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1.
Nat Microbiol ; 8(1): 135-149, 2023 01.
Artículo en Inglés | MEDLINE | ID: mdl-36604511

RESUMEN

Aedes aegypti and A. albopictus mosquitoes are the main vectors for dengue virus (DENV) and other arboviruses, including Zika virus (ZIKV). Understanding the factors that affect transmission of arboviruses from mosquitoes to humans is a priority because it could inform public health and targeted interventions. Reasoning that interactions among viruses in the vector insect might affect transmission, we analysed the viromes of 815 urban Aedes mosquitoes collected from 12 countries worldwide. Two mosquito-specific viruses, Phasi Charoen-like virus (PCLV) and Humaita Tubiacanga virus (HTV), were the most abundant in A. aegypti worldwide. Spatiotemporal analyses of virus circulation in an endemic urban area revealed a 200% increase in chances of having DENV in wild A. aegypti mosquitoes when both HTV and PCLV were present. Using a mouse model in the laboratory, we showed that the presence of HTV and PCLV increased the ability of mosquitoes to transmit DENV and ZIKV to a vertebrate host. By transcriptomic analysis, we found that in DENV-infected mosquitoes, HTV and PCLV block the downregulation of histone H4, which we identify as an important proviral host factor in vivo.


Asunto(s)
Aedes , Arbovirus , Virus del Dengue , Dengue , Virus de Insectos , Virus ARN , Infección por el Virus Zika , Virus Zika , Animales , Humanos , Virus Zika/genética , Virus de Insectos/fisiología , Virus del Dengue/genética , Mosquitos Vectores , Arbovirus/genética
2.
PLoS Biol ; 19(4): e3001201, 2021 04.
Artículo en Inglés | MEDLINE | ID: mdl-33872300

RESUMEN

Most vertebrate RNA viruses show pervasive suppression of CpG and UpA dinucleotides, closely resembling the dinucleotide composition of host cell transcriptomes. In contrast, CpG suppression is absent in both invertebrate mRNA and RNA viruses that exclusively infect arthropods. Arthropod-borne (arbo) viruses are transmitted between vertebrate hosts by invertebrate vectors and thus encounter potentially conflicting evolutionary pressures in the different cytoplasmic environments. Using a newly developed Zika virus (ZIKV) model, we have investigated how demands for CpG suppression in vertebrate cells can be reconciled with potentially quite different compositional requirements in invertebrates and how this affects ZIKV replication and transmission. Mutant viruses with synonymously elevated CpG or UpA dinucleotide frequencies showed attenuated replication in vertebrate cell lines, which was rescued by knockout of the zinc-finger antiviral protein (ZAP). Conversely, in mosquito cells, ZIKV mutants with elevated CpG dinucleotide frequencies showed substantially enhanced replication compared to wild type. Host-driven effects on virus replication attenuation and enhancement were even more apparent in mouse and mosquito models. Infections with CpG- or UpA-high ZIKV mutants in mice did not cause typical ZIKV-induced tissue damage and completely protected mice during subsequent challenge with wild-type virus, which demonstrates their potential as live-attenuated vaccines. In contrast, the CpG-high mutants displayed enhanced replication in Aedes aegypti mosquitoes and a larger proportion of mosquitoes carried infectious virus in their saliva. These findings show that mosquito cells are also capable of discriminating RNA based on dinucleotide composition. However, the evolutionary pressure on the CpG dinucleotides of viral genomes in arthropod vectors directly opposes the pressure present in vertebrate host cells, which provides evidence that an adaptive compromise is required for arbovirus transmission. This suggests that the genome composition of arbo flaviviruses is crucial to maintain the balance between high-level replication in the vertebrate host and persistent replication in the mosquito vector.


