Authors
Marques, C. A., Laidlaw, R. F., Warren, F., da Silva, G. L. A., Young, M., Crouch, K., Burchmore, R., Otto, T. D., Llewellyn, M., McCulloch, R., Briggs, E. M.
Abstract
Leishmania species are transmitted between mammals by sand flies, within which they undergo a complex developmental programme involving transitions between replicative and non-replicative life cycle forms. Recent work using single-cell transcriptomics has revealed the developmental pathways of Leishmania major in the sand fly, but it is unclear how faithfully such development is recapitulated during Leishmania culture in vitro. In addition, no work has revealed how gene expression changes across the cell cycle of replicative Leishmania forms. Using single-cell transcriptomics on unsynchronised cultures of L. major and L. mexicana, we addressed both questions. We show that in vitro L. mexicana promastigotes display the same two developmental endpoints seen in L. major cells recovered from sand flies, metacyclics and haptomonads. In contrast, L. major promastigote development in vitro does not predict the presence of leptomonads or haptomonads, although non-dividing late metacyclics form through an early metacyclic stage as parasites enter stationary phase. Using computational reconstruction of the cell cycle in procyclic promastigote forms of both Leishmania species identified hundreds of genes whose transcript levels vary as the cell cycle progresses, revealing core conserved processes between the two species and with the closely related Trypanosoma brucei. These genes allowed us to examine connections between life cycle and cell cycle progression, revealing that some developmental transitions are strongly linked to a cell cycle phase, whereas others occur asynchronously. This work provides a comprehensive atlas and marker gene list for the interlinked cell and life cycles of two laboratory-cultured Leishmania species.
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bioRxiv
The authors list and abstract were imported from bioRxiv on 02 Oct 2026.
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