globalchange  > 气候减缓与适应
DOI: 10.1016/j.geoderma.2019.02.017
WOS记录号: WOS:000463304300002
论文题名:
Responses of soil organic carbon decomposition to warming depend on the natural warming gradient
作者: Xu, Wenfang1,2; Yuan, Wenping1,3,4; Cui, Lilun1,2; Ma, Minna3; Zhang, Fenguo5
通讯作者: Yuan, Wenping
刊名: GEODERMA
ISSN: 0016-7061
EISSN: 1872-6259
出版年: 2019
卷: 343, 页码:10-18
语种: 英语
英文关键词: Climate warming ; CO2 emission rate ; Microbial biomass carbon ; Incubation ; Soil organic carbon decomposition
WOS关键词: MICROBIAL BIOMASS ; TEMPERATURE SENSITIVITY ; MATTER DECOMPOSITION ; CLIMATE-CHANGE ; CYCLE FEEDBACK ; TURNOVER TIMES ; RESPIRATION ; NITROGEN ; COMMUNITY ; FOREST
WOS学科分类: Soil Science
WOS研究方向: Agriculture
英文摘要:

Inconsistent responses of soil organic carbon (SOC) decomposition to climate warming have been observed in field experiments. Responses vary with the duration of experimental warming; however, even the longest warming experiment could not account for possible future climate-driven changes in SOC decomposition. Here, we investigated the responses of SOC decomposition to natural warming in soil samples (at soil depths of 0-10, 10-20, and 20-30 cm) collected at two altitudes (lower-elevation, warm points; higher-elevation, cool points) with an approximate 1 degrees C difference in mean soil temperature, representing an infinite natural warming duration in the Qinghai-Tibetan Plateau. We incubated these soil samples at three temperatures (i.e., 5, 10, and 15 degrees C) and analyzed the CO2 emission rate to assess the responses of SOC decomposition to warming. The results revealed higher CO2 emission rates from topsoil (0-10 and 10-20 cm) samples collected at lower-elevation (warm points) than higher-elevation (cool points). By contrast, subsoil (20-30 cm) samples showed higher CO2 emission rates at higher-elevation points. Soil microbial biomass carbon (MBC) exhibited similar patterns in topsoil and subsoil, indicative of the regulation SOC decomposition by MBC. Overall, CO2 emission rates were higher in subsoil, possible the result of the high vulnerability of carbon and decreased microbial carbon use efficiency in subsoil. For all sampling points, the largest CO2 emission rates and MBC increases were observed at 5 degrees C incubation temperature, demonstrating that cold-tolerant microbes may undergo adaptations that enable their tolerance to cold conditions. Taken together, our findings provide evidence of the natural warming gradient using a climosequence approach to illustrate the importance of microbial-mediation in controlling SOC decomposition. Moreover, models should consider different mechanisms of soil carbon dynamics in topsoil and subsoil when predicting carbon-climate feedback.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/124957
Appears in Collections:气候减缓与适应

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作者单位: 1.Chinese Acad Sci, Northwest Inst Ecoenvironm & Resources, State Key Lab Cryospher Sci, Lanzhou 730000, Gansu, Peoples R China
2.Univ Chinese Acad Sci, Beijing 100049, Peoples R China
3.Sun Yat Sen Univ, Sch Atmospher Sci, Guangzhou 519082, Guangdong, Peoples R China
4.Southern Lab Ocean Sci & Engn, Zhuhai 519000, Guangdong, Peoples R China
5.Shanxi Normal Univ, Coll Life Sci, Linfen 041004, Shanxi, Peoples R China

Recommended Citation:
Xu, Wenfang,Yuan, Wenping,Cui, Lilun,et al. Responses of soil organic carbon decomposition to warming depend on the natural warming gradient[J]. GEODERMA,2019-01-01,343:10-18
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