Asunto(s)
Evolución Molecular , Genoma Viral/genética , Interacciones Huésped-Patógeno/genética , Virus Zika/genética , Células A549 , Aedes/virología , Animales , Composición de Base/fisiología , Secuencia de Bases/genética , Línea Celular , Chlorocebus aethiops , Islas de CpG/fisiología , Fosfatos de Dinucleósidos/análisis , Fosfatos de Dinucleósidos/genética , Adaptación al Huésped/genética , Humanos , Masculino , Mamíferos/virología , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Mosquitos Vectores/genética , Mosquitos Vectores/virología , ARN Viral/química , ARN Viral/genética , Selección Genética/fisiología , Células Vero , Infección por el Virus Zika/genética , Infección por el Virus Zika/transmisión , Infección por el Virus Zika/virología
3.
Parasit Vectors ; 14(1): 194, 2021 Apr 08.
Artículo en Inglés | MEDLINE | ID: mdl-33832527

RESUMEN

BACKGROUND: Infectious blood meal experiments have been frequently performed with different virus-vector combinations to assess the transmission potential of arthropod-borne (arbo)viruses. A wide variety of host blood sources have been used to deliver arboviruses to their arthropod vectors in laboratory studies. The type of blood used during vector competence experiments does not always reflect the blood from the viremic vertebrate hosts in the field, but little is known about the effect of blood source on the experimental outcome of vector competence studies. Here we investigated the effect of avian versus human blood on the infection and transmission rates of the zoonotic Usutu virus (USUV) in its primary mosquito vector Culex pipiens. METHODS: Cx. pipiens biotypes (pipiens and molestus) were orally infected with USUV through infectious blood meals containing either chicken or human whole blood. The USUV infection and transmission rates were determined by checking mosquito bodies and saliva for USUV presence after 14 days of incubation at 28 °C. In addition, viral titers were determined for USUV-positive mosquito bodies and saliva. RESULTS: Human and chicken blood lead to similar USUV transmission rates for Cx. pipiens biotype pipiens (18% and 15%, respectively), while human blood moderately but not significantly increased the transmission rate (30%) compared to chicken blood (17%) for biotype molestus. USUV infection rates with human blood were consistently higher in both Cx. pipiens biotypes compared to chicken blood. In virus-positive mosquitoes, USUV body and saliva titers did not differ between mosquitoes taking either human or chicken blood. Importantly, biotype molestus had much lower USUV saliva titers compared to biotype pipiens, regardless of which blood was offered. CONCLUSIONS: Infection of mosquitoes with human blood led to higher USUV infection rates as compared to chicken blood. However, the blood source had no effect on the vector competence for USUV. Interestingly, biotype molestus is less likely to transmit USUV compared to biotype pipiens due to very low virus titers in the saliva.


Asunto(s)
Culex/fisiología , Infecciones por Flavivirus/veterinaria , Infecciones por Flavivirus/virología , Flavivirus/fisiología , Mosquitos Vectores/fisiología , Enfermedades de las Aves de Corral/virología , Animales , Sangre/virología , Pollos/virología , Culex/virología , Conducta Alimentaria , Flavivirus/genética , Flavivirus/aislamiento & purificación , Infecciones por Flavivirus/sangre , Infecciones por Flavivirus/transmisión , Humanos , Mosquitos Vectores/virología , Enfermedades de las Aves de Corral/sangre , Enfermedades de las Aves de Corral/transmisión , Zoonosis Virales/transmisión , Zoonosis Virales/virología
4.
Sci Rep ; 11(1): 1477, 2021 01 14.
Artículo en Inglés | MEDLINE | ID: mdl-33446733

RESUMEN

Rift Valley fever virus (RVFV) is a mosquito-borne bunyavirus that is pathogenic to ruminants and humans. The virus is endemic to Africa and the Arabian Peninsula where outbreaks are characterized by abortion storms and mortality of newborns, particularly in sheep herds. Vector competence experiments in laboratory settings have suggested that over 50 mosquito species are capable of transmitting RVFV. Transmission of mosquito-borne viruses in the field is however influenced by numerous factors, including population densities, blood feeding behavior, extrinsic incubation period, longevity of vectors, and viremia levels in vertebrate hosts. Animal models to study these important aspects of RVFV transmission are currently lacking. In the present work, RVFV was transmitted to European (Texel-swifter cross-breed) lambs by laboratory-reared Aedes aegypti mosquitoes that were infected either by membrane feeding on a virus-spiked blood meal or by feeding on lambs that developed viremia after intravenous inoculation of RVFV. Feeding of mosquitoes on viremic lambs resulted in strikingly higher infection rates as compared to membrane feeding. Subsequent transmission of RVFV from lamb to lamb by infected mosquitoes was highly efficient in both models. The animal models described here can be used to study mosquito-mediated transmission of RVFV among the major natural target species and to evaluate the efficacy of vaccines against mosquito-mediated RVFV infection.


