Javascript must be enabled to continue!
Monitoring corn stover processing by the fungus Ustilago maydis
View through CrossRef
AbstractA key aspect of sustainable bioeconomy is the recirculation of renewable, agricultural waste streams as substrates for microbial production of high-value compounds. One approach is the bioconversion of corn stover, an abundant maize crop byproduct, using the fungal maize pathogen Ustilago maydis. U. maydis is already used as a unicellular biocatalyst in the production of several industrially-relevant compounds using plant biomass hydrolysates. In this study, we demonstrate that U. maydis can grow using untreated corn stover as its sole carbon source. We developed a small-scale bioreactor platform to investigate U. maydis processing of corn stover, combining online monitoring of fungal growth and metabolic activity profiles with biochemical analyses of the pre- and post-fermentation residues. Our results reveal that U. maydis primarily utilizes soluble sugars i.e., glucose, sucrose and fructose present in corn stover, with only limited exploitation of the abundant lignocellulosic carbohydrates. Thus, we further explored the biotechnological potential of enhancing U. maydis´ lignocellulosic utilization. Additive performance improvements of up to 120 % were achieved when using a maize mutant with increased biomass digestibility, co-fermentation with a commercial cellulolytic enzyme cocktail, and exploiting engineered fungal strains expressing diverse lignocellulose-degrading enzymes. This work represents a key step towards scaling up the production of sustainable compounds from corn stover using U. maydis and provides a tool for the detailed monitoring of the fungal processing of plant biomass substrates.
Graphical abstract
Springer Science and Business Media LLC
Title: Monitoring corn stover processing by the fungus Ustilago maydis
Description:
AbstractA key aspect of sustainable bioeconomy is the recirculation of renewable, agricultural waste streams as substrates for microbial production of high-value compounds.
One approach is the bioconversion of corn stover, an abundant maize crop byproduct, using the fungal maize pathogen Ustilago maydis.
U.
maydis is already used as a unicellular biocatalyst in the production of several industrially-relevant compounds using plant biomass hydrolysates.
In this study, we demonstrate that U.
maydis can grow using untreated corn stover as its sole carbon source.
We developed a small-scale bioreactor platform to investigate U.
maydis processing of corn stover, combining online monitoring of fungal growth and metabolic activity profiles with biochemical analyses of the pre- and post-fermentation residues.
Our results reveal that U.
maydis primarily utilizes soluble sugars i.
e.
, glucose, sucrose and fructose present in corn stover, with only limited exploitation of the abundant lignocellulosic carbohydrates.
Thus, we further explored the biotechnological potential of enhancing U.
maydis´ lignocellulosic utilization.
Additive performance improvements of up to 120 % were achieved when using a maize mutant with increased biomass digestibility, co-fermentation with a commercial cellulolytic enzyme cocktail, and exploiting engineered fungal strains expressing diverse lignocellulose-degrading enzymes.
This work represents a key step towards scaling up the production of sustainable compounds from corn stover using U.
maydis and provides a tool for the detailed monitoring of the fungal processing of plant biomass substrates.
Graphical abstract.
Related Results
Monitoring corn stover processing by the fungus Ustilago maydis
Monitoring corn stover processing by the fungus Ustilago maydis
Abstract
Background
A key aspect of sustainable bioeconomy is the recirculation of renewable, agricultural waste streams as substrates for microbial production of high-val...
Rheological Properties and Microscopic Morphology Evaluation of UHMWPE-Modified Corn Stover Oil Bio-Asphalt
Rheological Properties and Microscopic Morphology Evaluation of UHMWPE-Modified Corn Stover Oil Bio-Asphalt
In order to promote the efficient utilization of bio-oil, corn stover oil and petroleum asphalt were used to prepare bio-asphalt. UHMWPE was adopted to strengthen the high-temperat...
Development and improvement of artificial diets for larvae of Diabrotica species using multidimensional design space techniques
Development and improvement of artificial diets for larvae of Diabrotica species using multidimensional design space techniques
The western corn rootworm (Coleoptera: Chrysomelidae; Diabrotica virgifera virgifera LeConte) and the northern corn rootworm (Coleoptera: Chrysomelidae; Diabrotica barberi Smith an...
Characterization of Corn Stover and Eucalyptus Sawdust for Pellet Production
Characterization of Corn Stover and Eucalyptus Sawdust for Pellet Production
Reducing the use of fossil fuels and increasing the use of renewable resources is essential in minimizing climate change. As the world progress towards using more renewable resourc...
Extrusion-Biodelignification Approach for Biomass Pretreatment
Extrusion-Biodelignification Approach for Biomass Pretreatment
This work presents a new approach for lignocellulosic biomass pretreatment. The process is a sequential combination of extrusion (Ex) and semi-solid fermentation (SSF). To assess t...
USE OF CORN GRAIN IN PRODUCTION OF FOOD PRODUCTS
USE OF CORN GRAIN IN PRODUCTION OF FOOD PRODUCTS
In Ukraine, the following basic crops are used as raw materials for the production of cereals, flour, flakes: wheat, barley, buckwheat, oats, corn, rice, millet, peas. The volume o...
Modifikasi Lanjut Alat Pemipil Jagung Semi Mekanis
Modifikasi Lanjut Alat Pemipil Jagung Semi Mekanis
Corn sheller is a tool designed to improve the results of shelled corn. Based on previous research tests, several obstacles and weaknesses were found in the tool, namely the large ...
Development and validation of microsatellite markers for Karnal bunt (Tilletia indica) and loose smut (Ustilago segetum tritici) of wheat from related fungal species
Development and validation of microsatellite markers for Karnal bunt (Tilletia indica) and loose smut (Ustilago segetum tritici) of wheat from related fungal species
AbstractSimple sequence repeats (SSRs) are preferred molecular markers because of their abundance, robustness, high reproducibility, high efficiency in detecting variation and suit...

