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1.
Parasit Vectors ; 10(1): 413, 2017 Sep 06.
Article in English | MEDLINE | ID: mdl-28874204

ABSTRACT

BACKGROUND: Rickettsiae are obligate intracellular alpha-proteobacteria. They are transmitted via arthropod vectors, which transmit the bacteria between animals and occasionally to humans. So far, much research has been conducted to indicate reservoir hosts for these microorganisms, but our knowledge is still non-exhaustive. Therefore, this survey was undertaken to investigate the presence of Rickettsia spp. in wild-living small rodents from south-western Poland. RESULTS: In total, 337 samples (193 from spleen and 144 from blood) obtained from 193 wild-living rodents: Apodemus agrarius, Apodemus flavicollis, and Myodes glareolus were tested by qPCR for Rickettsia spp. based on a fragment of gltA gene. The prevalence of infection was 17.6% (34/193). Subsequently, the positive samples were analysed by conventional PCR targeting the gltA gene fragment. The genus Rickettsia was confirmed by sequence analysis in four samples from the blood. In two blood samples from A. agrarius, the identified pathogen was Rickettsia helvetica. The Rickettsia obtained from A. flavicollis was assigned to Rickettsia felis-like organisms group. One isolate from A. agrarius could be determined only to the genus level. CONCLUSIONS: This study shows the presence of Rickettsia DNA in tissues of wild-living rodents, suggesting some potential role of these animals in temporarily maintaining and spreading the bacteria in enzootic cycles.


Subject(s)
Murinae/microbiology , Rickettsia/isolation & purification , Rodent Diseases/epidemiology , Spotted Fever Group Rickettsiosis/veterinary , Animals , Animals, Wild , DNA, Bacterial/genetics , Disease Reservoirs , Poland , Prevalence , Rickettsia/genetics , Rickettsia/physiology , Rodent Diseases/microbiology , Sequence Analysis, DNA , Spotted Fever Group Rickettsiosis/epidemiology , Spotted Fever Group Rickettsiosis/microbiology
3.
Ticks Tick Borne Dis ; 8(3): 353-361, 2017 03.
Article in English | MEDLINE | ID: mdl-28089123

ABSTRACT

Ticks are becoming increasingly recognised as important vectors of pathogens in urban and peri-urban areas, including green space used for recreational activities. In the UK, the risk posed by ticks in such areas is largely unknown. In order to begin to assess the risk of ticks in urban/peri-urban areas in southern England, questing ticks were collected from five different habitat types (grassland, hedge, park, woodland and woodland edge) in a city during the spring, summer and autumn of 2013/2014 and screened for Borrelia burgdorferi sensu lato. In addition, seasonal differences in B. burgdorferi s.l. prevalence were also investigated at a single site during 2015. Ixodes ricinus presence and activity were significantly higher in woodland edge habitat and during spring surveys. DNA of Borrelia burgdorferi s.l. was detected in 18.1% of nymphs collected across the 25 sites during 2013 and 2014 and two nymphs also tested positive for the newly emerging tick-borne pathogen B. miyamotoi. Borrelia burgdorferi s.l. prevalence at a single site surveyed in 2015 were found to be significantly higher during spring and summer than in autumn, with B. garinii and B. valaisiana most commonly detected. These data indicate that a range of habitats within an urban area in southern England support ticks and that urban Borrelia transmission cycles may exist in some of the urban green spaces included in this study. Sites surveyed were frequently used by humans for recreational activities, providing opportunity for exposure to Borrelia infected ticks in an urban/peri-urban space that might not be typically associated with tick-borne disease transmission.


