, low-cost metabolites in tropical forests to less polar, aromatic, and energetically costly metabolites in subtropical and subalpine forests, whereas roots display contrasting metabolic adjustments. Our results suggest that elevation filters species by their distinct metabolomic profiles, with organ-specific and context-dependent chemical investment, highlighting the importance of integrating above- and belowground organs to understand plant chemical responses across gradients. We reveal that organs of the same tree tell distinct chemical stories, illuminating the chemical life of trees.
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