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2
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Genome-enabled transcriptomics reveals archaeal populations that drive nitrifi{dotless}cation in a deep-sea hydrothermal plume
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Baker, B. J., R. A. Lesniewski, and G. J. Dick. 2012. Genome-enabled transcriptomics reveals archaeal populations that drive nitrifi{dotless}cation in a deep-sea hydrothermal plume. ISME J. 6:2269-2279.
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Lineages of acidophilic Archaea revealed by community genomic analysis
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Baker, B. J., G. W. Tyson, R. I. Webb J. Flanagan, P. Hugenholtz, and J. F. Banfi{dotless}eld. 2006. Lineages of acidophilic Archaea revealed by community genomic analysis. Science 314:1933-1935.
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Community transcriptomic assembly reveals novel and low abundance microbes contribute to carbon and nitrogen cycling in the deep sea
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in press
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Baker, B. J., C. Taylor, S. Jain, C. S. Shiek, A. Bhasi, J. D. Cavalcoli, and G. J. Dick. 2012. Community transcriptomic assembly reveals novel and low abundance microbes contribute to carbon and nitrogen cycling in the deep sea. ISME J., in press.
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5
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Community proteomics of a natural microbial biofi{dotless}lm
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Ram, R. J., N. VerBerkmoes, M. P. Thelen, G.W. Tyson, B. J. Baker, M. Shah, R. C. Blake II, R. Hettich, and J. F. Banfi{dotless}eld. 2005. Community proteomics of a natural microbial biofi{dotless}lm. Science 308:1915-1920.
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7
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Community structure and metabolism through reconstruction of microbial genomes from the environment
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Tyson, G. W., J. Chapman, P. Hugenholtz, E. E. Allen, R. J. Ram, P. M. Richardson, V. V. Solovyev, E. M. Rubin, D. S. Rokhsar, and J. F. Banfi{dotless}eld. 2004. Community structure and metabolism through reconstruction of microbial genomes from the environment. Nature 428:37-43.
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8
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Wrighton, K. C., B. C. Thomas, I. Sharon, C. S. Miller, C. J. Castelle, N. C. VerBerkmoes, M. J. Wilkins, R. L. Hettich, M. S. Lipton, K. H. Williams, P. E. Long, and J. F. Banfi{dotless}eld. 2012. Fermentation, hydrogen, and sulfur metabolisms in multiple uncultivated bacterial phyla. Science 337:1661-1665.
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