Title of article :
Microbial respiratory quotient during basal metabolism and after glucose amendment in soils and litter
Author/Authors :
Dilly، نويسنده , , O، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2001
Pages :
11
From page :
117
To page :
127
Abstract :
The microbial respiratory quotient (RQ), defined as the ratio of mol CO2 evolution per mol O2 uptake, was estimated in soils in northern and southern Germany under different land use with and without glucose addition in order to: (i) test the degree of corresponding data of the two procedures, and (ii) evaluate discrepancies with reference to the current eco-physiology of the soil microbiota. The RQ was frequently <1 during basal metabolism when no substrate was added. This indicates relatively high O2 consumption during the current microbial mineralisation of available substrates. Throughout the first 4 h after glucose addition, the RQ values were regularly approximately 1 showing corresponding activity values based on the two procedures. Between 4 and 24 h after glucose addition when microbial growth occurred, the soil RQ was approximately 1.3 or greater but varied significantly depending on land use, soil horizon and soil pre-conditioning. Under such conditions, the RQ value was greater in soils under conventional farming than those under organic farming systems and additionally increased from the L, Of to the Ah horizon in a beech forest. RQ values >1 during the initial period of microbial growth could not be attributed to abiotic soil properties. Thus, the soil microbiota apparently adapt to the degree of complete oxidation and the incorporation of the available substrates. Corresponding measurements of basal and substrate-induced respiration measurements with some litter types also showed RQ values different from 1.
Keywords :
CO2 evolution , microbial growth , O2 consumption , basal metabolism , O2 uptake , respiratory quotient , Substrate-induced respiration
Journal title :
Soil Biology and Biochemistry
Serial Year :
2001
Journal title :
Soil Biology and Biochemistry
Record number :
2180907
Link To Document :
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