环境科学
草原
温带气候
生态系统
干旱
土壤碳
生态学
营养水平
优势(遗传学)
固碳
大气科学
碳循环
碳纤维
陆地生态系统
土壤水分
食草动物
农学
碳通量
生物量(生态学)
能量平衡
焊剂(冶金)
农林复合经营
生长季节
食物网
全球变化
作者
Bingbing Wan,Andrew D. Barnes,Malte Jochum,Xiaoyun Chen,Kara Allen,Junneng Yao,Nianpeng He,Feng Hu,Manqiang Liu
标识
DOI:10.1073/pnas.2534463123
摘要
Increasing aridity is predicted to alter the structure and functioning of soil food webs, yet its impacts on grassland food-web energetics and the resulting consequences for soil carbon sequestration remain poorly understood. Here, we quantified energy fluxes in soil food webs along a natural aridity gradient using data from 240 observations across 30 grassland ecosystems in the eastern Eurasian Steppe, spanning temperate (Loess and Inner Mongolian Plateaus) and alpine (Tibetan Plateau) regions. We found that increasing aridity decreases total energy flux through whole food webs across all study regions, largely driven by species losses and weakened trophic interactions. Energy flux to herbivory-based "green" channels declined more sharply than microbivory-based "brown" channels with increasing aridity, resulting in greater dominance of brown energy channels under more arid conditions across temperate grasslands. This broad-scale "browning" of soil food webs aligns with declining soil organic carbon (SOC) storage in temperate grasslands, suggesting that carbon loss through decomposition outpaces plant-derived carbon inputs under increasing aridity. In contrast, alpine grasslands showed increased SOC when the energy flux ratio of herbivory to microbivory was below the threshold of ~1, likely because lower temperatures constrain microbe-based decomposition and energy transfer to microbivory channels under more arid conditions. Understanding the context-dependent metabolic processes that underlie energy reallocation across soil food webs can augment modeling efforts to predict change to Earth's carbon cycle.
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