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Evolution of the genus Leishmania revealed by comparison of DNA and RNA polymerase gene sequences1Note: Nucleotide sequence data reported in this paper have been submitted to the GenBank™ data base with the accession numbers: POLA/RPOIILS (AF009134/AF009153, Leishmania adleri); (AF009135/NS, Leishmania aethiopica); (AF009136/AF009154, Leishmania amazonensis); (AF009137/NS, Leishmania arabica); (AF009138/AF009155, Leishmania braziliensis); (AF009139/NS, Leishmania chagasi); (AF009140/AF009156, Leishmania deanei); (AF009141/AF009157, Leishmania donovani); (AF009142/AF009158, Endotrypanum monterogeii); (AF009143/AF009159, Leishmania gymnodactyli); (AF009144/AF009160, Leishmania herreri); (AF009145/AF009161, Leishmania hertigi); (AF009146/AF009162, Leishmania hoogstraali); (AF009147/NS, Leishmania infantum); (AF009148/AF009163, Leishmania major); (AF009149/AF009164, Leishmania mexicana); (AF009150/AF009165, Leishmania panamensis); (AF009151/AF009166, Leishm! ania tarentolae); (AF009152/AF009167, Leishmania tropica).1

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Phylogenetic relationships between Leishmania, Viannia and Sauroleishmania inferred from comparison of a variable domain within the RNA polymerase II largest subunit gene

David Croan and John Ellis
Molecular and Biochemical Parasitology 79 (1) 97 (1996)
https://doi.org/10.1016/0166-6851(96)02629-1

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Transactions of the Royal Society of Tropical Medicine and Hygiene 90 (5) 498 (1996)
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Intergenic region typing (IRT): A rapid molecular approach to the characterization and evolution of Leishmania

Elisa Cupolillo, Gabriel Grimaldi, Hooman Momen and Stephen M. Beverley
Molecular and Biochemical Parasitology 73 (1-2) 145 (1995)
https://doi.org/10.1016/0166-6851(95)00108-D

Tegumentary and visceral leishmaniases in Brazil: emerging anthropozoonosis and possibilities for their control

Mauro Célio de A. Marzochi and Keyla Belízia F. Marzochi
Cadernos de Saúde Pública 10 (suppl 2) S359 (1994)
https://doi.org/10.1590/S0102-311X1994000800014