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2. Persistent T cell unresponsiveness associated with chronic visceral leishmaniasis in HIV-coinfected patients

3. Genome Analysis of Triploid Hybrid Leishmania Parasite from the Neotropics

4. Ecological divergence and hybridization of Neotropical Leishmania parasites

8. Genome diversity of Leishmania aethiopica

10. Parasite hybridization promotes spreading of endosymbiotic viruses

12. Genome diversity ofLeishmania aethiopica

13. Persistent T cell unresponsiveness associated with chronic visceral leishmaniasis in HIV-coinfected patients

16. Persistent T cell unresponsiveness associated with chronic VL disease in VL-HIV patients

17. Genomic and Phenotypic Characterization of Experimentally Selected Resistant Leishmania donovani Reveals a Role for Dynamin-1-Like Protein in the Mechanism of Resistance to a Novel Antileishmanial Compound

19. High throughput single-cell genome sequencing gives insights into the generation and evolution of mosaic aneuploidy inLeishmania donovani

21. High throughput single-cell genome sequencing gives insights into the generation and evolution of mosaic aneuploidy in Leishmania donovani

23. Genomic and phenotypic characterization of experimentally selected resistant Leishmania donovani reveals a role for dynamin-1 like protein in the mechanism of resistance to a novel anti-leishmanial compound

26. Exploring the evolution and adaptive role of mosaic aneuploidy in a clonal Leishmania donovani population using high throughput single cell genome sequencing

28. Genomes of Leishmania parasites directly sequenced from patients with visceral leishmaniasis in the Indian subcontinent

29. Ecological divergence and hybridization of Neotropical Leishmania parasites

33. Integrated genomic and metabolomic profiling of ISC1, an emerging Leishmania donovani population in the Indian subcontinent

34. Macromolecular biosynthetic parameters and metabolic profile in different life stages of Leishmania braziliensis: Amastigotes as a functionally less active stage

36. Evolutionary genomics of epidemic visceral leishmaniasis in the Indian subcontinent

37. Author response: Evolutionary genomics of epidemic visceral leishmaniasis in the Indian subcontinent

38. Association of the Endobiont Double-Stranded RNA Virus LRV1 With Treatment Failure for Human Leishmaniasis Caused byLeishmania braziliensisin Peru and Bolivia

43. Genome-wide SNP and microsatellite variation illuminate population-level epidemiology in the Leishmania donovani species complex

44. Multilocus genotyping reveals a polyphyletic pattern among naturally antimony-resistant Leishmania braziliensis isolates from Peru

46. Whole genome sequencing of multiple Leishmania donovani clinical isolates provides insights into population structure and mechanisms of drug resistance

48. Comparative Gene Expression Analysis throughout the Life Cycle of Leishmania braziliensis: Diversity of Expression Profiles among Clinical Isolates

50. Evolutionary genomics of epidemic visceral leishmaniasis in the Indian subcontinent

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