Biotechnology - Molec. Studies, Novel Apps. for Imprvd. by R. Sammour

By R. Sammour

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This truly obstructs the output and success of translational investigation from pre-clinical to clinical studies (Pollock & Safer, 2001). The developing of bioinformatics tools that addresses the above problems will allow for quicker and better experiments aimed at evaluating multiple targets and drugs for further clinical development. This will be a first step to reduce the high attrition rates associated with drug development (Pollock & Safer, 2001).

Such is the case of Escherichia coli and Proteus vulgaris; these two species can coexist in a rich in lactose and urea medium. In this case, Escherichia coli degrade lactose while Proteus vulgaris degrades urea. The final products of these degradations can be used by another organism as a carbon and nitrogen source (Rheinheimer, 1992). 10. Techniques used for bacteria identification To this date, several bacterial identification methodologies are known to have contributed a great deal of information for the study of their diversity.

Masaki, T. (2006). Purification, characterization, and gene analysis of cellulose (Cel8A) from Lysobacter sp. IB-9374. Bioscience, Biotechnology, and Biochemistry 70, 2420–2428 Owen, D. J. & Ward, A. C. (1985). Transfer of transposable drug-resistance elements Tn5, Tn7, and Tn76 to Azotobacter beijerinckii: Use of plasmid RP4::Tn76 as a suicide vector. Plasmid 14, 162–166 Saikia, S. P. & Jain, V. (2007). Biological nitrogen fixation with non-legumes: An achievable target or a dogma? Current Science 92, 317–322 Terzaghi, B.

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