Lignocellulose Degradation of Cotton Stalks through Solid State Fermentation Using Fungal Isolates
Diksha Ramteke, Savitha Santosh, Kulandaivelu Velmourougane, Desouza Blaise, Yenumula Gerard Prasad
Journal of Advances in Microbiology · pp. 78–87 · Published 25 Mar 2026
10.9734/jamb/2026/v26i31090Abstract
Background and Aim: Lignocellulosic biomass such as cotton stalks represents an abundant agricultural residue with significant potential for conversion into value-added products; however, its utilization is limited due to high lignin content. This study aimed to isolate and identify efficient lignocellulolytic fungi capable of enhancing cotton stalk degradation through solid-state fermentation (SSF). Methodology: A total of 26 fungal isolates were obtained from soil samples collected in Nagpur District, Maharashtra, India, and screened for cellulolytic and ligninolytic activities. Promising isolates were identified through ITS gene sequencing, and their enzymatic activities including carboxymethyl cellulase (CMCase), β-glucosidase, and filter paperase (FPase) were evaluated under SSF conditions. Results: Four efficient fungal isolates were identified as Trichoderma asperellum, Trichoderma sp., Penicillium chrysogenum, and Alternaria sp. Among them, Alternaria sp. CICR4 exhibited the highest CMCase activity (30.46 IU mL⁻¹), while T. asperellum CICR1 showed the maximum β-glucosidase activity (40.8 IU mL⁻¹). Alternaria sp. CICR4 demonstrated the highest FPase activity (25.6 IU mL⁻¹). Temperature optimization indicated that 30 °C was the most favorable condition for maximum enzyme production. Under solid-state fermentation of cotton stalks, co-culturing P. chrysogenum CICR3 with T. asperellum CICR1 significantly enhanced enzymatic activities, resulting in CMCase activity of 28.4 IU mL⁻¹, β-glucosidase activity of 21.7 IU mL⁻¹, and FPase activity of 24.4 IU mL⁻¹. Conclusion: The study demonstrates that selected lignocellulolytic fungi, particularly T. asperellum CICR1 and P. chrysogenum CICR3, possess strong enzymatic potential for efficient degradation of cotton stalks under solid-state fermentation. The synergistic interaction observed in co-culture significantly enhances cellulolytic enzyme production, indicating a promising strategy for sustainable lignocellulosic biomass valorization and agricultural waste management.
Cited by 0
No indexed citations yet.
Related research
- Production and Partial Purification of Cellulase from a New Isolate, Penicillium verruculosum BS3 — shares topic coverage
- Invertase Production by Irradiated Aspergillus niger OSH5 Using Agricultural Wastes as Carbon Source — shares topic coverage
- Optimization of the Production of α-L-Rhamnosidase by Aspergillus niger in Solid State Fermentation Using Agro-Industrial Residues — shares topic coverage
- Production and Optimization of Fungal Silicase Using Rice Straw under Solid State Fermentation — shares topic coverage
- Laccase Isoenzymes of Pleurotus ostreatus Grown at Different pH in Solid-State Fermentation Using Polyurethane Foam as Support — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
0
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.