Skip to content
Research Article Open access CC BY 4.0

Isolation, Screening and Identification of Cellulolytic Bacteria from Soil

Pratibha Maravi, Anil Kumar

Biotechnology Journal International · pp. 1–8 · Published 31 Jan 2020

10.9734/bji/2020/v24i130092

Abstract

Background: Cellulose is the most abundant carbohydrate on earth and is considered as a good candidate for production of second generation biofuel (ethanol) and many other products of routine use. For degradation, cellulases are used which are mostly secreted by microbes such as fungi. Cellulases also play an important role in senescence of plants and in host-parasite relationship for invading the plant cell wall. However, comparatively lesser studies have been carried out on cellulase producing bacteria. Therefore, present study was aimed to isolate cellulase (Endo-β-1,4-D-glucanase; EC. 3.2.1.4.) from bacterial sources. Methodology: To isolate thermophilic/ mesophilic cellulase producing bacteria, soil samples were collected from wood furnishing area and agricultural farm around Indore. Besides, soil sample was also collected from the vicinity of Amlai Paper Mill in Budhar district, Madhya Pradesh. These soil samples after suitable dilutions were streaked on different nutrients agar petri-dishes having carboxymethyl cellulose (CMC) as an inducer. After screening, four colonies were isolated capable of producing good amount of cellulase. Screening was done using Congo red staining and confirmation was done after growth of the bacteria in liquid nutrient medium having CMC. These colonies individually were grown in suitable nutrient media having CMC as an inducer and enzyme activity was determined in the nutrient media after harvesting bacterial cells by centrifugation. Results: The highest enzyme producing bacteria were identified as Bacillus lichenoformis and Ochrobactrum anthropi after biochemical analyses, 16S rRNA sequencing and subsequently phylogenetic tree analysis.

Cellulase isolation bacteria screening Bacillus lichenoformis Ochrobactrum anthropi

Cited by 7

Enhanced biogas production from Lantana camara via bioaugmentation of cellulolytic bacteria

Debasree Sinha, Sandipan Banerjee, Subhrangshu Mandal · Bioresource Technology · 2021

ISOLATION AND CHARACTERIZATION OF CELLULOLYTIC BACTERIA AND FUNGI FROM CASSAVA WASTE AND MILL SOIL

Majekodunmi Racheal Adedayo, Taofeek Olatunji Lateef · FUDMA JOURNAL OF SCIENCES · 2025

Optimization of the medium composition for cmcase production from Bacillus velezensis using response surface methodology

Faculty of Biology - Biotechnology, University of Science, Ho Chi Minh City, VNUHCM, Vietnam, Dung Nguyen, Tuan Tran · Science and Technology Development Journal - Natural Sciences · 2025

Antifungal potential of endophytic Bacillus species isolated from tomato ( Solanum lycopersicum ) against Fusarium oxysporum collected from selected farms in Nigeria

Oluwafemi Michael Adedire, Adefoyeke Olufunmilayo Aduramigba-Modupe, Olubusola Ayoola Odeniyi · Journal of Crop Improvement · 2023

Isolation and identification of bacteria with cellulose-degrading potential from soil and optimization of cellulase production

Shweta Ashok Bhagat, Seema Sambhaji Kokitkar · Journal of Applied Biology & Biotechnology · 2021

Bacterial Communities Associated with the Cycling of Non-Starch Polysaccharides and Phytate in Aquaponics Systems

Daniel Menezes-Blackburn, Nahad Al-Mahrouqi, Buthaina Al-Siyabi · Diversity · 2021

Screening, Production and Characterization of Potential Lignocellulolytic Actinomycetes from Agricultural Field

Mrunal K. Bhatt, Mousumi B. Das · Journal of Pure and Applied Microbiology · 2024

Article metrics

Real usage data collected on this platform.

0

Page views

0

PDF downloads

0

Outbound clicks

7

Citations

Views by country

Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".

No views recorded yet.

Traffic sources

Referring site, by host.

No traffic recorded yet.

Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.