METAGENOMIC ANALYSIS OF MICROBIAL CONSORTIUM GF-20 IN CORN STOVER DEGRADATION AT LOW TEMPERATURE

Author:

Zhang Bi-zhou1,Borjigin Qinggeer2,Gao Ju-lin2,Yu Xiao-fang2,Hu Shu-ping2,Wang Fu-gui2,Zhang Xin2,Han Sheng-cai2

Affiliation:

1. Agricultural College, Inner Mongolia Agricultural University, Hohhot, P. R. China; Inner Mongolia Key Laboratory of Crop Cultivation and Genetic Improvement, Hohhot, P. R. China; Inner Mongolia Academy of Agricultural & Animal Husbandry Science, Hohhot, P. R. China

2. Agricultural College, Inner Mongolia Agricultural University, Hohhot, P. R. China; Inner Mongolia Key Laboratory of Crop Cultivation and Genetic Improvement, Hohhot, P. R. China

Abstract

In our previous work, a microbial consortium GF-20 (Qinggeer et al., 2016) was enriched from compost habitats and adapted to efficiently and stably degrade corn stover under low temperatures. While the main microorganism and degradation-related functions and degradation-related coding enzyme genes of GF-20 were not clear. Therefore, the current study used the metagenomic to decipher the systematic and functional contexts within such microbial consortium under low temperatures. The results showed that the dominant functional microbials in GF-20 consortium were bacteria. The dominant phylums in GF-20 consortium were Proteobacteria (62.84%) and Bacteroidetes (10.24%). The dominant genus was Pseudomonas (50.84%), followed by Dysgonomonas (5.86%), Achromobacter (4.94%), Stenotrophomonas (3.67%) and Flavobacterium (2.04%). The metabolism was mainly composed of carbohydrate metabolism and amino acid metabolism, and included signal transduction, cell transport and other metabolic modes. The functional genes encoded were mainly distributed in glycosidolytic enzyme genes, and the functional enzymes were β-glucosidase, acetyl-CoA, pyruvate dehydrogenase and galactosidase. The GF-20 microbial consortium degraded the cellulose in corn stover primarily by β-glucosidase and endoglucanase, which were produced by 12 genera of microorganisms. The hemicellulose synergistic effect was produced by 15 genera of microorganisms including xylanase, xyloglucanase, mannolanase and branching enzyme.

Publisher

Vilnius Gediminas Technical University

Subject

Management, Monitoring, Policy and Law,Nature and Landscape Conservation,Environmental Engineering

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