Isolation and Characterization of a Low-Temperature, Cellulose-Degrading Microbial Consortium from Northeastern China

Author:

Ji Jiaoyang12,Escobar Maia12ORCID,Cui Shijia12,Zhang Wei3,Bao Changjie12,Su Xuhan12,Wang Gang12,Zhang Sitong12,Chen Huan12,Chen Guang12

Affiliation:

1. College of Life Science, Jilin Agricultural University, Changchun 130022, China

2. Key Laboratory of Straw Comprehensive Utilization and Black Soil Conservation, Ministry of Education, Jilin Agricultural University, Changchun 130118, China

3. Jilin Province Hydraulic Research Institute, Changchun 130022, China

Abstract

The lack of efficient ways to dispose of lignocellulosic agricultural residues is a serious environmental issue. Low temperatures greatly impact the ability of organisms to degrade these wastes and convert them into nutrients. Here, we report the isolation and genomic characterization of a microbial consortium capable of degrading corn straw at low temperatures. The microorganisms isolated showed fast cellulose-degrading capabilities, as confirmed by scanning electron microscopy and the weight loss in corn straw. Bacteria in the consortium behaved as three diverse and functionally distinct populations, while fungi behaved as a single population in both diversity and functions overtime. The bacterial genus Pseudomonas and the fungal genus Thermoascus had prominent roles in the microbial consortium, showing significant lignocellulose waste-degrading functions. Bacteria and fungi present in the consortium contained high relative abundance of genes for membrane components, with amino acid breakdown and carbohydrate degradation being the most important metabolic pathways for bacteria, while fungi contained more genes involved in energy use, carbohydrate degradation, lipid and fatty acid decomposition, and biosynthesis.

Funder

Jilin Provincial Science and Technology Department

Study on Forage Grass and Silage of Quinoa project

Publisher

MDPI AG

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