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"England, Marion"
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Pupal Exuviae of Culex Pipiens L. (Diptera: Culicidae) Can be Utilised as a Non-Invasive Method of Biotype Differentiation
by
England, Marion
,
Cameron, Mary
,
Carpenter, Simon
in
Arbovirus
,
Biological Techniques
,
Biomedical and Life Sciences
2024
Background
Culex pipiens
L. is a principal vector of zoonotic arboviruses in Europe, acting in both an amplification role in enzootic transmission between avian hosts and as a bridge vector between avian hosts and mammals. The species consists of two forms which are indistinguishable using morphological methods but possess varying ecological and physiological traits that influence their vector capacity. In this study we validate methods that can be used to extract trace DNA from single pupal exuviae of
Cx. pipiens
for use in molecular speciation of samples. These DNA extraction methods are compared using measurement of the total yield and successful identification using a real-time polymerase chain reaction (PCR) assay.
Results
Genomic DNA was initially extracted from colony-derived individuals using an ethanol precipitation method, two commercially available DNA extraction kits: DNeasy® Blood & Tissue Kit (Qiagen, UK) and Wizard® SV Genomic DNA Purification System (Promega, UK) and a direct real-time PCR method. Time elapsed between eclosion and processing of pupae significantly influenced
Cx. pipiens
form identification as nucleic acid concentration and PCR amplification success decreased with increased time elapsed. Real-time PCR amplification success, however, was not shown to vary significantly between the three extraction methods, with all methods successfully identifying all samples, but the direct real-time PCR method achieved a lesser amplification success rate of 70% (
n
= 20 for each treatment). More variable results were produced when field-derived exuviae were used, with no significant difference in real-time PCR amplification success found across the four methods and a lower overall rate of successful identification of 55–80%.
Conclusions
This study shows that both colony and field derived
Cx. pipiens
pupal exuviae can be a useful non-invasive source of trace DNA permitting accurate biotype differentiation for at least twenty-four hours post-eclosion. The significance and utility of this technique in ecological and behavioural studies of
Cx. pipiens
is discussed and recommendations made for use according to experimental scenario.
Journal Article
Culicoides species composition and molecular identification of host blood meals at two zoos in the UK
by
England, Marion E.
,
Gubbins, Simon
,
Sanders, Christopher J.
in
African horse sickness virus
,
Animal feeding behavior
,
Animals
2020
Background
Culicoides
biting midges are biological vectors of arboviruses including bluetongue virus (BTV), Schmallenberg virus (SBV) and African horse sickness virus (AHSV). Zoos are home to a wide range of ‘at risk’ exotic and native species of animals. These animals have a high value both in monetary terms, conservation significance and breeding potential. To understand the risk these viruses pose to zoo animals, it is necessary to characterise the
Culicoides
fauna at zoos and determine which potential vector species are feeding on which hosts.
Methods
Light-suction traps were used at two UK zoos: the Zoological Society of London (ZSL) London Zoo (LZ) and ZSL Whipsnade Zoo (WZ). Traps were run one night each week from June 2014 to June 2015.
Culicoides
were morphologically identified to the species level and any blood-fed
Culicoides
were processed for blood-meal analysis. DNA from blood meals was extracted and amplified using previously published primers. Sequencing was then carried out to determine the host species.
Results
A total of 11,648
Culicoides
were trapped and identified (
n
= 5880 from ZSL WZ;
n
= 5768 from ZSL LZ), constituting 25 different species. The six putative vectors of BTV, SBV and AHSV in northern Europe were found at both zoos and made up the majority of the total catch (
n
= 10,701). A total of 31 host sequences were obtained from blood-fed
Culicoides. Culicoides obsoletus
/
C. scoticus
,
Culicoides dewulfi
,
Culicoides parroti
and
Culicoides punctatus
were found to be biting a wide range of mammals including Bactrian camels, Indian rhinoceros, Asian elephants and humans, with
Culicoides obsoletus/C. scoticus
also biting Darwin’s rhea. The bird-biting species,
Culicoides achrayi
, was found to be feeding on blackbirds, blue tits, magpies and carrion crows.
Conclusions
To our knowledge, this is the first study to directly confirm blood-feeding of
Culicoides
on exotic zoo animals in the UK and shows that they are able to utilise a wide range of exotic as well as native host species. Due to the susceptibility of some zoo animals to
Culicoides
-borne arboviruses, this study demonstrates that in the event of an outbreak of one of these viruses in the UK, preventative and mitigating measures would need to be taken.
