Affiliation:
1. Institut Pasteur, Unité Biologie des Spirochètes, Paris, France
2. Manhattanville College, Department of Biology, Purchase, New York, USA
Abstract
ABSTRACT
Leptospirosis, an emerging zoonotic disease, remains poorly understood because of a lack of genetic manipulation tools available for pathogenic leptospires. Current genetic manipulation techniques include insertion of DNA by random transposon mutagenesis and homologous recombination via suicide vectors. This study describes the construction of a shuttle vector, pMaORI, that replicates within saprophytic, intermediate, and pathogenic leptospires. The shuttle vector was constructed by the insertion of a 2.9-kb DNA segment including the
parA
,
parB
, and
rep
genes into pMAT, a plasmid that cannot replicate in
Leptospira
spp. and contains a backbone consisting of an
aadA
cassette,
ori
R6K, and
oriT
RK2/RP4. The inserted DNA segment was isolated from a 52-kb region within
Leptospira
mayottensis
strain 200901116 that is not found in the closely related strain
L. mayottensis
200901122. Because of the size of this region and the presence of bacteriophage-like proteins, it is possible that this region is a result of a phage-related genomic island. The stability of the pMaORI plasmid within pathogenic strains was tested by passaging cultures 10 times without selection and confirming the presence of pMaORI. Concordantly, we report the use of
trans
complementation in the pathogen
Leptospira interrogans
. Transformation of a pMaORI vector carrying a functional copy of the
perR
gene in a null mutant background restores the expression of PerR and susceptibility to hydrogen peroxide comparable to that of wild-type cells. In conclusion, we demonstrate the replication of a stable plasmid vector in a large panel of
Leptospira
strains, including pathogens. The shuttle vector described will expand our ability to perform genetic manipulation of
Leptospira
spp.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Cited by
39 articles.
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