泥炭
碳汇
泥炭藓
环境科学
灌木
水槽(地理)
生物量(生态学)
二氧化碳
苔藓
气候变化
生态学
生物
地理
地图学
作者
Fan Lü,Boli Yi,Jun-Xiao Ma,Si‐Nan Wang,Yujie Feng,Kai Qin,Qiansi Tu,Zhao‐Jun Bu
出处
期刊:Plants
[Multidisciplinary Digital Publishing Institute]
日期:2025-08-02
卷期号:14 (15): 2387-2387
标识
DOI:10.3390/plants14152387
摘要
Peatlands store substantial amounts of carbon (C) in the form of peat, but are increasingly threatened by drought and shrub encroachment under climate warming. However, how peat decomposition and its temperature sensitivity (Q10) vary with depth and plant litter input under these stressors remains poorly understood. We incubated peat from two depths with different degrees of decomposition, either alone or incubated with Sphagnum divinum shoots or Betula ovalifolia leaves, under five temperature levels and two moisture conditions in growth chambers. We found that drought and Betula addition increased CO2 emissions in both peat layers, while Sphagnum affected only shallow peat. Deep peat alone or with Betula exhibited higher Q10 than pure shallow peat. Drought increased the Q10 of both depths' peat, but this effect disappeared with fresh litter addition. The CO2 production rate showed a positive but marginal correlation with microbial biomass carbon, and it displayed a rather similar responsive trend to warming as the microbial metabolism quotient. These results indicate that both deep and dry peat are more sensitive to warming, highlighting the importance of keeping deep peat buried and waterlogged to conserve existing carbon storage. Additionally, they further emphasize the necessity of Sphagnum moss recovery following vascular plant encroachment in restoring carbon sink function in peatlands.
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