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References
Part of the results of molecular characterisation of Mycobacterium bovis, M. caprae and M. tuberculosis isolates of animal origin which are included in the mycoDB database was published by several Spanish research groups in the following papers:


Aranaz, A., E. Liébana, X. Pickering, C. Novoa, A. Mateos, and L. Domínguez. 1996. Use of polymerase chain reaction in the diagnosis of tuberculosis in cats and dogs. Vet.Rec. 138:276-280

Liébana, E., A. Aranaz, L. Domínguez, A. Mateos, O. González-Llamazares, E. F. Rodríguez-Ferri, M. Domingo, D. Vidal, and D. Cousins. 1997. The insertion element IS6110 is a useful tool for DNA fingerprinting of Mycobacterium bovis isolates from cattle and goats in Spain. Vet.Microbiol. 54:223-233

Aranaz, A., L. de Juan, N. Montero, C. Sánchez, M. Galka, C. Delso, J. Álvarez, B. Romero, J. Bezos, A. I. Vela, V. Briones, A. Mateos, and L. Domínguez. 2004. Bovine tuberculosis (Mycobacterium bovis) in wildlife in Spain. J.Clin.Microbiol. 42:2602-2608

Aranaz, A., J. L. De, J. Bezos, J. Álvarez, B. Romero, F. Lozano, J. L. Paramio, J. López-Sánchez, A. Mateos, and L. Domínguez. 2006. Assessment of diagnostic tools for eradication of bovine tuberculosis in cattle co-infected with Mycobacterium bovis and M. avium subsp. paratuberculosis. Vet.Res. 37:593-606

Romero, B., A. Aranaz, J. Bezos, J. Álvarez, J. L. de Juan, M. Tariq, A. Mateos, E. Gómez-Mampaso, and L. Domínguez. 2007. Drug susceptibility of Spanish Mycobacterium tuberculosis complex isolates from animals. Tuberculosis.(Edinb.) 87:565-571

Romero, B., A. Aranaz, A. Sandoval, J. Álvarez, L. de Juan, J. Bezos, C. Sánchez, M. Galka, P. Fernández, A. Mateos, and L. Domínguez. 2008. Persistence and molecular evolution of Mycobacterium bovis population from cattle and wildlife in Doñana National Park revealed by genotype variation. Vet.Microbiol. 132:87-95

García-Bocanegra, I., I. Barranco, I. M. Rodríguez-Gómez, B. Pérez, J. Gómez-Laguna, S. Rodríguez, E. Ruiz-Villamayor, and A. Perea. 2010. Tuberculosis in alpacas (Lama pacos) caused by Mycobacterium bovis. J.Clin.Microbiol. 48:1960-1964

Rodríguez, S., B. Romero, J. Bezos, L. de Juan, J. Álvarez, E. Castellanos, N. Moya, F. Lozano, S. González, J. L. Sáez-Llorente, A. Mateos, L. Domínguez, and A. Aranaz. 2010. High spoligotype diversity within a Mycobacterium bovis population: Clues to understanding the demography of the pathogen in Europe. Vet.Microbiol. 141:89-95

Rodríguez, S., J. Bezos, B. Romero, de Juan L., J. Álvarez, E. Castellanos, N. Moya, F. Lozano, M. T. Javed, J. L. Sáez-Llorente, E. Liébana, A. Mateos, L. Domínguez, and A. Aranaz. 2011. Mycobacterium caprae Infection in Livestock and Wildlife, Spain. Emerg.Infect.Dis. 17:532-535.

Domingo M, Gil O, Serrano E, Guirado E, Nofrarias M, Grassa M, Cáceres N, Pérez B, Vilaplana C, Cardona PJ. 2009. Effectiveness and safety of a treatment regimen based on isoniazid plus vaccination with Mycobacterium tuberculosis cells' fragments: field-study with naturally Mycobacterium caprae-infected goats. Scand J Immunol. 2009 Jun;69(6):500-7

García-Bocanegra, I., I. Barranco, I. M. Rodríguez-Gómez, B. Pérez, J. Gómez-Laguna, S. Rodríguez, E. Ruiz-Villamayor, and A. Perea. 2010. Tuberculosis in alpacas (Lama pacos) caused by Mycobacterium bovis. J.Clin.Microbiol. 48:1960-1964.

Gortázar, C., M. J. Torres, P. Acevedo, J. Aznar, J. J. Negro, F. J. de la, and J. Vicente. 2011. Fine-tuning the space, time, and host distribution of mycobacteria in wildlife. BMC.Microbiol. 11:27.


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