Osmotic Stress Alleviation in Saccharomyces cerevisiae for High Ethanol Fermentations with Different Wort Substrates

Author:

Douradinho Rafael1ORCID,Sica Pietro2ORCID,Tonoli Fernando1,Mattos Eduardo1,Oliveira Matheus1,Pinto Alana1,Mota Layna1,Faria Tamires1,Costa Vitória Franco1,Leite Gabriela1ORCID,Arthur Valter3,Coelho Suani4,Baptista Antonio1

Affiliation:

1. Department of Agri-Food Industry, Food and Nutrition, College of Agriculture “Luiz de Queiroz”, University of São Paulo, Padua Dias Avenue, 11, Piracicaba 13148-900, SP, Brazil

2. Department of Plant and Environmental Sciences, University of Copenhagen, Thorvaldsenvej, 40, 1821 Frederiksberg, Denmark

3. Center for Nuclear Energy in Agriculture, University of São Paulo, Centenário Avenue, 303, Piracicaba 13416-000, SP, Brazil

4. Institute of Energy and Environment, University of São Paulo, Prof. Luciano Gualberto Avenue, 1289, São Paulo 05508-900, SP, Brazil

Abstract

High-gravity fermentation, used for ethanol production from sugarcane, corn, and mixed substrates, offers several benefits. Yeast, a rapidly multiplying unicellular microorganism, can be adapted for high sugar and ethanol tolerance on a lab scale. However, different substrates can enhance fermentation efficiency. Our study consisted of two experiments. In the first, we compared simple batch feeding with a fed-batch system for yeast selection in high-gravity fermentation. We ran eight cycles with increasing initial sugar contents (50 to 300 g L−1). No significant differences were observed in the first seven cycles, but in the eighth, the fed-batch system showed lower glycerol and fructose contents and higher cell viability than the simple batch system. In the second experiment, we used the fed-batch system with 300 g L−1 from sugarcane, corn, and mixed wort. The results showed that mixed wort produced higher ethanol contents and greater fermentation efficiency compared to corn and sugarcane as substrates. In conclusion, our findings indicate that the fed-batch system is more suitable for high-gravity fermentation on a lab scale, and the combination of sugarcane juice and corn can enhance fermentation efficiency, paving the way for integrating these substrates in industrial ethanol production.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior—Brasil

Publisher

MDPI AG

Subject

General Medicine

Reference60 articles.

1. (2023, October 07). Renewable Fuel Association World Fuel Ethanol Production by Region. Available online: https://ethanolrfa.org/markets-and-statistics/annual-ethanol-production.

2. Energy-Cane and RenovaBio: Brazilian Vectors to Boost the Development of Biofuels;Grassi;Ind. Crop. Prod.,2019

3. (2019, November 10). ANP RenovaCalc, Available online: http://www.anp.gov.br/producao-de-biocombustiveis/renovabio/renovacalc.

4. Ethanol as Fuel: Energy, Carbon Dioxide Balances, and Ecological Footprint;Oliveira;Bioscience,2005

5. Ethanol for a Sustainable Energy Future;Goldemberg;Science,2007

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