globalchange  > 气候减缓与适应
DOI: 10.1016/j.geoderma.2018.08.021
WOS记录号: WOS:000447108600003
论文题名:
Nutrient availability affects carbon turnover and microbial physiology differently in topsoil and subsoil under a temperate grassland
作者: Liang, Zhi; Olesen, Jurgen Eivind; Jensen, Johannes Lund; Elsgaard, Lars
通讯作者: Liang, Zhi
刊名: GEODERMA
ISSN: 0016-7061
EISSN: 1872-6259
出版年: 2019
卷: 336, 页码:22-30
语种: 英语
英文关键词: Nutrient stoichiometry ; Carbon turnover ; Microbial activity ; Nitrogen limitation ; Subsoil
WOS关键词: SOIL ORGANIC-MATTER ; SULFUR CYCLE ; C-TURNOVER ; LAND-USE ; NITROGEN ; RESPIRATION ; SEQUESTRATION ; DECOMPOSITION ; COMMUNITIES ; PHOSPHORUS
WOS学科分类: Soil Science
WOS研究方向: Agriculture
英文摘要:

Increasing subsoil organic carbon (C) inputs could potentially mitigate climate change by sequestering atmospheric CO2. Yet, microbial turnover and stabilization of labile C in subsoils are regulated by complex mechanisms including the availability of nitrogen (N), phosphorous (P), and sulfur (S). The present study mimicked labile organic C input using a versatile substrate (glucose) to address the interaction between C-induced mineralization, N-P-S availability, and microbial physiology in topsoil (20 cm) and subsoil (60, 100, and 300 cm) from a temperate agricultural sandy loam soil. A factorial incubation study (42 days) showed that net losses of added C in topsoil were constant, whereas C losses in subsoils varied according to nutrient treatments. Glucose added to subsoil in combination with N was fully depleted, whereas glucose added alone or in combination with P and S was only partly depleted, and remarkably 59-92% of the added glucose was recovered after the incubation. This showed that N limitation largely controlled C turnover in the subsoil, which was also reflected by microbial processes where addition of glucose and N increased beta-glucosidase activity, which was positively correlated to the maximum CO2 production rate during incubation. The importance of N limitation was substantiated by subsoil profiles of C source utilization, where microbial metabolic diversity was mainly related to the absence or presence of added N. Overall, the results documented that labile C turnover and microbial functions in a temperate agricultural subsoil was controlled to a large extent by N availability. Effects of glucose induced microbial activity on subsoil physical properties remained ambiguous due to apparent chemical effects of N (nitrate) on clay dispersibility.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/129992
Appears in Collections:气候减缓与适应

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作者单位: Aarhus Univ, Dept Agroecol, Blichers Alle 20, DK-8830 Tjele, Denmark

Recommended Citation:
Liang, Zhi,Olesen, Jurgen Eivind,Jensen, Johannes Lund,et al. Nutrient availability affects carbon turnover and microbial physiology differently in topsoil and subsoil under a temperate grassland[J]. GEODERMA,2019-01-01,336:22-30
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