溶解有机碳
全球变暖
环境化学
碳纤维
有机质
环境科学
土壤水分
碳通量
氮气
总有机碳
气候变化
微生物种群生物学
碳循环
土壤有机质
土壤碳
生态学
化学
全球变化
氮气循环
高原(数学)
温室气体
生态系统
固碳
草原
生物地球化学
作者
Yi-Wen Cao,Ning Zong,Guodong Sun,Wenhui Shang,J. G. Lu,Xiuyu Liang,Yan Zheng,Alex Tat-Shing Chow,Jing Tian,Junjian Wang
标识
DOI:10.1021/acs.est.5c17811
摘要
Soils in alpine grasslands of the Qinghai-Tibet Plateau store vast carbon stocks that influence global climate, yet it is unclear how warming and nitrogen enrichment interactively regulate dissolved organic matter (DOM), the most readily degradable carbon pool. Using a 12-year field experiment, we investigated how these pressures interactively regulate DOM and microbial characteristics. Nitrogen addition substantially increased dissolved organic carbon (DOC), whereas warming exerted comparatively moderate effects. Their impacts on DOC accumulation were largely additive rather than synergistic, suggesting that resource availability constrains carbon responses under multiple global change drivers. In contrast, warming significantly amplified nitrogen-induced shifts in DOM quality, decreasing aromaticity, and increasing biolability. These changes were mediated by the expansion of copiotrophic taxa and enrichment of resource-acquisitive functional traits alongside shifts in soil chemical conditions. In turn, alterations in DOM quantity and quality were associated with shifts in microbial community structure and metabolic strategies, particularly under increased inputs of microbially derived labile substrates. Together, our findings indicate that warming intensifies nitrogen-driven acceleration of carbon turnover in alpine grasslands, highlighting the importance of climate-nutrient interactions in predicting future carbon-climate feedbacks.
科研通智能强力驱动
Strongly Powered by AbleSci AI