Effects of plant residues on crop performance, N mineralisation and microbial activity including field CO2 and N2O fluxes in unfertilised crop rotations

被引:36
|
作者
F.P. Vinther
E.M. Hansen
J.E. Olesen
机构
[1] Danish Institute of Agricultural Sciences,Department of Agroecology, Research Centre Foulum
关键词
Arylsulfatase; Fluorescein diacetate; Metabolic quotient; Microbial biomass; Nitrous oxide emission; Organic farming; Soil respiration; Substrate induced respiration;
D O I
10.1023/B:FRES.0000048477.56417.46
中图分类号
学科分类号
摘要
The impacts of crop rotation and input of organic matter in the form of green manure crops, straw residues and incorporation of catch crops on crop yield, nitrogen uptake, microbial biomass and activity were studied in unfertilised crop rotations differing in input of plant residues, i.e., high-input rotations with a grass-clover crop and catch crops included and low-input cereal rotations without catch crops. The parameters studied included substrate induced respiration (SIR), hydrolysis of fluorescein diacetate (FDA), arylsulfatase activity (ASA), N mineralisation, N2O emission, and soil respiration. These parameters were measured in bare soil plots, to estimate the effects of previous years' crops and input of plant residues. In neighbouring plots crop performances were registered by measuring yields, above-ground biomass and nitrogen uptake during the growing season. Generally, all measured parameters were significantly higher in the high-input than in low-input rotations. Estimates of metabolic quotients indicated that the microbial communities in the low-input rotations were less efficient in utilising the C sources than those in the high-input rotations. Calculations of N2O emission factors indicate that the current IPCC methodology for estimating N2O emission from plant residues needs to be improved.
引用
收藏
页码:189 / 199
页数:10
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