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result(s) for
"Tick Infestations - transmission"
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Benefits and Drawbacks of Citizen Science to Complement Traditional Data Gathering Approaches for Medically Important Hard Ticks (Acari: Ixodidae) in the United States
2021
Tick-borne diseases are increasing in North America. Knowledge of which tick species and associated human pathogens are present locally can inform the public and medical community about the acarological risk for tick bites and tick-borne infections. Citizen science (also called community-based monitoring, volunteer monitoring, or participatory science) is emerging as a potential approach to complement traditional tick record data gathering where all aspects of the work is done by researchers or public health professionals. One key question is how citizen science can best be used to generate high-quality data to fill knowledge gaps that are difficult to address using traditional data gathering approaches. Citizen science is particularly useful to generate information on human–tick encounters and may also contribute to geographical tick records to help define species distributions across large areas. Previous citizen science projects have utilized three distinct tick record data gathering methods including submission of: 1) physical tick specimens for identification by professional entomologists, 2) digital images of ticks for identification by professional entomologists, and 3) data where the tick species and life stage were identified by the citizen scientist. We explore the benefits and drawbacks of citizen science, relative to the traditional scientific approach, to generate data on tick records, with special emphasis on data quality for species identification and tick encounter locations. We recognize the value of citizen science to tick research but caution that the generated information must be interpreted cautiously with data quality limitations firmly in mind to avoid misleading conclusions.
Journal Article
Wild ungulate species differ in their contribution to the transmission of Ixodes ricinus-borne pathogens
by
Ecke, Frauke
,
Fabri, Nannet D.
,
Cromsigt, Joris P. G. M.
in
adults
,
Alces alces
,
Anaplasma phagocytophilum
2021
Background
Several ungulate species are feeding and propagation hosts for the tick
Ixodes ricinus
as well as hosts to a wide range of zoonotic pathogens. Here, we focus on
Anaplasma phagocytophilum
and
Borrelia burgdorferi
(
s.l.
), two important pathogens for which ungulates are amplifying and dilution hosts, respectively. Ungulate management is one of the main tools to mitigate human health risks associated with these tick-borne pathogens. Across Europe, different species of ungulates are expanding their ranges and increasing in numbers. It is currently unclear if and how the relative contribution to the life-cycle of
I. ricinus
and the transmission cycles of tick-borne pathogens differ among these species. In this study, we aimed to identify these relative contributions for five European ungulate species.
Methods
We quantified the tick load and collected ticks and spleen samples from hunted fallow deer (
Dama dama
,
n
= 131), moose (
Alces alces
,
n
= 15), red deer (
Cervus elaphus
,
n
= 61), roe deer (
Capreolus capreolus
,
n
= 30) and wild boar (
Sus scrofa
,
n
= 87) in south-central Sweden. We investigated the presence of tick-borne pathogens in ticks and spleen samples using real-time PCR. We determined if ungulate species differed in tick load (prevalence and intensity) and in infection prevalence in their tissue as well as in the ticks feeding on them.
Results
Wild boar hosted fewer adult female ticks than any of the deer species, indicating that deer are more important as propagation hosts. Among the deer species, moose had the lowest number of female ticks, while there was no difference among the other deer species. Given the low number of infected nymphs, the relative contribution of all ungulate species to the transmission of
B. burgdorferi
(
s.l.
) was low. Fallow deer, red deer and roe deer contributed more to the transmission of
A. phagocytophilum
than wild boar.
Conclusions
The ungulate species clearly differed in their role as a propagation host and in the transmission of
B. burgdorferi
and
A. phagocytophilum
. This study provides crucial information for ungulate management as a tool to mitigate zoonotic disease risk and argues for adapting management approaches to the local ungulate species composition and the pathogen(s) of concern.
Graphic abstract
Journal Article
The importance of wildlife in the ecology and epidemiology of the TBE virus in Sweden: incidence of human TBE correlates with abundance of deer and hares
by
Jaenson, David G. E.
,
Pettersson, John H.-O.
,
Hjertqvist, Marika
in
Abundance
,
Alces alces
,
Animal behavior
2018
Background
Tick-borne encephalitis (TBE) is one tick-transmitted disease where the human incidence has increased in some European regions during the last two decades. We aim to find the most important factors causing the increasing incidence of human TBE in Sweden. Based on a review of published data we presume that certain temperature-related variables and the population densities of transmission hosts, i.e. small mammals, and of primary tick maintenance hosts, i.e. cervids and lagomorphs, of the TBE virus vector
Ixodes ricinus
, are among the potentially most important factors affecting the TBE incidence. Therefore, we compare hunting data of the major tick maintenance hosts and two of their important predators, and four climatic variables with the annual numbers of human cases of neuroinvasive TBE. Data for six Swedish regions where human TBE incidence is high or has recently increased are examined by a time-series analysis. Results from the six regions are combined using a meta-analytical method.
