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Figures and Tables

From the following article:

Deciphering the evolution and metabolism of an anammox bacterium from a community genome

Marc Strous, Eric Pelletier, Sophie Mangenot, Thomas Rattei, Angelika Lehner, Michael W. Taylor, Matthias Horn, Holger Daims, Delphine Bartol-Mavel, Patrick Wincker, Valérie Barbe, Nuria Fonknechten, David Vallenet, Béatrice Segurens, Chantal Schenowitz-Truong, Claudine Médigue, Astrid Collingro, Berend Snel, Bas E. Dutilh, Huub J. M. Op den Camp, Chris van der Drift, Irina Cirpus, Katinka T. van de Pas-Schoonen, Harry R. Harhangi, Laura van Niftrik, Markus Schmid, Jan Keltjens, Jack van de Vossenberg, Boran Kartal, Harald Meier, Dmitrij Frishman, Martijn A. Huynen, Hans-Werner Mewes, Jean Weissenbach, Mike S. M. Jetten, Michael Wagner and Denis Le Paslier

Nature 440, 790-794 (6 April 2006)

doi:10.1038/nature04647

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Figure 1 - Unfortunately we are unable to provide accessible alternative text for this. If you require assistance to access this image, or to obtain a text description, please contact npg@nature.com

Figure 1

Metabolic pathways of K. stuttgartiensis inferred from the present genomic data, previous experimental evidence and thermodynamic calculations.

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Figure 2 - Unfortunately we are unable to provide accessible alternative text for this. If you require assistance to access this image, or to obtain a text description, please contact npg@nature.com

Figure 2

The operons representing the best candidates to encode hydrazine hydrolase (hh) and hydrazine dehydrogenase (hd).

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Figure 3 - Unfortunately we are unable to provide accessible alternative text for this. If you require assistance to access this image, or to obtain a text description, please contact npg@nature.com

Figure 3

The largest of four operons encoding fatty acid biosynthesis in K. stuttgartiensis (ORFs kuste3352kuste3335).

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Figure 4

Unrooted phylogenetic consensus tree based on 49 concatenated protein sequences, showing the phylogenetic positioning of K. stuttgartiensis within the Bacteria.

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