Efficient Degradation of Untreated Complex Cellulosic Substrates by Newly Isolated Aerobic Paenibacillus Species

Author:

Yadav Ravi Shankar1ORCID,Pragati 2,He Weihua1,Li Chao1,Mishra Juhi3,Feng Yujie1

Affiliation:

1. State Key Laboratory of Urban Water Resources and Environment, School of Environment, Harbin Institute of Technology, Harbin 150090, China

2. Department of Biotechnology, NIIT University, Neemrana 301705, Rajasthan, India

3. Translational Health Science and Technology Institute, Faridabad 121009, Haryana, India

Abstract

A stable aerobic consortium was enriched to degrade crystalline cellulose (Whatman filter paper 1). The degradation efficiency of the consortium after 7 days of incubation was 91% compared to the control. One bacterial isolate, C7, capable of degrading various cellulosic substrates, was obtained from the consortium under aerobic conditions. The sequencing of 16s rDNA revealed that it was related to Paenibacillus sp. It degraded 83% of cotton after 3 days of incubation. The degradation efficiency of Paenibacillus sp. C7 for filter paper, cotton, and avicel was 90%, 90%, and 92% after 5 days of incubation compared to the control. It also degraded non-pretreated agricultural residues efficiently by 70% for rice straw and 46% for wheat bran in 10 days. Scanning electron micrographs (SEMs) of degraded filter paper after 2 days of incubation indicated smoother and thinner fabrics in its structure. It is a potential cheaper candidate for the degradation of lignocellulosic biomass without any pretreatment.

Funder

National Science & Technology Pillar Program of China

Department of Biotechnology of India

Publisher

MDPI AG

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