Asunto(s)
Fiebre del Valle del Rift/epidemiología , Fiebre del Valle del Rift/transmisión , Virus de la Fiebre del Valle del Rift/metabolismo , Aedes/virología , Animales , Brotes de Enfermedades , Vectores de Enfermedades , Modelos Animales , Mosquitos Vectores/virología , Virus de la Fiebre del Valle del Rift/patogenicidad , Oveja Doméstica/virología
5.
Emerg Microbes Infect ; 9(1): 2642-2652, 2020 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-33215969

RESUMEN

Usutu virus (USUV) and West Nile virus (WNV) are closely related mosquito-borne flaviviruses that are mainly transmitted between bird hosts by vector mosquitoes. Infections in humans are incidental but can cause severe disease. USUV is endemic in large parts of Europe, while WNV mainly circulates in Southern Europe. In recent years, WNV is also frequently detected in Northern Europe, thereby expanding the area where both viruses co-circulate. However, it remains unclear how USUV may affect the future spread of WNV and the likelihood of human co-infection. Here we investigated whether co-infections with both viruses in cell lines and their primary mosquito vector, Culex pipiens, affect virus replication and transmission dynamics. We show that USUV is outcompeted by WNV in mammalian, avian and mosquito cells during co-infection. Mosquitoes that were exposed to both viruses simultaneously via infectious blood meal displayed significantly reduced USUV transmission compared to mosquitoes that were only exposed to USUV (from 15% to 3%), while the infection and transmission of WNV was unaffected. In contrast, when mosquitoes were pre-infected with USUV via infectious blood meal, WNV transmission was significantly reduced (from 44% to 17%). Injection experiments established the involvement of the midgut in the observed USUV-mediated WNV inhibition. The competition between USUV and WNV during co-infection clearly indicates that the chance of concurrent USUV and WNV transmission via a single mosquito bite is low. The competitive relation between USUV and WNV may impact virus transmission dynamics in the field and affect the epidemiology of WNV in Europe.


Asunto(s)
Coinfección/virología , Culex/virología , Infecciones por Flavivirus/transmisión , Flavivirus/fisiología , Virus del Nilo Occidental/fisiología , Animales , Línea Celular , Chlorocebus aethiops , Infecciones por Flavivirus/virología , Insectos Vectores/virología , Mosquitos Vectores/virología , Células Vero , Carga Viral , Replicación Viral , Fiebre del Nilo Occidental/transmisión , Fiebre del Nilo Occidental/virología
6.
Viruses ; 12(6)2020 06 19.
Artículo en Inglés | MEDLINE | ID: mdl-32575394

RESUMEN

Zika virus (ZIKV) is a mosquito-borne pathogen that caused a large outbreak in the Americas in 2015 and 2016. The virus is currently present in tropical areas around the globe and can cause severe disease in humans, including Guillain-Barré syndrome and congenital microcephaly. The tropical yellow fever mosquito, Aedes aegypti, is the main vector in the urban transmission cycles of ZIKV. The discovery of ZIKV in wild-caught Culex mosquitoes and the ability of Culex quinquefasciatus mosquitoes to transmit ZIKV in the laboratory raised the question of whether the common house mosquito Culex pipiens, which is abundantly present in temperate regions in North America, Asia and Europe, could also be involved in ZIKV transmission. In this study, we investigated the vector competence of Cx. pipiens (biotypes molestus and pipiens) from the Netherlands for ZIKV, using Usutu virus as a control. After an infectious blood meal containing ZIKV, none of the tested mosquitoes accumulated ZIKV in the saliva, although 2% of the Cx. pipiens pipiens mosquitoes showed ZIKV-positive bodies. To test the barrier function of the mosquito midgut on virus transmission, ZIKV was forced into Cx. pipiens mosquitoes by intrathoracic injection, resulting in 74% (molestus) and 78% (pipiens) ZIKV-positive bodies. Strikingly, 14% (molestus) and 7% (pipiens) of the tested mosquitoes accumulated ZIKV in the saliva after injection. This is the first demonstration of ZIKV accumulation in the saliva of Cx. pipiens upon forced infection. Nevertheless, a strong midgut barrier restricted virus dissemination in the mosquito after oral exposure and we, therefore, consider Cx. pipiens as a highly inefficient vector for ZIKV.


