Team:Edinburgh/Project/References

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Bremer H, Dennis PP. Modulation of chemical composition and other parameters of the cell by growth rate. In: Neidhardt FC, editor. Escherichia coli and Salmonella. ASM Press; Washington D.C.: 1996. pp. 1553–1569.
Bremer H, Dennis PP. Modulation of chemical composition and other parameters of the cell by growth rate. In: Neidhardt FC, editor. Escherichia coli and Salmonella. ASM Press; Washington D.C.: 1996. pp. 1553–1569.
 +
Conrado, R. J., WU, G. C., Boock, J. T., XU, H., Chen, S. Y., Lebar, T., Turnsek, J., Tomsic, N., Avbelj, M., Gaber, R., Koprivnjak, T., Mori, J., Glavnik, V., Vovk, I., Bencina, M., Hodnik, V., Anderluh, G., Dueber, J. E., Jerala, R. & Delisa, M. P. 2012. DNA-guided assembly of biosynthetic pathways promotes improved catalytic efficiency. Nucleic Acids Research, 40, 1879-1889.
Conrado, R. J., WU, G. C., Boock, J. T., XU, H., Chen, S. Y., Lebar, T., Turnsek, J., Tomsic, N., Avbelj, M., Gaber, R., Koprivnjak, T., Mori, J., Glavnik, V., Vovk, I., Bencina, M., Hodnik, V., Anderluh, G., Dueber, J. E., Jerala, R. & Delisa, M. P. 2012. DNA-guided assembly of biosynthetic pathways promotes improved catalytic efficiency. Nucleic Acids Research, 40, 1879-1889.

Latest revision as of 01:32, 5 October 2013

Reference List

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Bollenbach, T., Quan, S., Chait, R., and Kishony, R. (2009). Non-optimal microbial response to antibiotics underlies suppressive drug interactions. Cell 139, 707-718.


Bremer H, Dennis PP. Modulation of chemical composition and other parameters of the cell by growth rate. In: Neidhardt FC, editor. Escherichia coli and Salmonella. ASM Press; Washington D.C.: 1996. pp. 1553–1569.


Conrado, R. J., WU, G. C., Boock, J. T., XU, H., Chen, S. Y., Lebar, T., Turnsek, J., Tomsic, N., Avbelj, M., Gaber, R., Koprivnjak, T., Mori, J., Glavnik, V., Vovk, I., Bencina, M., Hodnik, V., Anderluh, G., Dueber, J. E., Jerala, R. & Delisa, M. P. 2012. DNA-guided assembly of biosynthetic pathways promotes improved catalytic efficiency. Nucleic Acids Research, 40, 1879-1889.


Crescenzi G., Norris M. RO/EDI: The Preferred Water Purification Technology for Food and Beverage Laboratories. URL: http://www.labcompare.com/10-Featured-Articles/18907-RO-EDI-The-Preferred-Water-Purification-Technology-for-Food-and-Beverage-Laboratories/


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Karr, J.R., Sanghvi, J.C., Macklin, D.N., Gutschow, M.V., Jacobs, J.M., Bolival, B., Assad-Garcia, N., Glass, J.I., & Covert, M.W. (2012). A whole-cell computational model predicts phenotype from genotype Cell, 150, 389-401 DOI: 10.1016/j.cell.2012.05.044


Pohl, E., Haller, J., Mijovilovich, A., Meyer-Klaucke, W., Garman, E. and Vasil, M. (2003) Architecture of a protein central to iron homeostasis: crystal structure and spectroscopic analysis of the ferric uptake regulator. Mol. Micr. 47 (4), 903-915.


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Tripathi, D., Tripathi, S., Tripathi, B. 2011. Implications of Secondary Treated Distillery Effluent Irrigation on Soil Cellulase and Urease Activities. Journal of Environmental Protection 2. 655- 661


Vijayakumari, J., Aravindan, R. & Viruthagiri, T. 2008. Recent trends in the production, purification and application of lactic acid. Chemical and Biochemical Engineering Quarterly, 22, 245-264.


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Whitaker, W. R., Davis, S. A., Arkin, A. P. & Dueber, J. E. 2012. Engineering robust control of two-component system phosphotransfer using modular scaffolds. Proceedings of the National Academy of Sciences of the United States of America, 109, 18090-18095.


Winkelman J. T., Blair K. M., Kearns D. B. (2009) RemA (YlzA) and RemB (YaaB) Regulate Extracellular Matrix Operon Expression and Biofilm Formation in Bacillus subtilis, J. Bacteriol., vol 191 no. 12, June, pp. 3981-3991.


World Health Organization. 2006. Guideline for drinking-water quality.