AQUATIC-PRODUCT FERMENTATION TECHNOLOGY |
This course discusses the principles and implementation of fermentation technology in aquatic products consisting of: types and models of fermentation, the fermentation products, and the functionality of aquatic fermentation products. |
REFERENCES: |
1 |
Ezeji, T.C., Qureshi, N. and Blaschek, H.P., 2004. Butanol fermentation research: upstream and downstream manipulations. The chemical record, 4(5), pp.305-314. |
2 |
Wolfe, B.E. and Dutton, R.J., 2015. Fermented foods as experimentally tractable microbial ecosystems. Cell, 161(1), pp.49-55. |
3 |
Singh, V., Haque, S., Niwas, R., Srivastava, A., Pasupuleti, M. and Tripathi, C.K.M., 2017. Strategies for fermentation medium optimization: an in-depth review. Frontiers in microbiology, 7, p.2087. |
4 |
Palma, J.M., Nejjam, I., Serrano, R., Jiménez, E., Jiménez, I., Martín-García, A.I., Yáñez-Ruiz, D.R. and Belanche, A., 2017. In vitro optimization of the usage of ruminal microbiota as a probiotic. 2. Effect of inoculum, diet and preservation method. XVII Jornadas sobre Producción Animal, Zaragoza, España, 30 y 31 de mayo de 2017, pp.264-266. |
5 |
Connelly, S., Shin, S.G., Dillon, R.J., Ijaz, U.Z., Quince, C., Sloan, W.T. and Collins, G., 2017. Bioreactor scalability: laboratory-scale bioreactor design influences performance, ecology, and community physiology in expanded granular sludge bed bioreactors. Frontiers in microbiology, 8, p.664. |
6 |
Papapetridis, I., Goudriaan, M., Vitali, M.V., Keijzer, N.A., Broek, M., Maris, A.J. and Pronk, J.T., 2018. Optimizing anaerobic growth rate and fermentation kinetics in Saccharomyces cerevisiae strains expressing Calvin-cycle enzymes for improved ethanol yield. Biotechnology for biofuels, 11(1), p.17. |
7 |
Gungormusler-Yilmaz, M., Cicek, N., Levin, D.B. and Azbar, N., 2016. Cell immobilization for microbial production of 1, 3-propanediol. Critical reviews in biotechnology, 36(3), pp.482-494. |
8 |
Cardoso, J.G., Zeidan, A.A., Jensen, K., Sonnenschein, N., Neves, A.R. and Herrgård, M.J., 2018. MARSI: metabolite analogues for rational strain improvement. Bioinformatics, 1, p.3. |
9 |
Triwahyuni, E., Hariyanti, S., Dahnum, D., Nurdin, M. and Abimanyu, H., 2015. Optimization of saccharification and fermentation process in bioethanol production from oil palm fronds. procedia Chemistry, 16, pp.141-148. |
10 |
Krawczyk, J.M., Haefner, S., Schröder, H., Costa, E.D., Zelder, O., Von Abendroth, G., Wittmann, C., Stellmacher, R. and Becker, J., BASF SE, 2016. Modified microorganism with improved biomass separation behaviour. U.S. Patent Application 15/116,600. |
11 |
Kirakosyan, A., Noon, K.R., McKenzie, M., Cseke, L.J. and Kaufman, P.B., 2016. Isolation and Purification of Metabolites. In Handbook of Molecular and Cellular Methods in Biology and Medicine (pp. 386-399). CRC Press. |
12 |
Jones, J.A., Vernacchio, V.R., Sinkoe, A.L., Collins, S.M., Ibrahim, M.H., Lachance, D.M., Hahn, J. and Koffas, M.A., 2016. Experimental and computational optimization of an Escherichia coli co-culture for the efficient production of flavonoids. Metabolic engineering, 35, pp.55-63. |