Microbial Community Analysis During Composting of Digested Sludge and Sawdust by Using Quinone Profile and Polymerase Chain Reaction-Denaturing Gradient Gel Electrophoresis
Lijuan Yang, Mengchun Gao, Fangyuan Liang, Chao Qin
Abstract
Lijuan Yang, Mengchun Gao, Fangyuan Liang, Chao Qin
Abstract
Microbial community structure during the composting of digested sewage sludge and sawdust was analyzed by a combination of quinone profile and polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE). The change in total quinine content (TQ) indicated that microbial biomass reached a peak followed by a decrease, whereas the divergence of quinine (DQ) showed that the microbial community diversity increased continuously during the composting process. The PCR-DGGE clarified community changes at species level and the differences in the microbial communities were also determined. The combination of culture-independent methods revealed the community enough to evaluate the composting process.
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Microbial community structure during the composting of digested sewage sludge and sawdust was analyzed by a combination of quinone profile and polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE). The change in total quinine content (TQ) indicated that microbial biomass reached a peak followed by a decrease, whereas the divergence of quinine (DQ) showed that the microbial community diversity increased continuously during the composting process. The PCR-DGGE clarified community changes at species level and the differences in the microbial communities were also determined. The combination of culture-independent methods revealed the community enough to evaluate the composting process.
Key concepts: Temperature gradient gel electrophoresis, Sawdust, Microbial population biology, Chemistry, Polymerase chain reaction, Biomass (ecology), Sewage sludge, Food science