Results
With a one-year time lag, the roe deer (
Capreolus capreolus
), red deer (
Cervus elaphus
), mountain hare (
Lepus timidus
) and European hare (
Lepus europaeus
) showed positive covariance; the Eurasian elk (moose,
Alces alces
) and fallow deer (
Dama dama
) negative covariance; whereas the wild boar (
Sus scrofa
), lynx (
Lynx lynx
), red fox (
Vulpes vulpes
) and the four climate parameters showed no significant covariance with TBE incidence. All game species combined showed positive covariance.
Conclusions
The epidemiology of TBE varies with time and geography and depends on numerous factors, i.a. climate, virus genotypes, and densities of vectors, tick maintenance hosts and transmission hosts. This study suggests that the increased availability of deer to
I. ricinus
over large areas of potential tick habitats in southern Sweden increased the density and range of
I. ricinus
and created new TBEV foci, which resulted in increased incidence of human TBE. New foci may be established by TBE virus-infected birds, or by birds or migrating mammals infested with TBEV-infected ticks. Generally, persistence of TBE virus foci appears to require presence of transmission-competent small mammals, especially mice (
Apodemus
spp.) or bank voles (
Myodes glareolus
)
.
Journal Article
Experimental infection of wild boars (Sus scrofa) with Rickettsia rickettsii and evaluation of the transmission potential to Amblyomma sculptum ticks
by
Labruna, Marcelo B.
,
de Freitas Paula, Warley Vieira
,
da Silva Krawczak, Felipe
in
Adults
,
Amblyomma - microbiology
,
Amblyomma sculptum
2025
Background
Brazilian spotted fever is a tick-borne disease caused by the bacterium
Rickettsia rickettsii
, whose main vector in Brazil is the tick
Amblyomma sculptum
. Amplifying hosts are essential for the perpetuation of this bacterium in the tick population as they can be sources of infection during bacteremic periods. Recent studies demonstrated the ability of suids (
Sus scrofa
) to sustain populations of
A. sculptum
, one of the main tick species found parasitizing wild boars in the midwestern and southeastern regions of Brazil. In this study, wild boars were experimentally infected with
R. rickettsii
by tick infestation and were evaluated for their ability to transmit the infection to
A. sculptum
ticks, under laboratory conditions.
Methods
Four wild boars were infected with
R. rickettsii
through infestation with
R. rickettsii
-infected
A. sculptum
adults (infected group); a fifth wild boar was infested with uninfected
A. sculptum
adults (control group). Simultaneously, the animals were infested with uninfected larvae and nymphs of
A. sculptum
. The wild boars were monitored for 28 days by clinical examination and hematological tests, real-time quantitative PCR (qPCR) of blood for the detection of
Rickettsia
and inoculation of blood in guinea pigs. IgG antibody titers were followed until the end of the experiment. Unfed nymphs and adults, molted from engorged larvae and nymphs that fed on wild boars, were used to infest susceptible guinea pigs and rabbits; some of these unfed ticks were tested by qPCR for rickettsial detection.
Results
The wild boars showed no clinical or hematological alterations, and bacteremia was not detected by qPCR or inoculation of wild boar blood into guinea pigs. Furthermore, wild boars showed a moderate humoral response, with anti-
R. rickettsii
endpoint titers up to 256 or 512. Rickettsial DNA was not detected in molted ticks after acquisition feeding on wild boars. Moreover, no disease or seroconversion was observed in guinea pigs and rabbits that were infested with ticks originated from wild boar acquisition feeding.
Conclusions
Wild boars seroconverted to
Rickettsia
spp. after being infested with
R. rickettsii
-infected
A. sculptum
; however, they did not develop bacteremia and did not act as competent amplifying hosts of
R. rickettsii
for
A. sculptum
ticks.
Graphical Abstract
Journal Article
An exploratory analysis of demography and movement patterns of dogs: New insights in the ecology of endemic Rocky Mountain-Spotted Fever in Mexicali, Mexico
by
Gomez, Paola
,
López-Pérez, Andrés M.
