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Global analysis of biosynthetic gene clusters reveals vast potential of secondary metabolite production in Penicillium species., , , , , , , , and . Nature microbiology, (Apr 3, 2017)Development of fungal cell factories for the production of secondary metabolites: Linking genomics and metabolism., and . Synthetic and systems biotechnology, 2 (1): 5--12 (March 2017)A community-driven global reconstruction of human metabolism, , , , , , , , , and 36 other author(s). Nature Biotechnology, 31 (5): 419--425 (Mar 3, 2013)Opportunities for yeast metabolic engineering: Lessons from synthetic biology, , and . Biotechnology Journal, 6 (3): 262--276 (Mar 16, 2011)Prospects for systems biology and modeling of the gut microbiome, , , and . Trends in Biotechnology, (2011)Editorial: Industrial systems biology.. Biotechnology journal, (March 2011)Prospects of yeast systems biology for human health: integrating lipid, protein and energy metabolism, , , and . FEMS Yeast Research, (Sep 28, 2010)Genome-scale reconstruction of the Saccharomyces cerevisiae metabolic network., , , , and . Genome research, 13 (2): 244--253 (Feb 1, 2003)A systems-level approach for metabolic engineering of yeast cell factories., , , and . FEMS yeast research, 12 (2): 228--248 (Mar 22, 2012)Linking Genotype and Phenotype of Saccharomyces cerevisiae Strains Reveals Metabolic Engineering Targets and Leads to Triterpene Hyper-Producers., , , , , , , , and . PloS one, (2011)