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Polysome Profiling in Leishmania, Human Cells and Mouse Testis
Published on: April 8, 2018
Identification of geographically distributed sub-populations of Leishmania (Leishmania) major by microsatellite
Amer Al-Jawabreh1, Stephanie Diezmann, Michaela Müller
1Department of Parasitology, Institute of Microbiology and Hygiene, Charité University Medicine Berlin, Dorotheenstr, 96, D-10098 Berlin, Germany. islahjr@yahoo.com
Background:
Leishmania (Leishmania) major, one of the agents causing cutaneous leishmaniasis (CL) in humans, is widely distributed in the Old World where different species of wild rodent and phlebotomine sand fly serve as animal reservoir hosts and vectors, respectively. Despite this, strains of L. (L.) major isolated from many different sources over many years have proved to be relatively uniform. To investigate the population structure of the species highly polymorphic microsatellite markers were employed for greater discrimination among it's otherwise closely related strains, an approach applied successfully to other species of Leishmania.
Results:
Multilocus Microsatellite Typing (MLMT) based on 10 different microsatellite markers was applied to 106 strains of L. (L.) major from different regions where it is endemic. On applying a Bayesian model-based approach, three main populations were identified, corresponding to three separate geographical regions: Central Asia (CA); the Middle East (ME); and Africa (AF). This was congruent with phylogenetic reconstructions based on genetic distances. Re-analysis separated each of the populations into two sub-populations. The two African sub-populations did not correlate well with strains' geographical origin. Strains falling into the sub-populations CA and ME did mostly group according to their place of isolation although some anomalies were seen, probably, owing to human migration.
Conclusion:
The model- and distance-based analyses of the microsatellite data exposed three main populations of L. (L.) major, Central Asia, the Middle East and Africa, each of which separated into two sub-populations. This probably correlates with the different species of rodent host.
Insights
Leishmania (Leishmania) major strains, causing cutaneous leishmaniasis, were analyzed using microsatellite markers. Three distinct populations were identified in Central Asia, the Middle East, and Africa, each with two sub-populations.
Area of Science:
- Parasitology
- Molecular Biology
- Population Genetics
Background:
- Leishmania (Leishmania) major causes cutaneous leishmaniasis (CL) globally.
- Previous studies showed relative uniformity in L. (L.) major strains.
- Investigating population structure requires high-resolution markers for closely related strains.
Purpose of the Study:
- To investigate the population structure of Leishmania (Leishmania) major.
- To utilize highly polymorphic microsatellite markers for strain discrimination.
- To understand the genetic diversity and geographical distribution of L. (L.) major.
Main Methods:
- Multilocus Microsatellite Typing (MLMT) using 10 microsatellite markers.
- Analysis of 106 L. (L.) major strains from endemic regions.
- Application of Bayesian model-based clustering and phylogenetic analysis.
Main Results:
- Three main L. (L.) major populations identified: Central Asia (CA), Middle East (ME), and Africa (AF).
- Each population further separated into two sub-populations.
- Geographical clustering observed, with some anomalies potentially due to human migration.
Conclusions:
- Microsatellite data revealed three distinct populations of L. (L.) major across geographical regions.
- Each population comprises two sub-populations, possibly linked to different rodent host species.
- Genetic structuring of L. (L.) major populations provides insights into its epidemiology.
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