Subject(s)
Borrelia burgdorferi/isolation & purification , Borrelia/isolation & purification , Ixodes/microbiology , Lyme Disease/epidemiology , Parks, Recreational , Animals , Borrelia/classification , Borrelia/genetics , Borrelia/pathogenicity , Borrelia burgdorferi/genetics , Ecosystem , England/epidemiology , Forests , Humans , Lyme Disease/microbiology , Lyme Disease/transmission , Nymph/microbiology , Prevalence , Seasons
4.
Parasit Vectors ; 9(1): 517, 2016 Sep 23.
Article in English | MEDLINE | ID: mdl-27662832

ABSTRACT

BACKGROUND: The bacteria of the Borrelia burgdorferi (s.l.) (BBG) complex constitute a group of tick-transmitted pathogens that are linked to many vertebrate and tick species. The ecological relationships between the pathogens, the ticks and the vertebrate carriers have not been analysed. The aim of this study was to quantitatively analyse these interactions by creating a network based on a large dataset of associations. Specifically, we examined the relative positions of partners in the network, the phylogenetic diversity of the tick's hosts and its impact on BBG circulation. The secondary aim was to evaluate the segregation of BBG strains in different vectors and reservoirs. RESULTS: BBG circulates through a nested recursive network of ticks and vertebrates that delineate closed clusters. Each cluster contains generalist ticks with high values of centrality as well as specialist ticks that originate nested sub-networks and that link secondary vertebrates to the cluster. These results highlighted the importance of host phylogenetic diversity for ticks in the circulation of BBG, as this diversity was correlated with high centrality values for the ticks. The ticks and BBG species in each cluster were not significantly associated with specific branches of the phylogeny of host genera (R 2 = 0.156, P = 0.784 for BBG; R 2 = 0.299, P = 0.699 for ticks). A few host genera had higher centrality values and thus higher importance for BBG circulation. However, the combined contribution of hosts with low centrality values could maintain active BBG foci. The results suggested that ticks do not share strains of BBG, which were highly segregated among sympatric species of ticks. CONCLUSIONS: We conclude that BBG circulation is supported by a highly redundant network. This network includes ticks with high centrality values and high host phylogenetic diversity as well as ticks with low centrality values. This promotes ecological sub-networks and reflects the high resilience of BBG circulation. The functional redundancy in BBG circulation reduces disturbances due to the removal of vertebrates as it allows ticks to fill other biotic niches.

5.
Parasit Vectors ; 8: 309, 2015 Jun 06.
Article in English | MEDLINE | ID: mdl-26048373

ABSTRACT

BACKGROUND: Borrelia miyamotoi, the newly discovered human pathogenic relapsing fever spirochete, and Borrelia burgdorferi sensu lato are maintained in natural rodent populations. The aim of this study was to investigate the natural cycle of B. miyamotoi and B. burgdorferi s.l. in a forest habitat with intensive hunting, forestry work and recreational activity in Southern Hungary. METHODS: We collected rodents with modified Sherman-traps during 2010-2013 and questing ticks with flagging in 2012. Small mammals were euthanized, tissue samples were collected and all ectoparasites were removed and stored. Samples were screened for pathogens with multiplex quantitative real-time polymerase chain reaction (qPCR) targeting a part of flagellin gene, then analysed with conventional PCRs and sequencing. RESULTS: 177 spleen and 348 skin samples of six rodent species were individually analysed. Prevalence in rodent tissue samples was 0.2 % (skin) and 0.5 % (spleen) for B. miyamotoi and 6.6 % (skin) and 2.2 % (spleen) for B. burgdorferi s.l. Relapsing fever spirochetes were detected in Apodemus flavicollis males, B. burgdorferi s.l. in Apodemus spp. and Myodes glareolus samples. Borrelia miyamotoi was detected in one questing Ixodes ricinus nymph and B. burgdorferi s.l in nymphs and adults. In the ticks removed from rodents DNA amplification of both pathogens was successful from I. ricinus larvae (B. miyamotoi 5.6 %, B. burgdorferi s.l. 11.1 %) and one out of five nymphs while from Ixodes acuminatus larvae, and nymph only B. burgdorferi s.l. DNA was amplified. Sequencing revealed B. lusitaniae in a questing I. ricinus nymph and altogether 17 B. afzelii were identified in other samples. Two Dermacentor marginatus engorged larva pools originating from uninfected hosts were also infected with B. afzelii. CONCLUSIONS: This is the first report of B. miyamotoi occurrence in a natural population of A. flavicollis as well as in Hungary. We provide new data about circulation of B. burgdorferi s.l. in rodent and tick communities including the role of I. acuminatus ticks in the endophilic pathogen cycle. Our results highlight the possible risk of infection with relapsing fever and Lyme borreliosis spirochetes in forest habitats especially in the high-risk groups of hunters, forestry workers and hikers.


