The impact of refugees on leishmaniasis in Turkey: a new Syrian/Turkish Leishmania tropica population structure described by multilocus microsatellite typing (MLMT)

Author:

Karakuş MehmetORCID,Çizmeci Zeynep,Karabela Şemsi Nur,Erdoğan Bilgen,Güleç Nuray

Publisher

Springer Science and Business Media LLC

Subject

Infectious Diseases,Insect Science,General Veterinary,General Medicine,Parasitology

Reference32 articles.

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2. Alvar J, Vélez ID, Bern C, Herrero M, Desjeux P, Cano J, Jannin J, den Boer M (2012) WHO Leishmaniasis Control Team. Leishmaniasis worldwide and global estimates of its incidence. PLoSOne;7(5):e35671

3. Azmi K, Krayter L, Nasereddin A, Ereqat S, Schnur LF, Al-Jawabreh A, Abdeen Z, Schönian G (2017) Increased prevalence of human cutaneous leishmaniasis in Israel and the Palestinian Authority caused by the recent emergence of a population of genetically similar strains of Leishmania tropica. Infect Genet Evol 50:102–109

4. Beyhan YE, Karakus M, Karagoz A, Mungan M, Ozkan AT, Hokelek M (2017) Detection and identification of cutaneous leishmaniasis isolates by culture, polymerase chain reaction and sequence analyses in Syrian and Central Anatolia patients. Saudi Med J 38(9):968–971

5. Bussotti G, Gouzelou E, Côrtes Boité M, Kherachi I, Harrat Z, Eddaikra N, Mottram JC, Antoniou M, Christodoulou V, Bali A, Guerfali FZ, Laouini D, Mukhtar M, Dumetz F, Dujardin JC, Smirlis D, Lechat P, Pescher P, El Hamouchi A, Lemrani M, Chicharro C, Llanes-Acevedo IP, Botana L, Cruz I, Moreno J, Jeddi F, Aoun K, Bouratbine A, Cupolillo E, Späth GF (2018) Leishmania genome dynamics during environmental adaptation reveal strain-specific differences in gene copy number variation, karyotype instability, and telomeric amplification. MBio. 9(6):e01399–e01318

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