泥炭
环境科学
土壤碳
北方的
碳纤维
气候变化
全球变暖潜力
全球变暖
碳循环
大气科学
温室气体
土壤水分
生态学
土壤科学
环境化学
生态系统
化学
生物
地质学
材料科学
复合数
复合材料
作者
Nicholas O. E. Ofiti,Michael W. Schmidt,Samuel Abiven,Paul J. Hanson,Colleen M. Iversen,Rachel Wilson,Joel E. Kostka,Guido L. B. Wiesenberg,Avni Malhotra
标识
DOI:10.1038/s41467-023-43410-z
摘要
Peatlands are an important carbon (C) reservoir storing one-third of global soil organic carbon (SOC), but little is known about the fate of these C stocks under climate change. Here, we examine the impact of warming and elevated atmospheric CO2 concentration (eCO2) on the molecular composition of SOC to infer SOC sources (microbe-, plant- and fire-derived) and stability in a boreal peatland. We show that while warming alone decreased plant- and microbe-derived SOC due to enhanced decomposition, warming combined with eCO2 increased plant-derived SOC compounds. We further observed increasing root-derived inputs (suberin) and declining leaf/needle-derived inputs (cutin) into SOC under warming and eCO2. The decline in SOC compounds with warming and gains from new root-derived C under eCO2, suggest that warming and eCO2 may shift peatland C budget towards pools with faster turnover. Together, our results indicate that climate change may increase inputs and enhance decomposition of SOC potentially destabilising C storage in peatlands.
科研通智能强力驱动
Strongly Powered by AbleSci AI