Subject(s)
Borrelia/isolation & purification , Insect Vectors/microbiology , Rodentia/parasitology , Tick Infestations/veterinary , Ticks/microbiology , Animals , Borrelia/classification , Borrelia/genetics , Ecosystem , Forests , Hungary , Multiplex Polymerase Chain Reaction , Real-Time Polymerase Chain Reaction , Tick Infestations/parasitology
6.
Article in English | MEDLINE | ID: mdl-23908971

ABSTRACT

Ixodes ricinus transmits Borrelia burgdorferi sensu lato, the etiological agent of Lyme disease. Previous studies have also detected Rickettsia helvetica, Anaplasma phagocytophilum, Neoehrlichia mikurensis, and several Babesia species in questing ticks in The Netherlands. In this study, we assessed the acarological risk of exposure to several tick-borne pathogens (TBPs), in The Netherlands. Questing ticks were collected monthly between 2006 and 2010 at 21 sites and between 2000 and 2009 at one other site. Nymphs and adults were analysed individually for the presence of TBPs using an array-approach. Collated data of this and previous studies were used to generate, for each pathogen, a presence/absence map and to further analyse their spatiotemporal variation. R. helvetica (31.1%) and B. burgdorferi sensu lato (11.8%) had the highest overall prevalence and were detected in all areas. N. mikurensis (5.6%), A. phagocytophilum (0.8%), and Babesia spp. (1.7%) were detected in most, but not all areas. The prevalences of pathogens varied among the study areas from 0 to 64%, while the density of questing ticks varied from 1 to 179/100 m². Overall, 37% of the ticks were infected with at least one pathogen and 6.3% with more than one pathogen. One-third of the Borrelia-positive ticks were infected with at least one other pathogen. Coinfection of B. afzelii with N. mikurensis and with Babesia spp. occurred significantly more often than single infections, indicating the existence of mutual reservoir hosts. Alternatively, coinfection of R. helvetica with either B. afzelii or N. mikurensis occurred significantly less frequent. The diversity of TBPs detected in I. ricinus in this study and the frequency of their coinfections with B. burgdorferi s.l., underline the need to consider them when evaluating the risks of infection and subsequently the risk of disease following a tick bite.


Subject(s)
Babesia/isolation & purification , Bacteria/isolation & purification , Biodiversity , Ixodes/microbiology , Ixodes/parasitology , Phylogeography , Animals , Bacteria/classification , Microarray Analysis , Netherlands
7.
Infect Genet Evol ; 17: 216-22, 2013 Jul.
Article in English | MEDLINE | ID: mdl-23602839

ABSTRACT

BACKGROUND: Lyme borreliosis is the predominant tick-borne disease in the Northern hemisphere, with considerable heterogeneity in clinical manifestations. Here, we evaluated one genetic marker for its use in population genetic based analysis. For that we collected molecular and epidemiological records of Borrelia burgdorferi sensu lato isolates from ticks, animals and humans at various sites in The Netherlands and worldwide. METHODS: The 5S-23S rDNA (rrfA-rrlB) intergenic spacer region (IGS) from 291 Dutch Borrelia positive ticks was sequenced and compared to Borrelia sequences from GenBank. We estimated several population genetic measures to test the neutrality of the marker. We also assessed the ability of this marker to discriminate between Eurasian Borrelieae at a finer geographical resolution, and to detect population expansion per genospecies. RESULTS: The most prevalent genospecies in The Netherlands was Borrelia afzelii, whereas Borrelia garinii, B. burgdorferi sensu stricto, Borrelia spielmanii and Borrelia valaisiana were found less frequently. The result of the Ewens-Watterson-Slatkin test was consistent with neutral selection of IGS region. Estimated pairwise fixation indices (Fst) were significantly different from zero between The Netherlands, the rest of Europe, Russia and Asia for B. afzelii and Borrelia garinii. Estimated Fu's Fs were significantly negative for B. afzelii and B. garinii. CONCLUSIONS: At least seven B. burgdorferi s.l. genospecies circulate in Ixodes ricinus population in The Netherlands. The population genetic analyses of IGS region can resolve subpopulations within a genospecies and detect a large excess of rare genetic variants at the genospecies level. A genetic trace of population expansion for B. afzelii and B. garinii is consistent with the reported increase in Lyme borreliosis incidence in European countries.