Journal Article
The efficacy of vector-proof accommodation for the protection of livestock against Culicoides biting midges
by
England, Marion
,
Nicholls, Melanie
,
Gubbins, Simon
in
Accommodation
,
Analysis
,
Animal welfare
2025
Background
Bluetongue virus serotype 3 emerged in northern Europe and the UK for the first time in 2023, causing significant losses of domestic ruminants. Vector-proof accommodation is considered a potential control measure to reduce host-vector contact, but this has not been investigated in northern Europe. This study investigates the efficacy of vector-proof accommodation to protect livestock from
Culicoides
biting midges in the UK.
Methods
Four identical stables were fitted with various levels of vector-proofing, using readily available materials, and a CDC light trap in each. Two further CDC light traps were set outside the stables. For 19 nights during June and July 2024, two pygmy goats were placed into each stable and traps were run until the following morning to collect
Culicoides
. Trap catch comparisons for total
Culicoides
,
Avaritia
females and
Culicoides obsoletus/scoticus
were analysed using negative binomial generalised linear models.
Results
The use of brushes around closed doors resulted in a 14-fold reduction in the number of
Culicoides
collected from indoor traps. There was an additional effect of installing fine mesh over slatted windows, but this was not significant. Housing animals without shutting the door had no effect on the number of
Culicoides
collected compared to outside. Blood meal analysis confirmed
Culicoides obsoletus/scoticus
collected from inside stables were feeding on the goats.
Conclusions
This study has shown that small animal housing can be cheaply and easily fitted with readily available vector-proof materials to effectively protect a small number of animals from
Culicoides
. The efficacy and suitability of vector-proof accommodation may vary with time of year, and consideration needs to be given to the welfare implications of housing animals during the summer.
Graphical Abstract
Journal Article
Thermal limits for flight activity of field-collected Culicoides in the United Kingdom defined under laboratory conditions
by
Darpel, Karin E.
,
England, Marion E.
,
Gubbins, Simon
in
adults
,
African horse sickness virus
,
Animal flight
2021
Background
Culicoides
biting midges (Diptera: Ceratopogonidae) are biological vectors of internationally important arboviruses and inflict biting nuisance on humans, companion animals and livestock. In temperate regions, transmission of arboviruses is limited by temperature thresholds, in both replication and dissemination of arboviruses within the vector and in the flight activity of adult
Culicoides
. This study aims to determine the cold-temperature thresholds for flight activity of
Culicoides
from the UK under laboratory conditions.
Methods
Over 18,000
Culicoides
adults were collected from the field using 4 W down-draught miniature ultraviolet Centers for Disease Control traps. Populations of
Culicoides
were sampled at three different geographical locations within the UK during the summer months and again in the autumn at one geographical location. Activity at constant temperatures was assessed using a bioassay that detected movement of adult
Culicoides
towards an ultraviolet light source over a 24-h period.
Results
The proportion of active adult
Culicoides
increased with temperature but cold temperature thresholds for activity varied significantly according to collection season and location. Populations dominated by the subgenus
Avaritia
collected in South East England had a lower activity threshold temperature in the autumn (4 °C) compared with populations collected in the summer (10 °C). Within the subgenus
Avaritia
,
Culicoides scoticus
was significantly more active across all temperatures tested than
Culicoides obsoletus
within the experimental setup. Populations of
Culicoides impunctatus
collected in the North East of England were only active once temperatures reached 14 °C. Preliminary data suggested flight activity of the subgenus
Avaritia
does not differ between populations in South East England and those in the Scottish Borders.
Conclusions
These findings demonstrate seasonal changes in temperature thresholds for flight and across different populations of
Culicoides.
These data, alongside that defining thresholds for virus replication within
Culicoides,
provide a primary tool for risk assessment of arbovirus transmission in temperate regions. In addition, the study also provides a comparison with thermal limits derived directly from light-suction trapping data, which is currently used as the main method to define adult
Culicoides
activity during surveillance.
Graphical Abstract
Journal Article
Drivers of Crimean-Congo Hemorrhagic Fever in Natural Host and Effects of Control Measures, Bulgaria
by
Charleston, Bryan
,
Hewson, Roger
,
Tchakarova, Simona R.
in
Analysis
,
Animal diseases
,
Animals
2025
Crimean-Congo hemorrhagic fever (CCHF) is an emerging tickborne disease and a World Health Organization priority. Although humans are accidental hosts, infection can lead to hemorrhagic fever with a high fatality rate. Domestic animals play a critical role in disease transmission, but infected animals do not show clinical signs and viremia is short; thus, CCHF virus (CCHFV) infections can remain unobserved. During 2017-2019, we conducted 2 sequential observational studies followed by a multisite randomized controlled trial to determine spatial-temporal patterns and quantify drivers for CCHFV exposure in a natural host (sheep) in a CCHF-endemic area of Bulgaria. We found high-risk areas embedded in endemic regions. Animal characteristics were not correlated with seropositivity; however, a seasonality effect was observed, suggesting sampling time was a potential confounder. Force of infection varied across farms and over time. CCHFV transmission heterogeneity among farms is driven by preventive measures used to reduce exposure to ticks.
