Effect of Disposal of Effluent and Paunch from a Meat Processing Factory on Soil Chemical and Microbial Properties

被引:0
作者
Y.-Y. Liu
R. J. Haynes
机构
[1] The University of Queensland,School of Agriculture and Food Science/CRC CARE
来源
Water, Air, & Soil Pollution | 2013年 / 224卷
关键词
Meat processing factory effluent; Paunch; Catabolic function; Bacterial and fungal diversity; Microbial biomass;
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摘要
The effects of irrigation with meat processing factory effluent (MPE) in combination with additions of paunch to three arable sites and one pasture site on soil chemical and microbial properties were investigated in fields surrounding a beef meat processing factory. A pasture site that had only received MPE was also sampled along with adjoining arable and pasture control fields that had never received MPE or paunch. Additions of MPE/paunch caused increases in electrical conductivity, exchangeable Na and K, exchangeable sodium percentage (ESP), extractable P, organic C, total N, microbial biomass C, and metabolic quotient and decreases in exchangeable Ca and Mg, pH, and the proportion of organic C present as microbial biomass. The structure and diversity of bacterial and fungal communities was measured by polymerase chain reaction–denaturing gradient gel electrophoresis of 16S rDNA and internal transcribed spacer-RNA amplicons respectively and catabolic diversity by analysis of catabolic response profiles to 25 substrates. Principal component analysis of catabolic response profiles clearly separated control from MPE/paunch-treated sites, and this was associated with greater catabolic responses to the carboxylic acids α-ketoglutaric, α-ketobutyric, l-ascorbic, and citric acid in the control. At the arable sites, application of MPE and paunch caused increases in bacterial, fungal, and catabolic diversity. Canonical correspondence analysis of the relationship between catabolic, bacterial, and fungal fingerprints and soil properties indicated that the main soil variables separating MPE/paunch treatments from controls were the higher organic C, ESP, and extractable P and a lower pH, exchangeable Ca, and Mg. It was concluded that, although long-term MPE/paunch additions induce soil salinity, sodicity, and acidity, in general, they cause an increase in the size, activity, and structural and functional diversity of in the soil microbial community.
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[11]  
Ricciuti P(2007)Long-term effects of organic and synthetic soil fertility amendments on soil microbial communities and the development of southern blight Soil Biology and Biochemistry 39 2302-2316
[12]  
Ruggiero P(2011)Origin, nature and treatment of effluents from dairy and meat processing factories and the effects of their irrigation on the quality of agricultural soils Critical Reviews in Environmental Science and Technology 41 1531-1599
[13]  
Degens BP(2011)Influence of land application of dairy factory effluent on soil nutrient status and the size, activity, composition and catabolic capability of the soil microbial community Applied Soil Ecology 48 133-141
[14]  
Harris JA(2004)Irrigation of meat processing wastewater onto land Agriculture, Ecosystems and Environment 103 123-148
[15]  
Degens BP(1979)An interpretation of cation selectivity variations in M Clays and Clay Minererals 27 417-422
[16]  
Schipper LA(2006)-M Food Review International 20 229-256
[17]  
Sparling GP(1993) exchange on clays Applied and Environmental Microbiology 59 695-700
[18]  
Vojvodic-Vukovic M(2003)Treatment of wastewater from abattoirs before land application European Journal of Soil Science 54 655-670
[19]  
Degens BP(1974)Profiling of complex microbial populations by denaturing gradient gel electrophoresis analysis of polymerase chain reaction-amplified genes coding for 16S rRNA Annual Review of Ecological Systems 5 285-308
[20]  
Schipper LA(2003)Microbial diversity and soil function Soil Biology and Biochemistry 35 845-854