Asunto(s)
Culex/virología , Saliva/virología , Virus Zika/crecimiento & desarrollo , Virus Zika/aislamiento & purificación , Animales , Línea Celular , Chlorocebus aethiops , Flavivirus/crecimiento & desarrollo , Inyecciones , Mosquitos Vectores/virología , Países Bajos , Especificidad de la Especie , Células Vero , Infección por el Virus Zika/transmisión
7.
PLoS Negl Trop Dis ; 14(4): e0008217, 2020 04.
Artículo en Inglés | MEDLINE | ID: mdl-32282830

RESUMEN

BACKGROUND: The Asian bush mosquito Aedes japonicus is invading Europe and was first discovered in Lelystad, the Netherlands in 2013, where it has established a permanent population. In this study, we investigated the vector competence of Ae. japonicus from the Netherlands for the emerging Zika virus (ZIKV) and zoonotic Usutu virus (USUV). ZIKV causes severe congenital microcephaly and Guillain-Barré syndrome in humans. USUV is closely related to West Nile virus, has recently spread throughout Europe and is causing mass mortality of birds. USUV infection in humans can result in clinical manifestations ranging from mild disease to severe neurological impairments. METHODOLOGY/PRINCIPAL FINDINGS: In our study, field-collected Ae. japonicus females received an infectious blood meal with ZIKV or USUV by droplet feeding. After 14 days at 28°C, 3% of the ZIKV-blood fed mosquitoes and 13% of the USUV-blood fed mosquitoes showed virus-positive saliva, indicating that Ae. japonicus can transmit both viruses. To investigate the effect of the mosquito midgut barrier on virus transmission, female mosquitoes were intrathoracically injected with ZIKV or USUV. Of the injected mosquitoes, 96% (ZIKV) and 88% (USUV) showed virus-positive saliva after 14 days at 28°C. This indicates that ZIKV and USUV can efficiently replicate in Ae. japonicus but that a strong midgut barrier is normally restricting virus dissemination. Small RNA deep sequencing of orally infected mosquitoes confirmed active replication of ZIKV and USUV, as demonstrated by potent small interfering RNA responses against both viruses. Additionally, de novo small RNA assembly revealed the presence of a novel narnavirus in Ae. japonicus. CONCLUSIONS/SIGNIFICANCE: Given that Ae. japonicus can experimentally transmit arthropod-borne viruses (arboviruses) like ZIKV and USUV and is currently expanding its territories, we should consider this mosquito as a potential vector for arboviral diseases in Europe.


Asunto(s)
Aedes/virología , Infecciones por Flavivirus/transmisión , Mosquitos Vectores/virología , Infección por el Virus Zika/transmisión , Animales , Femenino , Flavivirus , Humanos , Microcefalia/virología , Países Bajos , Saliva/virología , Temperatura , Virus Zika
8.
Parasit Vectors ; 13(1): 121, 2020 Mar 06.
Artículo en Inglés | MEDLINE | ID: mdl-32143711