Journal Article
Porcisia transmission by prediuresis of sand flies
by
England, Marion
,
Shaw, Jeffrey
,
Becvar, Tomas
in
Biting
,
Cellular and Infection Microbiology
,
Ceratopogonidae
2022
Parasites of the genus Porcisia , together with the genus Endotrypanum , form a sister clade to the species-rich and medically important genus Leishmania . Both Porcisia species, P. hertigi and P. deanei , are dixenous parasites of Neotropical porcupines. Almost 50 years after their first discovery, knowledge of their life cycle remains poor and their insect vectors are unknown. Because competent vectors of their closest phylogenetic relatives, genera Endotrypanum and Leishmania , are phlebotomine sand flies (Diptera: Psychodidae) and/or biting midges (Diptera: Ceratopogonidae), we examined here the potential of both sand flies and biting midges to transmit Porcisia parasites. The insects ( Lutzomyia longipalpis, L. migonei and Culicoides sonorensis ) were exposed to parasites through the chicken skin membrane and dissected at various time intervals post bloodmeal. Potentially infected females were also allowed to feed on the ears of anaesthetized BALB/c mice and the presence of parasite DNA was subsequently confirmed in the mice by PCR. Porcisia hertigi did not survive defecation in L. longipalpis or L. migonei , suggesting that these sand fly species are unlikely to serve as natural vectors of this parasite. Similarly, P. hertigi infections were lost in Culicoides midges. In contrast, mature P. deanei infections developed in 51-61% of L. longipalpis females, 7.3% of L. migonei females and 7.7% of Culicoides sonorensis females. In all three vector species, P. deanei colonized predominantly Malpighian tubules and produced metacyclic infective forms. Transmission of P. daenei to BALB/c mice was demonstrated via the prediuresis of L. longipalpis females. This mode of transmission, as well the colonization of Malpighian tubules as the dominant tissue of the vector, is unique among trypanosomatids. In conclusion, we demonstrated the vector competence of L. longipalpis for P. deanei but not for P. hertigi , and further studies are needed to evaluate competence of other Neotropical vectors for these neglected parasites.
Journal Article
Effects of storage conditions and digestion time on DNA amplification of biting midge (Culicoides) blood meals
2023
Background
Molecular analysis of blood meals is increasingly used to identify the hosts of biting insects such as midges and mosquitoes. Successful host identification depends on the availability of sufficient host DNA template for PCR amplification, making it important to understand how amplification success changes under different storage conditions and with different durations of blood meal digestion within the insect gut before being placed into the storage medium.
Method
We characterised and compared the digestion profile of two species of
Culicoides
over a 96-h period using a novel set of general vertebrate primers targeting the 16S rRNA gene. A set number of individuals from each species were killed over 13 time points post-blood feeding and preserved in 95% ethanol. Samples were stored either at ambient room temperature or in a − 20 °C freezer to examine the effect of storage condition on the PCR amplification success of host DNA.
Results
We found that amplification success across the 96-h sampling period post-feeding was reduced from 96 to 6% and 96% to 14% for
Culicoides nubeculosus
and
Culicoides sonorensis
, respectively. We found no effect of storage condition on PCR amplification success, and storage in 95% ethanol was sufficient to maintain high rates of amplifiable host DNA for at least 9 months, even at room temperature.
Conclusions
These findings highlight the limited time frame during which an individual may contain amplifiable host DNA and demonstrate the importance of timely sample capture and processing post-blood feeding. Moreover, storage in 95% ethanol alone is sufficient to limit host DNA degradation. These results are relevant to the design of studies investigating the biting behaviour and disease transmission potential of
Culicoides
and other biting Diptera
.
Graphical Abstract
Journal Article
Culicoides species composition and abundance on Irish cattle farms: implications for arboviral disease transmission
2018
Background
Following the emergence of Schmallenberg virus (SBV) in Ireland in 2012, a sentinel herd surveillance program was established in the south of Ireland with the primary aim of investigating the species composition and abundance of
Culicoides
on livestock farms in the region.
