Research Library
Discover insights from thousands of peer-reviewed papers on microbial electrochemical systems
Discover insights from thousands of peer-reviewed papers on microbial electrochemical systems
Obid Tursunov, Zaid Tilyabaev
Journal of the Energy Institute • 2019
Samuel K. Moore
IEEE Spectrum • 2019
Lin Yang, Liyong Tong
Carbon • 2016
Mahdiye Poorsargol, Zohreh Razmara, Mir Masumeh Amiri
Adsorption • 2020
Supriya Saha, Alister J. Page
Carbon • 2016
Ievgen Mazurenko, Mathieu Etienne, Gregory Francius et al.
Carbon • 2016
A. Anil Kumar, Ramesh Sundaram
Carbon • 2015
Unknown Author
International Journal of Science and Research (IJSR) • 2017
Liam Brownlie, Joseph Shapter
Carbon • 2017
Takuto TAGUCHI, Yuhki TOKU, Yasuyuki MORITA et al.
The Proceedings of Mechanical Engineering Congress, Japan • 2017
Jian Guo, Yi He, Shanling Wang et al.
Carbon • 2016
Toshihiko Fujimori
Carbon • 2016
Menghe Miao
Carbon • 2015
Gopukumar ST
Nanomedicine & Nanotechnology Open Access • 2019
Pyry-Mikko Hannula, Antti Peltonen, Jari Aromaa et al.
Carbon • 2016
Kwan Han Yoon, Young Sil Lee
Carbon Letters • 2019
Yoann Dini, Jérôme Faure-Vincent, Jean Dijon
Carbon • 2019
Jhansi L. Varanasi, Sanjay Prasad, Harshita Singh et al.
Fuel • 2020
RM Marçal, R Santos, MFC Santos et al.
Planta Medica • 2012
C Pessoa, MFC dos Santos, RGS Berlinck et al.
Planta Medica • 2013
RSBLC CRUZ, MFC CAMINHA, M BATISTA FILHO
Revista Brasileira de Ciências da Saúde • 2014
Jorge F.B. Pereira, Eduardo J. Gudiña, Rita Costa et al.
Fuel • 2013
Hugo G Menzella
Microbial Cell Factories • 2010
Peter Rohe, Deepak Venkanna, Britta Kleine et al.
Microbial Cell Factories • 2011
High-throughput methods are widely-used for strain screening effectively resulting in binary information regarding high or low productivity. Nevertheless achieving quantitative and scalable parameters for fast bioprocess development is much more challenging, especially for heterologous protein production. Here, the nature of the foreign protein makes it impossible to predict the, e.g. best expression construct, secretion signal peptide, inductor concentration, induction time, temperature and substrate feed rate in fed-batch operation to name only a few. Therefore, a high number of systematic experiments are necessary to elucidate the best conditions for heterologous expression of each new protein of interest.
Unknown Author
Fuel Cells Bulletin • 2015
Unknown Author
Fuel Cells Bulletin • 2011
Unknown Author
Fuel Cells Bulletin • 2014
Unknown Author
Fuel Cells Bulletin • 2011
Unknown Author
Fuel Cells Bulletin • 2014
Unknown Author
Fuel Cells Bulletin • 2011
Unknown Author
Fuel Cells Bulletin • 2011
Sridhar V Kanuri
Fuel Cells Bulletin • 2012
Unknown Author
Fuel Cells Bulletin • 2013
S. Eickhoff, C. Zhang, T. Cui
Journal of Power Sources • 2013
Unknown Author
Fuel Cells Bulletin • 2011
Pareshkumar Patel, Gerard H. Markx
Enzyme and Microbial Technology • 2008
M Isabel González-Siso, Ana García-Leiro, Nuria Tarrío et al.
Microbial Cell Factories • 2008
A lot of studies have been carried out on Saccharomyces cerevisiae, an yeast with a predominant fermentative metabolism under aerobic conditions, which allows exploring the complex response induced by oxidative stress. S. cerevisiae is considered a eukaryote model for these studies. We propose Kluyveromyces lactis as a good alternative model to analyse variants in the oxidative stress response, since the respiratory metabolism in this yeast is predominant under aerobic conditions and it shows other important differences with S. cerevisiae in catabolic repression and carbohydrate utilization. The knowledge of oxidative stress response in K. lactis is still a developing field. In this article, we summarize the state of the art derived from experimental approaches and we provide a global vision on the characteristics of the putative K. lactis components of the oxidative stress response pathway, inferred from their sequence homology with the S. cerevisiae counterparts. Since K. lactis is also a well-established alternative host for industrial production of native enzymes and heterologous proteins, relevant differences in the oxidative stress response pathway and their potential in biotechnological uses of this yeast are also reviewed.
Yiran Wang, Y-H Percival Zhang
Microbial Cell Factories • 2008
Rahul Kumar, Kazuyuki Shimizu
Microbial Cell Factories • 2009