RESUMEN

BACKGROUND: Emerging arboviral diseases like Zika, dengue and chikungunya that are transmitted by Aedes aegypti mosquitoes, are increasingly threatening human health. Blends of human-like synthetic chemical attractants can be used to attract host-seeking mosquitoes. The aim of this study was to test new combinations of traps and odour baits in the laboratory, followed by testing the best candidates in the field to improve Ae. aegypti monitoring and surveillance. METHODS: First, the BG-Suna trap was evaluated for capturing laboratory-reared Ae. aegypti by testing normal and inverted positions in screen cage tests. Secondly, the attractiveness of the MB5 blend, CO2, and their combination was tested. Thirdly, we tested the attractiveness of different trap types (BG-Suna, BG-Sentinel, MM-X and CDC light trap). Finally, we confirmed laboratory results in the field in Paramaribo, Suriname, using the MB5 and BG-Lure odour blends, CO2 and the BG-Sentinel and BG-Bowl trap using a Latin Square design. RESULTS: The MB5 blend in combination with CO2 outperformed traps baited only with CO2 or MB5 in screen cage tests (P < 0.0001). The BG-Sentinel trap performed equally well as the inverted BG-Suna and was taken to the field (P = 0.729). In the field, we captured Ae. aegypti, Cx. quinquefasciatus and Cx. nigripalpus. We confirmed the laboratory results and found that the combination of the MB5 blend and CO2 almost doubled Ae. aegypti female captures (P = 0.004) and more than doubled Culex spp. female captures (P = 0.005) compared to using only CO2. Interestingly, the MB5 blend outperformed the commercially available BG-Lure, in the BG-Sentinel (P < 0.001). The BG-Bowl also attracted Ae. aegypti when baited with the MB5 blend in similar numbers as the BG-Sentinel baited with the MB5 (P = 0.362). CONCLUSIONS: Our study demonstrated that the BG-Sentinel trap baited with the MB5 blend and CO2 outperforms the current golden standard (BG-Sentinel trap with BG-Lure) for monitoring Ae. aegypti females and males, in both laboratory and field experiments. The BG-Bowl baited with the MB5 blend is a good candidate for home use. Finally, the results show that CO2 is an indispensable component of the attractive blend.


Asunto(s)
Conducta Animal/fisiología , Control de Mosquitos/métodos , Mosquitos Vectores/fisiología , Odorantes , Aedes/fisiología , Animales , Dióxido de Carbono/farmacología , Culex , Masculino , Control de Mosquitos/instrumentación , Feromonas , Suriname
9.
Viruses ; 11(10)2019 09 27.
Artículo en Inglés | MEDLINE | ID: mdl-31569736

RESUMEN

Mosquitoes are vectors of arboviruses affecting animal and human health. Arboviruses circulate primarily within an enzootic cycle and recurrent spillovers contribute to the emergence of human-adapted viruses able to initiate an urban cycle involving anthropophilic mosquitoes. The increasing volume of travel and trade offers multiple opportunities for arbovirus introduction in new regions. This scenario has been exemplified recently with the Zika pandemic. To incriminate a mosquito as vector of a pathogen, several criteria are required such as the detection of natural infections in mosquitoes. In this study, we used a high-throughput chip based on the BioMark™ Dynamic arrays system capable of detecting 64 arboviruses in a single experiment. A total of 17,958 mosquitoes collected in Zika-endemic/epidemic countries (Brazil, French Guiana, Guadeloupe, Suriname, Senegal, and Cambodia) were analyzed. Here we show that this new tool can detect endemic and epidemic viruses in different mosquito species in an epidemic context. Thus, this fast and low-cost method can be suggested as a novel epidemiological surveillance tool to identify circulating arboviruses.


Asunto(s)
Culicidae/virología , Enfermedades Endémicas , Epidemias , Ensayos Analíticos de Alto Rendimiento/métodos , Infección por el Virus Zika/epidemiología , Virus Zika/aislamiento & purificación , Animales , Infecciones por Arbovirus/transmisión , Infecciones por Arbovirus/virología , Arbovirus/genética , Arbovirus/aislamiento & purificación , Brasil , Cambodia , Vectores de Enfermedades , Monitoreo Epidemiológico , Femenino , Guyana Francesa , Guadalupe , Humanos , Masculino , Epidemiología Molecular , Mosquitos Vectores/virología , Proyectos Piloto , ARN Viral/aislamiento & purificación , Senegal , Suriname , Virus Zika/genética , Infección por el Virus Zika/transmisión
10.
Proc Natl Acad Sci U S A ; 116(38): 19136-19144, 2019 09 17.
Artículo en Inglés | MEDLINE | ID: mdl-31488709