,
Zazueta, Oscar E.
in
Animal Distribution
,
Animal health
,
Animals
2020
An outbreak of Rocky Mountain spotted fever (RMSF) transmitted by the brown dog tick (Rhipicephalus sanguineus sensu lato) has emerged as a major human and animal health concern in Mexicali, Mexico. Due to high rates of brown dog tick infestation, susceptibility, and association with humans, dogs serve as sentinels and have a key role in the ecology of RMSF. A cross-sectional household questionnaire study was conducted in six rural and urban locations to characterize dog ecology and demography in RMSF high-and low-risk areas of Mexicali. In addition, we tracked movement patterns of 16 dogs using a GPS data logger. Of 253 households, 73% owned dogs, and dog ownership tended to be higher in high-risk areas, with a mean dog:human ratio of 0.43, compared with 0.3 in low-risk areas. Dogs in high-risk areas had higher fecundity and roamed more, but the dog density and numbers of free-roaming dogs were comparable. There was a higher proportion of younger dogs and lower proportion of older dogs in high-risk areas. The high proportion of immunologically naïve puppies in high risk areas could result in a lack of herd immunity leading to a more vulnerable dog and human population. The marked increase of space use of free-roaming dogs in high-risk areas suggests that unrestrained dogs could play an important role in spreading ticks and pathogens. As means to limit RMSF risk, practical changes could include increased efforts for spay-neuter and policies encouraging dog restraint to limit canine roaming and spread of ticks across communities; due to dog density is less impactful such policies may be more useful than restrictions on the number of owned dogs.
Journal Article
A systematic review of the occurrence of Hyalomma ticks associated with birds migrating between Africa and the Northern Hemisphere
by
Rubolini, Diego
,
Epis, Sara
,
Monaco, Federica
in
Africa, Northern - epidemiology
,
Animal Migration
,
Animals
2026
Background
Crimean-Congo haemorrhagic fever (CCHF) is a tick-borne disease endemic to Africa, Southern Europe, and Western Asia. Its main vectors,
Hyalomma
ticks, can spread to and possibly establish populations in non-endemic regions via migratory birds.
Methods
We summarized the association between migratory birds and
Hyalomma
ticks by analysing spatial and temporal patterns in tick prevalence and infestation intensity on migratory birds through a systematic review of studies conducted in Europe, Western Asia, and Northern Africa between 1954 and 2022.
Results
We reviewed 37 studies and retrieved data from one additional unpublished datasets. Overall, we collected data on the occurrence of 3876 ticks, most of which were in immature life stages, from 1553 individuals of 75 migratory bird species. The prevalence of ticks from both the
Hyalomma
genus and
Hyalomma marginatum
complex ticks
(H. marginatum
and
H. rufipes
) on migrating birds declined significantly with increasing latitude of the sampling sites in spring. Additionally, we found that the infestation intensity of both tick groups on migratory birds was significantly higher among intra-Palearctic migrants than in Afro-Palearctic migrants.
Conclusions
This review underscores the role of migratory bird species in spreading
Hyalomma
ticks across the Northern Hemisphere and highlights their potential as an early warning system for CCHF outbreaks. This study demonstrates the need to integrate migratory birds into CCHF surveillance systems as sentinels of
Hyalomma
tick dispersal, providing a reference framework for monitoring tick-borne risks along avian migration routes.
Graphical Abstract
Journal Article
Implication of Nilgai Antelope (Artiodactyla: Bovidae) in Reinfestations of Rhipicephalus (Boophilus) microplus (Acari: Ixodidae) in South Texas: A Review and Update
by
Lohmeyer, Kimberly H.
,
León, Adalberto A. Pérez de
,
May, Melinda A.
in
Acaricides
,
Animals
,
Antelopes
2018
The Cattle Fever Tick Eradication Program was the first parasite eradication program of veterinary importance in the United States and is considered to be one of the greatest disease eradication programs of all time. The program's utilization of pasture vacation and dipping of cattle in acaricide has been extremely successful for controlling Rhipicephalus (Boophilus) microplus (Canestrini) and R. (B.) annulatus (Say), collectively known as cattle fever ticks, on cattle along the Texas border with Mexico for decades. However, the increase of white-tailed deer, Odocoileus virginianus (Zimmermann), populations in South Texas over the last 50 yr has compromised the success of the program. R. (B.) microplus and R. (B.) annulatus infestation data have confirmed that O. virginianus can support the maintenance and movement of both species of cattle fever tick within the permanent quarantine or buffer zone in SouthTexas along the Rio Grande, and also in the cattle fever tick-free area north and east of the buffer zone. Over the last two decades, increasing populations of exotic nilgai antelope, Boselaphus tragocamelus (Pallas), in South Texas have further complicated cattle fever tick eradication efforts. Historical cattle fever tick infestation data, host source data, and geographical data support the continued role of O. virginianus in maintaining reinfestations of R. (B.) microplus and R. (B.) annulatus in South Texas as well as the increasing role of nilgai antelope in cattle fever tick maintenance and dispersal.
