Contrasting effects of glucose, living roots and maize straw on microbial growth kinetics and substrate availability in soil

被引:206
作者
Blagodatskaya, E. V. [1 ,2 ]
Blagodatsky, S. A. [2 ]
Anderson, T. -H. [3 ]
Kuzyakov, Y. [1 ]
机构
[1] Univ Bayreuth, Dept Agroecosyst Res, D-95440 Bayreuth, Germany
[2] Russian Acad Sci, Inst Physiochem & Biol Problems Soil Sci, Pushchino 142290, Russia
[3] BFAL, Inst Agroecol, D-38116 Braunschweig, Germany
关键词
MINERALIZATION ACTIVITY; CARBON; NITROGEN; BIOMASS; BACTERIA; THYMIDINE; PLANTS; SIZE;
D O I
10.1111/j.1365-2389.2008.01103.x
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
The most modern molecular approaches fail to link structure of soil microbial community with its functions. We used classical physiological approaches based on (i) microbial growth kinetics and (ii) microbial affinity to the substrate to show the shift in functional properties of the soil microbial community after amendments with substrates of contrasting availability. Kinetic parameters of substrate-induced respiration and substrate availability in soil were monitored during the growth of maize, and decomposition of glucose or maize straw. Input of small amounts of easily available substrates (i.e. glucose or root exudates) significantly increased the specific growth rates of soil microorganisms by up to 13 and 20%, respectively. This increase, showing the shift from K to r strategies, was confirmed by a 50% decrease in the affinity of microorganisms to the easily available substrates. In contrast, maize straw lowered specific growth rates by 16-30% and increased the affinity of microorganisms to the substrate by 23-131% compared with untreated soil. After maize straw addition, the shift of the microbial community to K strategy was accompanied by an increase in the fraction of microbial biomass responding to glucose addition by immediate growth. The generation time of this fraction was 1.8 to 2.8 hours, which was 100 to 1000 times faster than that of the whole microbial community. Easily available carbon (C) in soil amended with maize straw comprised only half of that extracted by 0.05 m K2SO4. Therefore, we conclude that C extracted by 0.05 m K2SO4 from the soil with maize straw residues had a lower availability for microorganisms as compared with glucose. Adding N to the soil prolonged the intensive mineralization period of plant residues, decreased specific microbial growth rates and increased the amount of easily available C in the soil. This indicates a more efficient use of maize residues by K-selected microorganisms after the removal of N limitation. Combination of two complementary physiological approaches based on microbial growth kinetics and substrate affinity showed contrasting effects of easily and less available substrates on the shift of growth strategies (r vs. K) of the whole microbial community. These approaches are also suitable for estimation of microbial availability of indigenous C in the soil.
引用
收藏
页码:186 / 197
页数:12
相关论文
共 41 条
[21]   Size and activity of soil microbial communities in long-term experimental grassland plots treated with manure and inorganic fertilizers [J].
Hopkins, DW ;
Shiel, RS .
BIOLOGY AND FERTILITY OF SOILS, 1996, 22 (1-2) :66-70
[22]   Modelling the competition for nitrogen between plants and microflora as a function of soil heterogeneity [J].
Korsaeth, A ;
Molstad, L ;
Bakken, LR .
SOIL BIOLOGY & BIOCHEMISTRY, 2001, 33 (02) :215-226
[23]  
Kovárová-Kovar K, 1998, MICROBIOL MOL BIOL R, V62, P646
[24]   Review of mechanisms and quantification of priming effects [J].
Kuzyakov, Y ;
Friedel, JK ;
Stahr, K .
SOIL BIOLOGY & BIOCHEMISTRY, 2000, 32 (11-12) :1485-1498
[25]  
Kuzyakov Y, 2000, J PLANT NUTR SOIL SC, V163, P421, DOI 10.1002/1522-2624(200008)163:4<421::AID-JPLN421>3.0.CO
[26]  
2-R
[27]  
KUZYAKOV Y, 1998, SCI SOILS, V3, P1, DOI DOI 10.1007/S10112-998-0002-2
[28]   Heterogeneous distribution may substantially decrease initial decomposition, long-term microbial growth and N-immobilization from high C-to-N ratio resources [J].
Magid, J. ;
De Neergaard, A. ;
Brandt, M. .
EUROPEAN JOURNAL OF SOIL SCIENCE, 2006, 57 (04) :517-529
[29]  
Morris S., 2007, Soil Microbiology and Biochemistry, P195, DOI DOI 10.1016/B978-0-08-047514-1.50012-3
[30]   Short-term utilisation of 14C-[U]glucose by soil microorganisms in relation to carbon availability [J].
Nguyen, C ;
Guckert, A .
SOIL BIOLOGY & BIOCHEMISTRY, 2001, 33 (01) :53-60