Literature DB >> 25385616

Cross-species genetic exchange between visceral and cutaneous strains of Leishmania in the sand fly vector.

Audrey Romano1, Ehud Inbar1, Alain Debrabant2, Melanie Charmoy1, Phillip Lawyer1, Flavia Ribeiro-Gomes1, Mourad Barhoumi1, Michael Grigg1, Jahangheer Shaik3, Deborah Dobson3, Stephen M Beverley3, David L Sacks4.   

Abstract

Genetic exchange between Leishmania major strains during their development in the sand fly vector has been experimentally shown. To investigate the possibility of genetic exchange between different Leishmania species, a cutaneous strain of L. major and a visceral strain of Leishmania infantum, each bearing a different drug-resistant marker, were used to coinfect Lutzomyia longipalpis sand flies. Eleven double-drug-resistant progeny clones, each the product of an independent mating event, were generated and submitted to genotype and phenotype analyses. The analysis of multiple allelic markers across the genome suggested that each progeny clone inherited at least one full set of chromosomes from each parent, with loss of heterozygosity at some loci, and uniparental retention of maxicircle kinetoplast DNA. Hybrids with DNA contents of approximately 2n, 3n, and 4n were observed. In vivo studies revealed clear differences in the ability of the hybrids to produce pathology in the skin or to disseminate to and grow in the viscera, suggesting polymorphisms and differential inheritance of the gene(s) controlling these traits. The studies, to our knowledge, represent the first experimental confirmation of cross-species mating in Leishmania, opening the way toward genetic linkage analysis of important traits and providing strong evidence that genetic exchange is responsible for the generation of the mixed-species genotypes observed in natural populations.

Entities:  

Keywords:  Leishmania; genetic exchange; sand fly

Mesh:

Year:  2014        PMID: 25385616      PMCID: PMC4250153          DOI: 10.1073/pnas.1415109111

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  38 in total

Review 1.  Molecular epidemiology and evolutionary genetics of Leischmania parasites.

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2.  A lipophosphoglycan-independent method for isolation of infective Leishmania metacyclic promastigotes by density gradient centrifugation.

Authors:  G F Späth; S M Beverley
Journal:  Exp Parasitol       Date:  2001-10       Impact factor: 2.011

Review 3.  Sex and evolution in trypanosomes.

Authors:  W Gibson
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4.  Intradermal infection model for pathogenesis and vaccine studies of murine visceral leishmaniasis.

Authors:  Saeed Ahmed; M Colmenares; L Soong; K Goldsmith-Pestana; L Munstermann; R Molina; Diane McMahon-Pratt
Journal:  Infect Immun       Date:  2003-01       Impact factor: 3.441

5.  Plasticity in chromosome number and testing of essential genes in Leishmania by targeting.

Authors:  A K Cruz; R Titus; S M Beverley
Journal:  Proc Natl Acad Sci U S A       Date:  1993-02-15       Impact factor: 11.205

6.  Kinetoplastid-specific histone variant functions are conserved in Leishmania major.

Authors:  Britta A Anderson; Iris L K Wong; Loren Baugh; Gowthaman Ramasamy; Peter J Myler; Stephen M Beverley
Journal:  Mol Biochem Parasitol       Date:  2013-09-27       Impact factor: 1.759

7.  Genomic confirmation of hybridisation and recent inbreeding in a vector-isolated Leishmania population.

Authors:  Matthew B Rogers; Tim Downing; Barbara A Smith; Hideo Imamura; Mandy Sanders; Milena Svobodova; Petr Volf; Matthew Berriman; James A Cotton; Deborah F Smith
Journal:  PLoS Genet       Date:  2014-01-16       Impact factor: 5.917

8.  First evidence of intraclonal genetic exchange in trypanosomatids using two Leishmania infantum fluorescent transgenic clones.

Authors:  Estefanía Calvo-Álvarez; Raquel Álvarez-Velilla; Maribel Jiménez; Ricardo Molina; Yolanda Pérez-Pertejo; Rafael Balaña-Fouce; Rosa M Reguera
Journal:  PLoS Negl Trop Dis       Date:  2014-09-04

9.  The mating competence of geographically diverse Leishmania major strains in their natural and unnatural sand fly vectors.

