Reaction of microorganisms to rewetting in continuous cereal and legume rotation soils of semi-arid Sub-Saharan Africa

被引:16
作者
Formowitz, Beate
Schulz, Mary-Catherine
Buerkert, Andreas
Joergensen, Rainer Georg
机构
[1] Univ Kassel, Dept Organ Plant Prod & Agroecosyst Res Trop & Su, D-37213 Witzenhausen, Germany
[2] Univ Kassel, Dept Soil Biol & Plant Nutr, D-37213 Witzenhausen, Germany
关键词
adenylates; AEC; ergosterol; glucosamine; muramic acid; microbial biomass; CO2 evolution rate;
D O I
10.1016/j.soilbio.2006.12.033
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
A 20-day incubation experiment with continuous cereal (CC) versus cereal legume (CL) rotation soils of two semi-arid Sub-Saharan sites (Fadae-Kouare in Burkina Faso, F, and Koukombo in Togo, K) were carried out to investigate the effects of rewetting on soil microbial properties. Site- and system-specific reactions of soil microorganisms were observed on cumulative CO2 production, adenylates (ATP, ADP, and AMP), microbial biomass C and N, ergosterol, muramic acid and glucosamine. Higher values of all parameters were found in the CL rotation soils and in both soils from Fada-Kouare. While the inorganic N concentration showed only a system-specific response to rewetting, the adenylate energy charge (AEC) showed only a site-specific response. ATP recovered within 6 h after rewetting from ADP and AMP due to rehydration of microorganisms and not due to microbial growth. Consequently, no N seemed to be immobilized by microorganisms and all NO3 in the soil was immediately available to the plants. The fungal cell-membrane component ergosterol was three (CC) and five (CL) times larger at Fada than in the respective soils at Koukombo. The concentrations of the bacterial cell-wall component muramic acid were by 20% and of mainly fungal glucosamine by 10% larger in the CL rotation soils than in the CC soils. This indicates long-shifts in the microbial community structure. (c) 2007 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1512 / 1517
页数:6
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