Biorefinery Platform for Spathaspora passalidarum NRRL Y-27907 in the Production of Ethanol, Xylitol, and Single Cell Protein from Sugarcane Bagasse

Spathaspora passalidarum is a naturally pentose-fermenting yeast with the potential to be applied for biotransformation of sugars from lignocellulosic biomasses. Despite being mostly investigated for ethanol production from sugarcane bagasse sugars (mainly xylose and glucose), this microorganism is...

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Published inBioenergy research Vol. 15; no. 2; pp. 1169 - 1181
Main Authors Bonan, Carolina I. D. G., Tramontina, Robson, dos Santos, Monick W., Biazi, Luiz E., Soares, Lauren B., Pereira, Isabela O., Hoffmam, Zaira B., Coutouné, Natalia, Squina, Fabio M., Robl, Diogo, Ienczak, Jaciane L.
Format Journal Article
LanguageEnglish
Published New York Springer US 01.06.2022
Springer
Springer Nature B.V
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Abstract Spathaspora passalidarum is a naturally pentose-fermenting yeast with the potential to be applied for biotransformation of sugars from lignocellulosic biomasses. Despite being mostly investigated for ethanol production from sugarcane bagasse sugars (mainly xylose and glucose), this microorganism is also capable of producing high xylitol concentrations as a by-product of the ethanol fermentation. The integration of ethanol and xylitol production can improve the economic viability of the process due to the lower sale price of ethanol and the higher added-value of xylitol, a sucrose-substitute sugar with healthier properties. Considering the metabolic pathways interaction from glucose and xylose, it is essential to understand the effect of different glucose and xylose concentrations in the production of ethanol and xylitol by S. passalidarum . In this way, a simultaneous production of both products for the development of an integrated platform for food and chemical and biofuel industries can be accessed. Yeast biomass can also be recovered and applied as a protein source. Therefore, in this study, the fermentative performance of S. passalidarum was investigated in batch fermentations with different xylose and glucose concentrations, using synthetic substrate. The ATP levels and the enzymatic activities of xylose reductase (XR), xylitol dehydrogenase (XDH), and alcohol dehydrogenase (ADH) were also determined for each condition. The results indicated that low amounts of glucose (35%) were necessary to promote a higher xylitol production (10.58 ± 0.29 g/L) without losses on ethanol yield (78.99 ± 4.41%), being the most interesting condition for simultaneous formation of both products.
AbstractList Spathaspora passalidarum is a naturally pentose-fermenting yeast with the potential to be applied for biotransformation of sugars from lignocellulosic biomasses. Despite being mostly investigated for ethanol production from sugarcane bagasse sugars (mainly xylose and glucose), this microorganism is also capable of producing high xylitol concentrations as a by-product of the ethanol fermentation. The integration of ethanol and xylitol production can improve the economic viability of the process due to the lower sale price of ethanol and the higher added-value of xylitol, a sucrose-substitute sugar with healthier properties. Considering the metabolic pathways interaction from glucose and xylose, it is essential to understand the effect of different glucose and xylose concentrations in the production of ethanol and xylitol by S. passalidarum. In this way, a simultaneous production of both products for the development of an integrated platform for food and chemical and biofuel industries can be accessed. Yeast biomass can also be recovered and applied as a protein source. Therefore, in this study, the fermentative performance of S. passalidarum was investigated in batch fermentations with different xylose and glucose concentrations, using synthetic substrate. The ATP levels and the enzymatic activities of xylose reductase (XR), xylitol dehydrogenase (XDH), and alcohol dehydrogenase (ADH) were also determined for each condition. The results indicated that low amounts of glucose (35%) were necessary to promote a higher xylitol production (10.58 ± 0.29 g/L) without losses on ethanol yield (78.99 ± 4.41%), being the most interesting condition for simultaneous formation of both products.
Spathaspora passalidarum is a naturally pentose-fermenting yeast with the potential to be applied for biotransformation of sugars from lignocellulosic biomasses. Despite being mostly investigated for ethanol production from sugarcane bagasse sugars (mainly xylose and glucose), this microorganism is also capable of producing high xylitol concentrations as a by-product of the ethanol fermentation. The integration of ethanol and xylitol production can improve the economic viability of the process due to the lower sale price of ethanol and the higher added-value of xylitol, a sucrose-substitute sugar with healthier properties. Considering the metabolic pathways interaction from glucose and xylose, it is essential to understand the effect of different glucose and xylose concentrations in the production of ethanol and xylitol by S. passalidarum . In this way, a simultaneous production of both products for the development of an integrated platform for food and chemical and biofuel industries can be accessed. Yeast biomass can also be recovered and applied as a protein source. Therefore, in this study, the fermentative performance of S. passalidarum was investigated in batch fermentations with different xylose and glucose concentrations, using synthetic substrate. The ATP levels and the enzymatic activities of xylose reductase (XR), xylitol dehydrogenase (XDH), and alcohol dehydrogenase (ADH) were also determined for each condition. The results indicated that low amounts of glucose (35%) were necessary to promote a higher xylitol production (10.58 ± 0.29 g/L) without losses on ethanol yield (78.99 ± 4.41%), being the most interesting condition for simultaneous formation of both products.
Audience Academic
Author Robl, Diogo
Biazi, Luiz E.
Squina, Fabio M.
Pereira, Isabela O.
Tramontina, Robson
Soares, Lauren B.
Coutouné, Natalia
Ienczak, Jaciane L.
Bonan, Carolina I. D. G.
Hoffmam, Zaira B.
dos Santos, Monick W.
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  orcidid: 0000-0003-4087-8339
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  organization: Chemical Engineering and Food Engineering Department, Federal University of Santa Catarina – UFSC
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Keywords Yeast
Alcohol dehydrogenase
Biomass
Enzymatic activity
Biofuels
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Snippet Spathaspora passalidarum is a naturally pentose-fermenting yeast with the potential to be applied for biotransformation of sugars from lignocellulosic...
Spathaspora passalidarum is a naturally pentose-fermenting yeast with the potential to be applied for biotransformation of sugars from lignocellulosic...
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StartPage 1169
SubjectTerms Acetaldehyde
Alcohol
Alcohol dehydrogenase
Alcohol, Denatured
Bagasse
Biofuels
Biomedical and Life Sciences
Biorefineries
Biotransformation
Dehydrogenase
Dehydrogenases
Dextrose
Enzymatic activity
Enzymes
Ethanol
Fermentation
Fuel industry
Glucose
Glucose metabolism
Life Sciences
Lignocellulose
Metabolic pathways
Pentose
Plant Breeding/Biotechnology
Plant Ecology
Plant Genetics and Genomics
Plant Sciences
Production data
Proteins
Reductases
Single-cell protein
Spathaspora passalidarum
Substrates
Sucrose
Sugar
Sugarcane
Wood Science & Technology
Xylitol
Xylitol dehydrogenase
Xylose
Xylose reductase
Yeast
Yeasts
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Title Biorefinery Platform for Spathaspora passalidarum NRRL Y-27907 in the Production of Ethanol, Xylitol, and Single Cell Protein from Sugarcane Bagasse
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