Long-term monitoring of microbial biomass, N mineralisation and enzyme activities of a Chernozem under different tillage management

被引:306
作者
Kandeler, E
Tscherko, D
Spiegel, H
机构
[1] Fed Agcy & Res Ctr Agr, Inst Soil Management, A-1226 Vienna, Austria
[2] Fed Agcy & Res Ctr Agr, Inst Agr Ecol, A-1226 Vienna, Austria
关键词
soil microbial biomass; nitrogen mineralisation; soil enzymes; functional diversity; tillage; temporal variation;
D O I
10.1007/s003740050502
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
We investigated the influence of tillage (conventional, minimum and reduced) on selected soil microbial properties of a fine-sandy loamy Haplic Chernozem over a period of 8 years. The microbial biomass and soil microbial processes were affected mostly by type of tillage and to a lesser extent by the date of soil sampling. Whereas xylanase activity was significantly higher in the 0 to 10-cm soil layer of the reduced and minimum tillage systems within the first year of the experiment (protease and phosphatase activities were significantly higher in the second year), significant treatment effects on microbial biomass, N mineralisation and potential nitrification were observed after a 4-year period. The slow response of substrate-induced respiration to the change in type of tillage may have been due to the differences in the biomass C turnover rates. After a 4-year period, the stratification of the soil microbial biomass within the profile of reduced and minimum tillage systems was probably responsible for the more intensive soil microbial processes near the soil surface compared with conventional tillage. In the 20 to 30-cm layer, N mineralisation, potential nitrification and xylanase activity in the conventional treatment were significantly higher than in the minimum and reduced tillage plots due to buried organic materials. Discriminant analysis underlined the similarity of the enzyme activity patterns in the top layer of the reduced and minimum tillage treatments, and in both layers of the conventional tillage system. The trend towards a significant increase in functional diversity caused by reduced tillage became obvious within the first year of the experiment, and this effect was still manifest after 8 years. All relationships suggested that there were differences in available resources (e.g. organic matter) along the sequence of different tillage systems; this was reflected in part by enhanced enzymatic and microbial activities in the soil layers. In conclusion, this study showed that soils affected by tillage may be classified on the basis of their functional diversity. Therefore, the soil microbial properties chosen for microbiological soil monitoring (microbial biomass, N mineralisation and enzyme activities involved in C, N and P cycling) provide a reliable tool with which to estimate early changes in the dynamics and distribution of soil microbial processes within soil profiles.
引用
收藏
页码:343 / 351
页数:9
相关论文
共 40 条
[1]  
AHL C, 1998, IN PRESS SOIL TILL R
[2]  
ALEF K, 1995, METHODS APPL SOIL MI
[3]   PHYSIOLOGICAL METHOD FOR QUANTITATIVE MEASUREMENT OF MICROBIAL BIOMASS IN SOILS [J].
ANDERSON, JPE ;
DOMSCH, KH .
SOIL BIOLOGY & BIOCHEMISTRY, 1978, 10 (03) :215-221
[4]   MICROBIAL AND BIOCHEMICAL-CHANGES INDUCED BY ROTATION AND TILLAGE IN A SOIL UNDER BARLEY PRODUCTION [J].
ANGERS, DA ;
BISSONNETTE, N ;
LEGERE, A ;
SAMSON, N .
CANADIAN JOURNAL OF SOIL SCIENCE, 1993, 73 (01) :39-50
[5]   EFFECTS OF TILL VS NO-TILL ON THE QUALITY OF SOIL ORGANIC-MATTER [J].
ARSHAD, MA ;
SCHNITZER, M ;
ANGERS, DA ;
RIPMEESTER, JA .
SOIL BIOLOGY & BIOCHEMISTRY, 1990, 22 (05) :595-599
[6]   AMMONIUM OXIDIZER NUMBERS, POTENTIAL AND ACTUAL OXIDATION RATES IN 2 SWEDISH ARABLE SOILS [J].
BERG, P ;
ROSSWALL, T .
BIOLOGY AND FERTILITY OF SOILS, 1985, 1 (03) :131-140
[8]  
Christensen B.T, 1996, NATO ASI SER, P143
[9]   ORGANIC-MATTER AND MICROBIAL BIOMASS IN A VERTISOL AFTER 20-YR OF ZERO-TILLAGE [J].
DALAL, RC ;
HENDERSON, PA ;
GLASBY, JM .
SOIL BIOLOGY & BIOCHEMISTRY, 1991, 23 (05) :435-441
[10]  
Degens B, 1997, MICROBIAL COMMUNITIES, P206