Enhancement of microbial growth in Pseudomonas species through mutagenesis
Tosin Akin Akinmolayan1, Olutoyin Omolara Bamigboye1, Jude Oluwapelumi Alao2
1Department of Microbiology, Adeleke University, Loogun-Ogberin Road, Ede, Osun State, P.M.B 250, Nigeria.
Abstract:
The production of cellulase enzymes is crucial for converting lignocellulosic biomass into fermentable sugars, a process essential for various industrial applications. This study investigates the impact of mutagenesis on microbial growth in Pseudomonas species, specifically P. azotoformans, P. fluorescens, and P. lactis, isolated from maize cobs. Mutagenic agents, including ultraviolet (UV) radiation, ethidium bromide (EtBr), and nitrous acid (NA) were used to induce mutations, and bacterial growth was assessed over 8 days using Congo Red carboxymethyl cellulose medium. While EtBr mutagenesis significantly enhanced bacterial growth, particularly in P. azotoformans and P. fluorescens, with growth increases of up to 73% at 192 h compared to wild-type strains, cellulase activity was not directly measured in this study. UV and NA treatments showed only moderate or negative effects on growth. Although EtBr, a known carcinogen, raises safety concerns, its potential for improving microbial growth suggests it could be useful in optimizing strains for industrial applications. Further studies are needed to directly measure cellulase activity and confirm the impact of these mutagenic treatments on enzyme production.
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