Journal/Current Issue/Volume 1/Issue 1/10.5281/zenodo.21449521
Open AccessResearch Article

Statistical Optimization of Pullulanase Production by Aspergillus flavus under Solid-State Fermentation Using Wheat Bran

by Sonia Aziz, Rabbia Shafqat, Fahad Mehmood, Syed Muhammad Hamza Abidi*

Journal of Biological and Sustainability Sciences 2025, 1(1), 1-11; https://doi.org/10.5281/zenodo.21449521
Published: 14 August 2025

Abstract

Background: Pullulanase is an industrial starch-debranching enzyme whose production cost may be reduced through fungal solid-state fermentation on agro-industrial residues. This study evaluated initial pH, moisture content, wheat-bran quantity, and inoculum volume for pullulanase production by Aspergillus flavus. Methods: A four-factor, five-level central composite design containing 30 runs was constructed. Pullulanase activity was defined as units per gram of dry substrate, and a second-order polynomial model was used to estimate linear, interaction, and quadratic effects. Results: Measured pullulanase activity ranged from 12.4 to 46.9 U/gds across the 30 design runs. A reduced quadratic model retaining the significant linear and pure-quadratic terms was statistically significant (F8,21 = 11.42, p < 0.0001), with R² = 0.813, adjusted R² = 0.742, and adequate precision of 11.3. The model also showed a significant lack of fit relative to pure replicate error at the six centre points (F = 471.6, p < 0.0001), indicating that the fitted quadratic surface does not fully capture the response. Moisture content produced the strongest positive linear effect, followed by inoculum volume, initial pH, and substrate quantity; all pure-quadratic coefficients were negative. Numerical optimization within the tested region predicted a maximum of 41.5 U/gds at pH 5.85, 69.1% moisture, 8.87 g wheat bran, and 6.09 mL inoculum, but the single highest measured activity (46.9 U/gds) occurred at the highest-level factorial combination tested, suggesting the true optimum may lie at or beyond the upper boundary of the studied ranges. Conclusion: Moisture content, inoculum volume, and initial pH significantly influenced pullulanase production by A. flavus under solid-state fermentation, but the significant lack of fit and the corner-biased response indicate that the present central composite design has not yet bracketed the true process optimum. A follow-up design extending toward higher pH, moisture, substrate, and inoculum levels, together with confirmatory strain identification and aflatoxin-safety screening, is recommended before the process can be considered optimized.

Keywords: central composite design; pullulanase; response surface methodology; solid-state fermentation; wheat bran; Aspergillus flavus

Article Information

Journal: Journal of Biological and Sustainability Sciences
Publisher: BIOSUSS Publishing
Article type: Research Article
Access: Open Access
Copyright: Authors retain copyright
Licence: CC BY 4.0
Volume: 1
Issue: 1
Pages: 1-11
DOI: 10.5281/zenodo.21449521

Declarations

Ethics approval

Not Applicable

Author contributions

Sonia Aziz: Conceptualization, Investigation, Data curation, Writing—original draft. Rabbia Shafqat: Methodology, Formal analysis, Visualization, Writing—review and editing. Fahad Mehmood: [CRediT role(s) — to be confirmed by author]. Syed Muhammad Hamza Abidi: Supervision, Project administration, Writing—review and editing, Corresponding author. All authors have read and agreed to the published version of the manuscript.

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Sonia Aziz, Rabbia Shafqat, Fahad Mehmood, Syed Muhammad Hamza Abidi*. Statistical Optimization of Pullulanase Production by Aspergillus flavus under Solid-State Fermentation Using Wheat Bran. Journal of Biological and Sustainability Sciences. 2025;1(1):1-11. https://doi.org/10.5281/zenodo.21449521

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