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Production of laccases by Pleurotus ostreatus in submerged fermentation in co-culture with Trichoderma viride
C Flores1, R Casasanero1, M R Trejo-Hernández2
1Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca, Morelos, México.
Aims:
To evaluate the production and stability of laccases by Pleurotus ostreatus in liquid co-cultures with Trichoderma viride as a function of infection time and agitation rate.
Methods And Results:
Pleurotus ostreatus cultures were infected with T. viride spores at 30 and 48 h. Maximal laccase volumetric activity was seen after 48 h (control cultures) or 72 h (co-cultures) of cultivation time. Only the cultures infected at 30 h showed an increased laccase volumetric activity compared to control cultures. After maximal laccase volumetric activity value was reached, a sharp decrease in it was observed in control cultures. Co-cultures exhibited a comparatively lower loss of activity. The influence of P. ostreatus and/or T. viride on the stability of laccase volumetric activity and isoenzyme pattern was evaluated. Trichoderma viride induced changes in the laccase isoenzyme pattern. Agitated cultures increased biomass growth and specific productivity threefold and sevenfold, respectively, to the static cultures.
Conclusions:
The laccase volumetric activity is very likely the result of the balance between biosynthesis and degradation/biotransformation rates occurring during the cultures. The individual presence of P. ostreatus or T. viride in the culture negatively affected the volumetric laccase activity.
Significance And Impact Of The Study:
The evaluation of culture parameters that could influence Trichoderma-basidomycetes interaction and laccase production during submerged fermentation has not been reported. This study showed how laccase production in co-cultures of P. ostreatus and T. viride was influenced by the infection time and agitation/oxygenation conditions.
Insights
Co-culturing Pleurotus ostreatus with Trichoderma viride enhances laccase production and stability. Optimal results were achieved with early infection and agitation, influencing enzyme activity and isoenzyme patterns.
Area of Science:
- Biotechnology
- Enzymology
- Mycology
Background:
- Laccases are crucial enzymes with diverse industrial applications.
- Optimizing laccase production in fungal cultures is essential for biotechnological processes.
- Understanding fungal interactions is key to enhancing enzyme yields.
Purpose of the Study:
- To investigate the impact of co-culturing Pleurotus ostreatus with Trichoderma viride on laccase production and stability.
- To determine the influence of infection time and agitation rate on laccase activity in submerged fermentation.
Main Methods:
- Pleurotus ostreatus cultures were co-cultured with Trichoderma viride spores at different infection times (30h, 48h).
- Static and agitated submerged fermentation conditions were employed.
- Laccase volumetric activity, stability, and isoenzyme patterns were analyzed.
Main Results:
- Co-culturing with T. viride, particularly when infected at 30h, increased laccase volumetric activity compared to control.
- Co-cultures showed reduced laccase activity loss over time compared to monocultures.
- Agitation significantly enhanced biomass growth (3-fold) and specific productivity (7-fold).
- T. viride altered the laccase isoenzyme profile of P. ostreatus.
Conclusions:
- Laccase activity is a balance between biosynthesis and degradation, influenced by fungal interactions.
- Co-culturing P. ostreatus with T. viride can enhance laccase production and stability.
- Agitation and infection time are critical parameters for optimizing laccase yield in submerged co-cultures.
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