Leishmania naiffi and Leishmania guyanensis reference genomes highlight genome structure and gene evolution in the Viannia subgenus

Author:

Coughlan SimoneORCID,Taylor Ali Shirley,Feane Eoghan,Sanders Mandy,Schonian Gabriele,Cotton James A.ORCID,Downing TimORCID

Abstract

AbstractThe unicellular protozoan parasite Leishmania causes the neglected tropical disease leishmaniasis, affecting 12 million people in 98 countries. In South America where the Viannia subgenus predominates, so far only L. (Viannia) braziliensis and L. (V.) panamensis have been sequenced, assembled and annotated as reference genomes. Addressing this deficit in molecular information can inform species typing, epidemiological monitoring and clinical treatment. Here, L. (V.) naiffi and L. (V.) guyanensis genomic DNA was sequenced to assemble these two genomes as draft references from short sequence reads. The methods used were tested using short sequence reads for L. braziliensis M2904 against its published reference as a comparison. This assembly and annotation pipeline identified 70 additional genes not annotated on the original M2904 reference. Phylogenetic and evolutionary comparisons of L. guyanensis and L. naiffi with ten other Viannia genomes revealed four traits common to all Viannia: aneuploidy, 22 orthologous groups of genes absent in other Leishmania subgenera, elevated TATE transposon copies, and a high NADH-dependent fumarate reductase gene copy number. Within the Viannia, there were limited structural changes in genome architecture specific to individual species: a 45 Kb amplification on chromosome 34 was present in all bar L. lainsoni, L. naiffi had a higher copy number of the virulence factor leishmanolysin, and laboratory isolate L. shawi M8408 had a possible minichromosome derived from the 3’ end of chromosome 34. This combination of genome assembly, phylogenetics and comparative analysis across an extended panel of diverse Viannia has uncovered new insights into the origin and evolution of this subgenus and can help improve diagnostics for leishmaniasis surveillance.

Publisher

Cold Spring Harbor Laboratory

Reference93 articles.

1. Pan American Health Organization. 2017 Leishmaniases: Epidemiological Report in the Americas. Available at http://www2.paho.org/hq/index.php?option=com_docman&task=doc_view&Itemid=270&gid=39646&lang=en

2. World Health Organization. 2010 Control of the leishmaniases. World Health Organ Tech Rep Ser. 949, xii-xiii, 1-186, back cover.

3. The current status of zoonotic leishmaniases and approaches to disease control

4. The biology and control of Phlebotomine sand flies

5. Phlebotomine sandflies and the spreading of leishmaniases and other diseases of public health concern

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