Nitrogen supply differentially affects litter decomposition rates and nitrogen dynamics of sub-arctic bog species

被引:0
作者
R. Aerts
R. S. P. van Logtestijn
P. S. Karlsson
机构
[1] Vrije Universiteit,Institute of Ecological Science, Department of Systems Ecology
[2] The Royal Swedish Academy of Sciences,Abisko Scientific Research Station
[3] EBC,Department of Plant Ecology
[4] Uppsala University,undefined
来源
Oecologia | 2006年 / 146卷
关键词
Carbon storage; Global warming; Litter chemistry; Nitrogen cycling; Peatland;
D O I
暂无
中图分类号
学科分类号
摘要
High-latitude peatlands are important soil carbon sinks. In these ecosystems, the mineralization of carbon and nitrogen are constrained by low temperatures and low nutrient concentrations in plant litter and soil organic matter. Global warming is predicted to increase soil N availability for plants at high-latitude sites. We applied N fertilizer as an experimental analogue for this increase. In a three-year field experiment we studied N fertilization effects on leaf litter decomposition and N dynamics of the four dominant plant species (comprising >75% of total aboveground biomass) in a sub-arctic bog in northern Sweden. The species were Empetrum nigrum (evergreen shrub), Eriophorum vaginatum (graminoid), Betula nana (deciduous shrub) and Rubus chamaemorus (perennial forb). In the controls, litter mass loss rates increased in the order: Empetrum < Eriophorum < Betula < Rubus. Increased N availability had variable, species-specific effects: litter mass loss rates (expressed per unit litter mass) increased in Empetrum, did not change in Eriophorum and Betula and decreased in Rubus. In the leaf litter from the controls, we measured no or only slight net N mineralization even after three years. In the N-fertilized treatments we found strong net N immobilization, especially in Eriophorum and Betula. This suggests that, probably owing to substantial chemical and/or microbial immobilization, additional N supply does not increase the rate of N cycling for at least the first three years.
引用
收藏
页码:652 / 658
页数:6
相关论文
共 61 条
[21]  
Callaghan TV(1998)A meta-analysis of the response of soil respiration, net nitrogen mineralization, and aboveground plant growth to experimental ecosystem warming Biogeochemistry 42 221-234
[22]  
Köchy M(2001)The role of balsam poplar secondary chemicals in controlling soil nutrient dynamics through succession in the Alaskan taiga Ecol Appl 11 1206-1223
[23]  
Wilson SD(1993)Control of litter decomposition in a subalpine meadow-sagebrush steppe ecotone under climate change Biogeochemistry 20 45-62
[24]  
Kögel-Knabner I(1994)Mass loss and nitrogen dynamics in decomposing acid forest litter in the Netherlands at increased nitrogen deposition Ecology 75 418-429
[25]  
Kraus TEC(undefined)Litter decomposition on the Mauna Loa environmental matrix, Hawaii: patterns, mechanisms, and models undefined undefined undefined-undefined
[26]  
Dahlgren RA(undefined)undefined undefined undefined undefined-undefined
[27]  
Zasoski RJ(undefined)undefined undefined undefined undefined-undefined
[28]  
Kraus TEC(undefined)undefined undefined undefined undefined-undefined
[29]  
Zasoski RJ(undefined)undefined undefined undefined undefined-undefined
[30]  
Dahlgren RA(undefined)undefined undefined undefined undefined-undefined