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Dive into the research topics where Yovita S.P. Rahardjo is active.

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Featured researches published by Yovita S.P. Rahardjo.


Journal of Bioscience and Bioengineering | 2002

Concomitant extracellular accumulation of alpha-keto acids and higher alcohols by Zygosaccharomyces rouxii

Catrinus van der Sluis; Yovita S.P. Rahardjo; Bart A. Smit; Pieter J. Kroon; Sybe Hartmans; Eelko G. Ter Schure; J. Tramper; René H. Wijffels

Alpha-keto acids are key intermediates in the formation of higher alcohols, important flavor components in soy sauce, and produced by the salt-tolerant yeast Zygosaccharomyces rouxii. Unlike most of the higher alcohols, the alpha-keto acids are usually not extracellularly accumulated by Z. rouxii when it is cultivated with ammonium as the sole nitrogen source. To facilitate extracellular accumulation of the alpha-keto acids from aspartate-derived amino acid metabolism, the amino acids valine, leucine, threonine and methionine were exogenously supplied during batch and A-star cultivations of (routants of) Z. rouxii. It was shown that all alpha-keto acids from the aspartate-derived amino acid metabolism, except alpha-ketobutyrate, could be extracellularly accumulated. In addition, it appeared from the concomitant extracellular accumulation of alpha-keto acids and higher alcohols that in Z. rouxii, valine, leucine and methionine were converted via Ehrlich pathways similar to those in Saccharomyces cerevisiae. Unlike these amino acids, threonine was converted via both the Ehrlich and amino acid biosynthetic pathways in Z. rouxii.


Letters in Applied Microbiology | 2004

Limitations of membrane cultures as a model solid-state fermentation system

Yovita S.P. Rahardjo; D. Korona; Sebastiaan Haemers; F.J. Weber; J. Tramper; Arjen Rinzema

Aims:  To examine the reliability of membrane cultures as a model solid‐state fermentation (SSF) system.


Biotechnology Advances | 2006

Modeling conversion and transport phenomena in solid-state fermentation: a review and perspectives.

Yovita S.P. Rahardjo; J. Tramper; Arjen Rinzema


Fems Yeast Research | 2002

Aspergillus oryzae in solid-state and submerged fermentations. Progress report on a multi-disciplinary project

Rob te Biesebeke; George J. G. Ruijter; Yovita S.P. Rahardjo; Marisca J Hoogschagen; Margreet Heerikhuisen; Ana Levin; Kenneth G.A. van Driel; Maarten A.I. Schutyser; Jan Dijksterhuis; Yang Zhu; F.J. Weber; Willem M. de Vos; Kees A.M.J.J. van den Hondel; Arjen Rinzema; Peter J. Punt


Biotechnology and Bioengineering | 2002

Contribution of aerial hyphae of Aspergillus oryzae to respiration in a model solid‐state fermentation system

Yovita S.P. Rahardjo; F.J. Weber; E. Paul le Comte; J. Tramper; Arjen Rinzema


Fems Yeast Research | 2002

Aspergillus oryzae in solid‐state and submerged fermentations

Rob te Biesebeke; George J. G. Ruijter; Yovita S.P. Rahardjo; Marisca J Hoogschagen; Margreet Heerikhuisen; Ana Levin; Kenneth G.A. van Driel; Maarten A.I. Schutyser; Jan Dijksterhuis; Yang Zhu; F.J. Weber; Willem M. de Vos; Kees A.M.J.J. van den Hondel; Arjen Rinzema; Peter J. Punt


Biomolecular Engineering | 2005

Effect of low oxygen concentrations on growth and alpha-amylase production of Aspergillus oryzae in model solid-state fermentation systems.

Yovita S.P. Rahardjo; Susana Sie; F.J. Weber; J. Tramper; Arjen Rinzema


Enzyme and Microbial Technology | 2005

Aerial mycelia of Aspergillus oryzae accelerate α-amylase production in a model solid-state fermentation system

Yovita S.P. Rahardjo; F.J. Weber; Sebastiaan Haemers; J. Tramper; Arjen Rinzema


Biomolecular Engineering | 2005

Significance of bed porosity, bran and specific surface area in solid-state cultivation of Aspergillus oryzae.

Yovita S.P. Rahardjo; Fenna Jolink; Sebastiaan Haemers; J. Tramper; Arjen Rinzema


Food Mycology. A multifaceted approach to fungi and food | 2007

Transport phenomena in fungal colonisation on a food matrix

Yovita S.P. Rahardjo; Arjen Rinzema

Collaboration


Dive into the Yovita S.P. Rahardjo's collaboration.

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Arjen Rinzema

Wageningen University and Research Centre

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J. Tramper

Wageningen University and Research Centre

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F.J. Weber

Wageningen University and Research Centre

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Sebastiaan Haemers

Wageningen University and Research Centre

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George J. G. Ruijter

Wageningen University and Research Centre

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Maarten A.I. Schutyser

Wageningen University and Research Centre

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Marisca J Hoogschagen

Wageningen University and Research Centre

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