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Truly Sustainable Renewable Future
April 17, 2012 – 10:42 am | No Comment

Advanced Biofuels are high-energy liquid transportation fuels derived from: low nutrient input/high per acre yield crops; agricultural or forestry waste; or other sustainable biomass feedstocks including algae.  The key word is “sustainable.”
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Home » Abu Dhabi, Algae/Other Aquatic Organisms, California, Feedstock, Iceland, Massachusetts, New York, R & D Focus, Virginia

Metabolic Network Reconstruction of Chlamydomonas Offers Insight into Light-Driven Algal Metabolism

Submitted by on August 9, 2011 – 10:46 amNo Comment

by Roger L Chang, Lila Ghamsari, Ani Manichaikul, Erik F Y Hom, Santhanam Balaji, Weiqi Fu, Yun Shen, Tong Hao, Bernhard Ø Palsson, Kourosh Salehi-Ashtiani & Jason A Papin   (Molecular Systems Biology)  Metabolic network reconstruction encompasses existing knowledge about an organism’s metabolism and genome annotation, providing a platform for omics data analysis and phenotype prediction. The model algaChlamydomonas reinhardtii is employed to study diverse biological processes from photosynthesis to phototaxis. Recent heightened interest in this species results from an international movement to develop algal biofuels. Integrating biological and optical data, we reconstructed a genome-scale metabolic network for this alga and devised a novel light-modeling approach that enables quantitative growth prediction for a given light source, resolving wavelength and photon flux. We experimentally verified transcripts accounted for in the network and physiologically validated model function through simulation and generation of new experimental growth data, providing high confidence in network contents and predictive applications. The network offers insight into algal metabolism and potential for genetic engineering and efficient light source design, a pioneering resource for studying light-driven metabolism and quantitative systems biology.   READ MORE

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