Subject(s)
Borrelia burgdorferi/classification , Borrelia burgdorferi/genetics , DNA, Ribosomal Spacer/genetics , RNA, Ribosomal, 23S/genetics , RNA, Ribosomal, 5S/genetics , Asia , Cluster Analysis , Europe , Evolution, Molecular , Genetic Variation , Haplotypes , Multilocus Sequence Typing , Netherlands , Phylogeny
8.
Exp Appl Acarol ; 54(3): 293-300, 2011 Jul.
Article in English | MEDLINE | ID: mdl-21431930

ABSTRACT

In this study 1,868 questing Ixodes ricinus ticks (nymphs and adults), collected in six sites from three counties--Giurgiu, Sibiu, and Tulcea--in Romania, were examined by polymerase chain reaction (PCR) followed by reverse line blot (RLB) for detection of Borrelia burgdorferi sensu lato presence. The bacteria were found in 18% of the investigated ticks. The prevalence of infection did not differ significantly between nymphs (19.1%) and adults (15.4%). Three B. burgdorferi s.l. genospecies were detected: B. afzelii (61.1%), B. garinii (31.2%), and B. valaisiana (7.7%). No mixed infections were detected. The highest infection prevalence in nymphs was detected at Cristian (Sibiu County)--22.0%, whereas in adults it was at Comana (Giurgiu County)--19.8%. This preliminary study provides evidence that Lyme disease spirochetes are present in various regions of Romania, and at a relatively high prevalence in their vectors, thus posing a risk of infection to human subjects in the areas infested by ticks.


Subject(s)
Arachnid Vectors/microbiology , Ixodes/microbiology , Lyme Disease/microbiology , Animals , Arachnid Vectors/physiology , Borrelia burgdorferi/isolation & purification , Humans , Ixodes/physiology , Lyme Disease/epidemiology , Nymph/microbiology , Nymph/physiology , Risk Assessment , Romania
9.
Exp Appl Acarol ; 52(2): 193-7, 2010 Oct.
Article in English | MEDLINE | ID: mdl-20232115

ABSTRACT

We examined 200 questing Ixodes ricinus ticks (nymphs and adults) collected in three different sites in Sibiu County, Romania by polymerase chain reaction (PCR) followed by reverse line blot (RLB) for Borrelia burgdorferi s.l.. We detected the bacteria in 19% of the investigated ticks. The prevalence of infection was higher in nymphs (27%) than in adults (12%). Two B. burgdorferi sensu lato genospecies were detected: B. garinii (20%) and B. afzelii (80%). We did not detect any mixed infections in the investigated ticks. In two of the investigated sites B. burgdorferi prevalence values were comparable (25%), while in the third site the prevalence was lower ( approximately 7%). Our preliminary study provides evidence that Lyme disease spirochetes are present in various areas and at a relatively high prevalence in their vectors, thus posing a risk of infection to human subjects that undergo work or leisure activities in those areas.


Subject(s)
Borrelia burgdorferi/isolation & purification , Ixodes/microbiology , Animals , Ixodes/growth & development , Nymph/growth & development , Nymph/microbiology , Romania
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