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10:10 100. Comprehensive bioconversion of algae to liquid fuels and intermediate value products. R.W.<br />

Davis, W. Wu, M. Tran-Gyamfi, T. Lane, R. Pate, B. Wu<br />

10:30 101. Synthetic methylotrophy: Engineering Escherichia coli to metabolize methanol for growth and<br />

metabolite production. W.B. Whitaker, R.K. Bennett, M. Palmer, J. Gonzalez, M.R. Antoniewicz, E.T.<br />

Papoutsakis<br />

10:50 102. Deciphering the regulation of biomass degradation by anaerobic fungi. J. Henske, K. Solomon,<br />

M.K. Theodorou, I. Grigoriev, M.A. O'Malley<br />

11:10 103. Engineering Ralstonia eutropha to produce fuels and chemicals from diverse biomass-derived<br />

substrates. S. Singer<br />

Westin San Diego<br />

Crystal I<br />

Computationally Enabled Biotechnology at the Molecular, Cellular & Process Scales<br />

Bio-Design & Systems Analyses at the Cellular Scale<br />

Section E<br />

J. Reed, D. J. Roush, Organizers<br />

A. P. Burgard, J. Varner, Organizers, Presiding<br />

8:30 104. Genome-scale models can compute proteome allocation. B.O. Palsson<br />

9:10 105. Development and analysis of precursor production strains for chemical production. X. Zhang, C.<br />

Tervo, J. Reed<br />

9:30 106. Detection of novel metabolites and enzyme functions through in silico expansion of metabolic<br />

models. J. Jeffryes, C. Lerma-Ortiz, A.J. Cooper, T. Niehaus, A. Thamm, O. Frelin, T. Kind, L.J. Broadbelt,<br />

O. Fiehn, A. Hanson, K.E. Tyo, C. Henry<br />

9:50 Intermission.<br />

10:10 107. iSCHRUNK: In silico approach to characterization and reduction of uncertainty in the kinetic<br />

models of genome-scale metabolic networks. S. Andreozzi, L. Miskovic, V. Hatzimanikatis<br />

10:30 108. System-level analysis of phototrophic metabolism of aromatic compounds in Rhodopseudomonas<br />

palustris. A. Navid, Y. Jiao, J. Pett-ridge<br />

10:50 109. Modeling of cell-free glycoprotein production in Escherichia coli. N. Horvath, J. Wayman, M.C.<br />

Jewett, M.P. DeLisa, J. Varner<br />

11:10 110. Enabling selection in directed evolution of enzymes via cellular engineering. N. Hassanpour, E.<br />

Ullah, M. Yousofshahi, N.U. Nair, S. Hassoun<br />

Westin San Diego<br />

Pearl Room<br />

Section F

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