Optimization of Critical Fermentation Parameters for Improved Yield, and Characterization of Curdlan Biopolymer Produced by Agrobacterium Species Utilizing Agro-Waste
M. A. Mbahi
*
Department of Microbiology, Faculty of Life Sciences, Federal University, Kashere, P.M.B, 0182 Gombe, Gombe State, Nigeria.
J. H. Doughari
Department of Microbiology, Faculty of Life Sciences, Modibbo Adama University, PMB 2076, Yola, Adamawa State, Nigeria.
M. I. Jaʹafaru
Department of Microbiology, Faculty of Life Sciences, Modibbo Adama University, PMB 2076, Yola, Adamawa State, Nigeria.
*Author to whom correspondence should be addressed.
Abstract
The utilisation of agro-waste as an inexpensive alternative carbon source for curdlan production is increasing. However, low curdlan yields have been reported for Agrobacterium species utilising agro-waste. This study therefore optimised critical fermentation parameters to improve curdlan yield. Agrobacterium species isolated from legume fields were inoculated onto rice husk and corncob as carbon sources; the curdlan production process was optimised, and the produced curdlan was characterised using Fourier-transform infrared spectroscopy (FTIR). The results showed that 25 g/L rice husk produced the highest curdlan yield (0.73 g/L), with a reduction in yield at higher rice husk concentrations; a maximum curdlan yield of 0.7 g/L was achieved at 1 g/L urea, whereas the lowest yield (0.3 g/L) was recorded at 2 g/L urea; curdlan yield increased with pH, with the highest yield (0.76 g/L) recorded at pH 7; at 25°C, the curdlan yield was 0.4 g/L and increased to 0.62 g/L at 30°C; combined optimisation of the fermentation parameters produced a maximum curdlan yield of 0.91 g/L; and the curdlan produced by the Agrobacterium spp. exhibited peak values of 1071.44, 1366.57, and 3292.73 cm⁻¹, with the FTIR spectrum confirming the presence of the β-1,3-glucan (curdlan) polysaccharide structure. Rice husk and corncob are inexpensive carbon sources for curdlan production, and curdlan yield generally increased following process optimisation.
Keywords: Agro-waste, Agrobacterium, curdlan, biopolymer, fermentation optimisation, rice husk, corncob, urea, agitation speed, Fourier-transform infrared spectroscopy