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A new multiplex PCR assay to distinguish among three cryptic Galba species, intermediate hosts of Fasciola hepatica.

Authors :
Alda, Pilar
Lounnas, Manon
Vázquez, Antonio Alejandro
Ayaqui, Rolando
Calvopiña, Manuel
Celi-Erazo, Maritza
Jr.Dillon, Robert T.
Jarne, Philippe
Loker, Eric S.
Muñiz Pareja, Flavia Caroll
Muzzio-Aroca, Jenny
Nárvaez, Alberto Orlando
Noya, Oscar
Robles, Luiggi Martini
Rodríguez-Hidalgo, Richar
Uribe, Nelson
David, Patrice
Pointier, Jean-Pierre
Hurtrez-Boussès, Sylvie
Source :
Veterinary Parasitology. Feb2018, Vol. 251, p101-105. 5p.
Publication Year :
2018

Abstract

A molecular tool described here allows in one step for specific discrimination among three cryptic freshwater snail species (genus Galba ) involved in fasciolosis transmission, a worldwide infectious disease of humans and livestock. The multiplex PCR approach taken targets for each species a distinctive, known microsatellite locus which is amplified using specific primers designed to generate an amplicon of a distinctive size that can be readily separated from the amplicons of the other two species on an agarose gel. In this way, the three Galba species ( G. cubensis , G. schirazensis , and G. truncatula ) can be differentiated from one another, including even if DNA from all three were present in the same reaction. The accuracy of this new molecular tool was tested and validated by comparing multiplex PCR results with species identification based on sequences at mitochondrial and nuclear markers. This new method is accurate, inexpensive, simple, rapid, and can be adapted to handle large sample sizes. It will be helpful for monitoring invasion of Galba species and for developing strategies to limit the snail species involved in the emergence or re-emergence of fasciolosis. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03044017
Volume :
251
Database :
Academic Search Index
Journal :
Veterinary Parasitology
Publication Type :
Academic Journal
Accession number :
127871685
Full Text :
https://doi.org/10.1016/j.vetpar.2018.01.006