Journal Article
A combined transcriptomic approach to identify candidates for an anti-tick vaccine blocking B. afzelii transmission
by
Takumi, Katsuhisa
,
Mahmood, Sazzad
,
Sima, Radek
in
631/250/590
,
631/326/417/2546
,
631/326/417/2547
2020
Ixodes ricinus
is the vector for
Borrelia afzelii
, the predominant cause of Lyme borreliosis in Europe, whereas
Ixodes scapularis
is the vector for
Borrelia burgdorferi
in the USA. Transcription of several
I. scapularis
genes changes in the presence of
B. burgdorferi
and contributes to successful infection. To what extend
B. afzelii
influences gene expression in
I. ricinus
salivary glands is largely unknown. Therefore, we measured expression of uninfected vs. infected tick salivary gland genes during tick feeding using Massive Analysis of cDNA Ends (MACE) and RNAseq, quantifying 26.179 unique transcripts. While tick feeding was the main differentiator,
B. afzelii
infection significantly affected expression of hundreds of transcripts, including 465 transcripts after 24 h of tick feeding. Validation of the top-20
B. afzelii
-upregulated transcripts at 24 h of tick feeding in ten biological genetic distinct replicates showed that expression varied extensively. Three transcripts could be validated, a basic tail protein, a lipocalin and an ixodegrin, and might be involved in
B. afzelii
transmission. However, vaccination with recombinant forms of these proteins only marginally altered
B. afzelii
infection in
I. ricinus
-challenged mice for one of the proteins. Collectively, our data show that identification of tick salivary genes upregulated in the presence of pathogens could serve to identify potential pathogen-blocking vaccine candidates.
Journal Article
Forest Structure and Roe Deer Abundance Predict Tick-Borne Encephalitis Risk in Italy
2009
The Western Tick-borne encephalitis (TBE) virus often causes devastating or lethal disease. In Europe, the number of human TBE cases has increased dramatically over the last decade, risk areas are expanding and new foci are being discovered every year. The early localisation of new TBE foci and the identification of the main risk factors associated with disease emergence represent a priority for the public health community. Although a number of socio-economic parameters have been suggested to explain TBE upsurges in eastern Europe, the principal driving factors in relatively stable western European countries have not been identified.
In this paper, we analyse the correlation between the upsurge of TBE in 17 alpine provinces in northern Italy from 1992 to 2006 with climatic variables, forest structure (as a proxy for small mammal reservoir host abundance), and abundance of the principal large vertebrate tick host (roe deer), using datasets available for the last 40 years. No significant differences between the pattern of changes in climatic variables in provinces where TBE has emerged compared to provinces were no clinical TBE cases have been observed to date. Instead, the best model for explaining the increase in TBE incidence in humans in this area include changes in forest structure, in particular the ratio of coppice to high stand forest, and the density of roe deer.
Substantial changes in vegetation structure that improve habitat suitability for the main TBE reservoir hosts (small mammals), as well as an increase in roe deer abundance due to changes in land and wildlife management practices, are likely to be among the most crucial factors affecting the circulation potential of Western TBE virus and, consequently, the risk of TBE emergence in humans in western Europe. We believe our approach will be useful in predicting TBE risk on a wider scale.
Journal Article
Genetic profiling for Anaplasma and Ehrlichia species in ticks collected in the Eastern Cape Province of South Africa
by
Adegborioye, Abiodun
,
Mmbaga, Elia J.
,
Obi, Larry C.
in
Agriculture
,
Anaplasma - classification
,
Anaplasma - genetics
2017
Background
Anaplasma
and
Ehrlichia
are emerging tick-borne pathogens that cause anaplasmosis and ehrlichiosis in humans and other animals worldwide. Infections caused by these pathogens are deadly if left untreated. There has been relatively no systematic survey of these pathogens among ticks in South Africa, thus necessitating this study. The presence of
Anaplasma
and
Ehrlichia
species were demonstrated by PCR in ticks collected from domestic ruminants at some selected communities in the Eastern Cape of South Africa. The ticks were identified by morphological characteristics and thereafter processed to extract bacterial DNA, which was analyzed for the presence of genetic materials of
Anaplasma
and
Ehrlichia
.
Results
Three genera of ticks comprising five species were identified. The screening yielded 16 positive genetic materials that were phylogenetically related to
Ehrlichia
sequences obtained from GenBank, while no positive result was obtained for
Anaplasma
. The obtained
Ehrlichia
sequences were closely related to
E. chaffeensis, E. canis
,
E. muris
and the incompletely described
Ehrlichia
sp. UFMG-EV and
Ehrlichia
sp. UFMT.
Conclusion
The findings showed that ticks in the studied areas were infected with
Ehrlichia
spp. and that the possibility of transmission to humans who might be tick infested is high.
Journal Article