Epidemiological dynamics of <i>Leishmania</i> (<i>Sauroleishmania</i>) <i>tarentolae</i> and <i>Trypanosoma platydactyli</i> in reptile hosts and sand flies: from isolation to genome assembly. [PDF]
Perles L +9 more
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The subcellular architecture of <i>Paratrypanosoma confusum</i> revealed by CryoET: A window into early trypanosome evolution. [PDF]
Alcantara CL +4 more
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Phosphate Acquisition in Protozoan Parasites: Transport Systems, and Extracellular Phosphate-Releasing Enzymatic Activities. [PDF]
Freitas-Mesquita AL, Meyer-Fernandes JR.
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Chromosome-level genome assembly of trypanosomatid parasite Lotmaria passim links chromosome duplication and divergence with infection of honey bees. [PDF]
Nearman A +3 more
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Role of ergosterol biosynthesis in growth, drug sensitivity, and host colonization of honey bee trypanosomatid parasite, <i>Lotmaria passim</i>. [PDF]
Yuan X, Kadowaki T.
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Protein Kinase Inhibitors and Oxidative Stress Modulate In Vivo Phosphorylation of <i>Trypanosoma cruzi</i> DNA Polymerase β. [PDF]
Maldonado E +9 more
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Trypanosomatidae (Kinetoplastea: Trypanosomatida) diversity infecting the South American coati <i>Nasua nasua</i> (Carnivora: Procyonidae) in urban forest fragments in the Brazilian Midwest. [PDF]
de Macedo GC +11 more
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The Study on <i>Culicoides</i>: The Environment They Live in and Trypanosomatids They Coexist. [PDF]
Kazak M +2 more
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Bat-associated Trypanosoma diversity, geographic extension of known clades, and predominance of T. cruzi TcIV in a conserved tropical forest of southeastern Mexico. [PDF]
Ibarra-López MP +8 more
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You can go your own way: The targeting signals of trypanosomatid parasites. [PDF]
Pendlebury M, Lukeš J, Hammond MJ.
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