Methods
Ultraviolet-light trapping for
Culicoides
was carried out on 10 sentinel farms. Each site was sampled fortnightly over 16 weeks (21st July to 5th November 2014). One Onderstepoort Veterinary Institute UV light trap was run overnight at each site and catches were transferred immediately into 70% ethanol.
Culicoides
were morphologically identified to species level. Collection site habitats were characterised using the Phase 1 habitat survey technique (Joint Nature Conservation Committee).
Results
A total of 23,929 individual
Culicoides
from 20 species was identified, including one species identified in Ireland for the first time,
Culicoides cameroni.
The most abundant species identified were
Culicoides obsoletus/Culicoides scoticus
(38%),
Culicoides dewulfi
(36%),
Culicoides pulicaris
(9%),
Culicoides chiopterus
(5%) and
Culicoides punctatus
(5%), comprising 93% of all
Culicoides
specimens identified. Collection site habitats were dominated by improved grassland and a combination of broadleaf woodland and native woodland species.
Conclusions
The most abundant species of
Culicoides
identified were the putative vectors of bluetongue virus (BTV) and SBV in northern Europe. Their presence and abundance demonstrates the potential for future transmission of arboviruses among livestock in this region.
Journal Article
A Qualitative Risk Assessment for Bluetongue Disease and African Horse Sickness: The Risk of Entry and Exposure at a UK Zoo
by
Cameron, Mary
,
England, Marion
,
Nelson, Elisabeth
in
African horse sickness
,
African Horse Sickness - epidemiology
,
African Horse Sickness Virus
2022
Bluetongue virus (BTV) and African horse sickness virus (AHSV) cause economically important diseases that are currently exotic to the United Kingdom (UK), but have significant potential for introduction and onward transmission. Given the susceptibility of animals kept in zoo collections to vector-borne diseases, a qualitative risk assessment for the introduction of BTV and AHSV to ZSL London Zoo was performed. Risk pathways for each virus were identified and assessed using published literature, animal import data and outputs from epidemiological models. Direct imports of infected animals, as well as wind-borne infected Culicoides, were considered as routes of incursion. The proximity of ongoing disease events in mainland Europe and proven capability of transmission to the UK places ZSL London Zoo at higher risk of BTV release and exposure (estimated as low to medium) than AHSV (estimated as very low to low). The recent long-range expansion of AHSV into Thailand from southern Africa highlights the need for vector competence studies of Palearctic Culicoides for AHSV to assess the risk of transmission in this region.
Journal Article
How often do mosquitoes bite humans in southern England? A standardised summer trial at four sites reveals spatial, temporal and site-related variation in biting rates
2017
Background
This field-based study examined the abundance and species complement of mosquitoes (Diptera: Culicidae) attracted to humans at four sites in the United Kingdom (UK). The study used a systematic approach to directly measure feeding by mosquitoes on humans at multiple sites and using multiple volunteers. Quantifying how frequently humans are bitten in the field by mosquitoes is a fundamental parameter in assessing arthropod-borne virus transmission.
Methods
Human landing catches were conducted using a standardised protocol by multiple volunteers at four rural sites between July and August 2013. Collections commenced two hours prior to sunset and lasted for a total of four hours. To reduce bias occurring due to collection point or to the individual attractiveness of the volunteer to mosquitoes, each collection was divided into eight collection periods, with volunteers rotated by randomised Latin square design between four sampling points per site. While the aim was to collect mosquitoes prior to feeding, the source of blood meals from any engorged specimens was also identified by DNA barcoding.
Results
Three of the four sites yielded human-biting mosquito populations for a total of 915 mosquitoes of fifteen species/species groups. Mosquito species composition and biting rates differed significantly between sites, with individual volunteers collecting between 0 and 89 mosquitoes (over 200 per hour) of up to six species per collection period.
Coquillettidia richiardii
(Ficalbi, 1889) was responsible for the highest recorded biting rates at any one site, reaching 161 bites per hour, whilst maximum biting rates of 55 bites per hour were recorded for
Culex modestus
(Ficalbi, 1889). Human-biting by
Culex pipiens
(L., 1758) form
pipiens
was also observed at two sites, but at much lower rates when compared to other species.
Conclusions
Several mosquito species are responsible for human nuisance biting pressure in southern England, although human exposure to biting may be largely limited to evening outdoor activities. This study indicates
Cx. modestus
can be a major human-biting species in the UK whilst
Cx. pipiens
f.
pipiens
may show greater opportunistic human-biting than indicated by earlier studies.
Journal Article