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Bibliografía

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    [1] Proyecto de 1000 genomas.

    [2] et al Ciccarelli, Francesca. Hacia la reconstrucción automática de un árbol de la vida altamente resuelto. Ciencia, 311, 2006.

    [3] Tal Dagan y William Martin. El árbol del uno por ciento. Biología del Genoma, Nov 2006.

    [4] Ochman Howard DaubinVincent, Moran Nancy A. La filogenética y la cohesión de los genomas bacterianos.

    Ciencia, 301, 2003.

    [5] A.J. Enright, S. Van Dongen y C. A. Ouzounis. Un algoritmo eciente para la detección a gran escala de

    familes de proteínas. Investigación de ácidos nucleicos, 30 (7) :1575—1584, Abr 2002.

    [6] Stephanie Guindon y Olivier Gascuel. Un algoritmo simple, rápido y preciso para estimar grandes

    filogenias por máxima verosimilitud. Biología de Sistemas, 52 (5) :696—704, 2003.

    [7] Sanderson MJ. r8s: Inferir tasas absolutas de evolución molecular y tiempos de divergencia en ausencia

    de un reloj molecular. Bioinformática, 19 (2) :301—302, ene 2003.

    [8] R. Thane Papke, Olga Zhaxybayeva, Edward J Fiel, Katrin Sommerfeld, Denise Muise y W. Ford

    Doolittle. Búsqueda de especies en haloarchaea. PNAS, 104 (35) :14092—14097, 2007.

    [9] Pere Puigbo, Yuri I Wolf y Eugenio V Koonin. Búsqueda de un 'árbol de la vida' en la espesura del

    bosque filogenético. Revista de Biología, 8 (59), julio de 2009.

    [10] Sagi Snir, Yuri I Wolf y Eugene V Koonin. Marcapasos universales de la evolución del genoma. PLoS

    biología tacional, 8 (11), 2012.

    [11] Douglas L Theobald. Una prueba formal de la teoría de la ascendencia común universal. Naturaleza, 465:219 —222, 2010.


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