Authors:  Ehud Inbar; Natalia S Akopyants; Melanie Charmoy; Audrey Romano; Phillip Lawyer; Dia-Eldin A Elnaiem; Florence Kauffmann; Mourad Barhoumi; Michael Grigg; Katherine Owens; Michael Fay; Deborah E Dobson; Jahangheer Shaik; Stephen M Beverley; David Sacks
Journal:  PLoS Genet       Date:  2013-07-25       Impact factor: 5.917

10.  Lundep, a sand fly salivary endonuclease increases Leishmania parasite survival in neutrophils and inhibits XIIa contact activation in human plasma.

Authors:  Andrezza C Chagas; Fabiano Oliveira; Alain Debrabant; Jesus G Valenzuela; José M C Ribeiro; Eric Calvo
Journal:  PLoS Pathog       Date:  2014-02-06       Impact factor: 6.823

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  31 in total

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Authors:  Felice D Kelly; Marco A Sanchez; Scott M Landfear
Journal:  Microbiol Mol Biol Rev       Date:  2020-04-01       Impact factor: 11.056

2.  Global genome diversity of the Leishmania donovani complex.

Authors:  Susanne U Franssen; Caroline Durrant; Olivia Stark; Bettina Moser; Tim Downing; Hideo Imamura; Jean-Claude Dujardin; Mandy J Sanders; Isabel Mauricio; Michael A Miles; Lionel F Schnur; Charles L Jaffe; Abdelmajeed Nasereddin; Henk Schallig; Matthew Yeo; Tapan Bhattacharyya; Mohammad Z Alam; Matthew Berriman; Thierry Wirth; Gabriele Schönian; James A Cotton
Journal:  Elife       Date:  2020-03-25       Impact factor: 8.140

3.  Global selective sweep of a highly inbred genome of the cattle parasite Neospora caninum.

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Journal:  Proc Natl Acad Sci U S A       Date:  2019-10-21       Impact factor: 11.205

4.  Cutaneous Infection with Leishmania major Mediates Heterologous Protection against Visceral Infection with Leishmania infantum.

Authors:  Audrey Romano; Nicole A Doria; Jonatan Mendez; David L Sacks; Nathan C Peters
Journal:  J Immunol       Date:  2015-09-14       Impact factor: 5.422

5.  Stress conditions promote Leishmania hybridization in vitro marked by expression of the ancestral gamete fusogen HAP2 as revealed by single-cell RNA-seq.

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Journal:  Elife       Date:  2022-01-07       Impact factor: 8.140

6.  Signatures of hybridization in Trypanosoma brucei.

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Review 7.  Experimental Hybridization in Leishmania: Tools for the Study of Genetic Exchange.

Authors:  Tiago R Ferreira; David L Sacks
Journal:  Pathogens       Date:  2022-05-14

8.  Variability of Cutaneous Leishmaniasis Lesions Is Not Associated with Genetic Diversity of Leishmania tropica in Khyber Pakhtunkhwa Province of Pakistan.

Authors:  Nazma Habib Khan; Martin S Llewellyn; Gabriele Schönian; Colin J Sutherland
Journal:  Am J Trop Med Hyg       Date:  2017-10-10       Impact factor: 2.345

9.  Recent advances in phlebotomine sand fly research related to leishmaniasis control.

Authors:  Paul A Bates; Jerôme Depaquit; Eunice A B Galati; Shaden Kamhawi; Michele Maroli; Mary Ann McDowell; Albert Picado; Paul D Ready; O Daniel Salomón; Jeffrey J Shaw; Yara M Traub-Csekö; Alon Warburg
Journal:  Parasit Vectors       Date:  2015-02-27       Impact factor: 3.876

Review 10.  Reproduction in Trypanosomatids: Past and Present.

Authors:  Camino Gutiérrez-Corbo; Bárbara Domínguez-Asenjo; María Martínez-Valladares; Yolanda Pérez-Pertejo; Carlos García-Estrada; Rafael Balaña-Fouce; Rosa M Reguera
Journal:  Biology (Basel)       Date:  2021-05-27
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