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Felipe Senne de Oliveira Lino

Showing results (1-10 of 8) with videos related to

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Biotechnology for Biofuels|August 22, 2018
A synthetic medium to simulate sugarcane molassesFelipe Senne de Oliveira Lino, Thiago Olitta Basso, Morten Otto Alexander Sommer
Nature Communications|March 9, 2021
Complex yeast-bacteria interactions affect the yield of industrial ethanol fermentationFelipe Senne de Oliveira Lino, Djordje Bajic, Jean Celestin Charles Vila, et al.
Applied Microbiology and Biotechnology|November 28, 2017
Correction to: Industrial antifoam agents impair ethanol fermentation and induce stress responses in yeast cellsJens Christian Nielsen, Felipe Senne de Oliveira Lino, Thomas Gundelund Rasmussen, et al.
Applied Microbiology and Biotechnology|October 11, 2017
Industrial antifoam agents impair ethanol fermentation and induce stress responses in yeast cellsJens Christian Nielsen, Felipe Senne de Oliveira Lino, Thomas Gundelund Rasmussen, et al.
Scientific Reports|June 29, 2023
Physiology of Saccharomyces cerevisiae during growth on industrial sugar cane molasses can be reproduced in a tailor-made defined synthetic mediumKevy Pontes Eliodório, Gabriel Caetano de Gois E Cunha, Felipe Senne de Oliveira Lino, et al.
Nature Communications|June 22, 2024
Strain dynamics of contaminating bacteria modulate the yield of ethanol biorefineriesFelipe Senne de Oliveira Lino, Shilpa Garg, Simone S Li, et al.
The ISME Journal|December 16, 2020
Metabolic modeling predicts specific gut bacteria as key determinants for Candida albicans colonization levelsMohammad H Mirhakkak, Sascha Schäuble, Tilman E Klassert, et al.
Microbiome|September 13, 2020
Antibiotics create a shift from mutualism to competition in human gut communities with a longer-lasting impact on fungi than bacteriaBastian Seelbinder, Jiarui Chen, Sascha Brunke, et al.
Pageof 1

Showing results (1-10 of 8) with videos related to

Sort By:
Pageof 1
Biotechnology for Biofuels|August 22, 2018
A synthetic medium to simulate sugarcane molassesFelipe Senne de Oliveira Lino, Thiago Olitta Basso, Morten Otto Alexander Sommer
Nature Communications|March 9, 2021
Complex yeast-bacteria interactions affect the yield of industrial ethanol fermentationFelipe Senne de Oliveira Lino, Djordje Bajic, Jean Celestin Charles Vila, et al.
Applied Microbiology and Biotechnology|November 28, 2017
Correction to: Industrial antifoam agents impair ethanol fermentation and induce stress responses in yeast cellsJens Christian Nielsen, Felipe Senne de Oliveira Lino, Thomas Gundelund Rasmussen, et al.
Applied Microbiology and Biotechnology|October 11, 2017
Industrial antifoam agents impair ethanol fermentation and induce stress responses in yeast cellsJens Christian Nielsen, Felipe Senne de Oliveira Lino, Thomas Gundelund Rasmussen, et al.
Scientific Reports|June 29, 2023
Physiology of Saccharomyces cerevisiae during growth on industrial sugar cane molasses can be reproduced in a tailor-made defined synthetic mediumKevy Pontes Eliodório, Gabriel Caetano de Gois E Cunha, Felipe Senne de Oliveira Lino, et al.
Nature Communications|June 22, 2024
Strain dynamics of contaminating bacteria modulate the yield of ethanol biorefineriesFelipe Senne de Oliveira Lino, Shilpa Garg, Simone S Li, et al.
The ISME Journal|December 16, 2020
Metabolic modeling predicts specific gut bacteria as key determinants for Candida albicans colonization levelsMohammad H Mirhakkak, Sascha Schäuble, Tilman E Klassert, et al.
Microbiome|September 13, 2020
Antibiotics create a shift from mutualism to competition in human gut communities with a longer-lasting impact on fungi than bacteriaBastian Seelbinder, Jiarui Chen, Sascha Brunke, et al.
Pageof 1