RESUMEN

Zika virus (ZIKV) is an arthropod-borne flavivirus predominantly transmitted by Aedes aegypti mosquitoes and poses a global human health threat. All flaviviruses, including those that exclusively replicate in mosquitoes, produce a highly abundant, noncoding subgenomic flavivirus RNA (sfRNA) in infected cells, which implies an important function of sfRNA during mosquito infection. Currently, the role of sfRNA in flavivirus transmission by mosquitoes is not well understood. Here, we demonstrate that an sfRNA-deficient ZIKV (ZIKVΔSF1) replicates similar to wild-type ZIKV in mosquito cell culture but is severely attenuated in transmission by Ae. aegypti after an infectious blood meal, with 5% saliva-positive mosquitoes for ZIKVΔSF1 vs. 31% for ZIKV. Furthermore, viral titers in the mosquito saliva were lower for ZIKVΔSF1 as compared to ZIKV. Comparison of mosquito infection via infectious blood meals and intrathoracic injections showed that sfRNA is important for ZIKV to overcome the mosquito midgut barrier and to promote virus accumulation in the saliva. Next-generation sequencing of infected mosquitoes showed that viral small-interfering RNAs were elevated upon ZIKVΔSF1 as compared to ZIKV infection. RNA-affinity purification followed by mass spectrometry analysis uncovered that sfRNA specifically interacts with a specific set of Ae. aegypti proteins that are normally associated with RNA turnover and protein translation. The DEAD/H-box helicase ME31B showed the highest affinity for sfRNA and displayed antiviral activity against ZIKV in Ae. aegypti cells. Based on these results, we present a mechanistic model in which sfRNA sequesters ME31B to promote flavivirus replication and virion production to facilitate transmission by mosquitoes.


Asunto(s)
Aedes/virología , ARN Helicasas DEAD-box/metabolismo , Proteínas de Insectos/metabolismo , Mosquitos Vectores/virología , ARN Viral/genética , Infección por el Virus Zika/transmisión , Virus Zika/genética , Aedes/inmunología , Animales , Chlorocebus aethiops , ARN Helicasas DEAD-box/genética , Tracto Gastrointestinal/virología , Genoma Viral , Proteínas de Insectos/genética , Glándulas Salivales/virología , Replicación Viral , Virus Zika/inmunología , Infección por el Virus Zika/inmunología , Infección por el Virus Zika/virología
11.
J Exp Biol ; 221(Pt 22)2018 11 16.
Artículo en Inglés | MEDLINE | ID: mdl-30297513

RESUMEN

Anthropophilic mosquitoes are effective vectors of human disease because of their biting preferences. To find their host, these mosquitoes are guided by human odours, primarily produced by human skin bacteria. By analysing the skin bacterial and skin volatile profiles of humans, bonobos, chimpanzees, gorillas, lemurs and cows, we investigated whether primates that are more closely related to humans have a skin bacterial community and odour profile that is similar to that of humans. We then investigated whether this affected discrimination between humans and closely related primates by anthropophilic and zoophilic mosquitoes that search for hosts. Humans had a lower skin bacterial diversity than the other animals and their skin bacterial composition was more similar to that in other primates than it was to the skin bacteria of cows. Like the skin bacterial profiles, the volatile profiles of the animal groups were clearly different from each other. The volatile profiles of cows and lemurs were more closely related to the human profiles than expected. Human volatiles were indeed preferred above cow volatiles by anthropophilic mosquitoes and no preference was observed when tested against non-human primate odour, except for bonobo volatiles, which were preferred over human volatiles. Unravelling the differences between mosquito hosts and their effect on host selection is important for a better understanding of cross-species transmission of vector-borne diseases.


Asunto(s)
Anopheles/fisiología , Bacterias/aislamiento & purificación , Quimiotaxis , Piel/metabolismo , Piel/microbiología , Compuestos Orgánicos Volátiles/metabolismo , Animales , Bovinos , Conducta Alimentaria , Femenino , Humanos , Masculino , Odorantes/análisis , Primates , Olfato
12.
Vector Borne Zoonotic Dis ; 15(10): 619-26, 2015 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-26394124

RESUMEN

Culex (Cx.) pipiens mosquitoes are important vectors of West Nile virus (WNV). In Europe, the species Cx. pipiens consists of two biotypes, pipiens and molestus, which are morphologically identical, but differ in behavior. Typical behavior of the molestus biotype is the ability to remain active during winter, whereas the pipiens biotype enters diapause. The current paradigm is that the two biotypes occur sympatrically in southern Europe, but occur in isolated above- and belowground populations in northern Europe. In northern Europe, hybridization between biotypes is considered to be low because of the barrier that exists between typical habitats. Data on the occurrence of the biotypes and hybrids in northern Europe, however, are scarce, because identification to the level of biotype is often not performed. Our objective was to clarify the distribution of the Cx. pipiens biotypes and to determine hybridization rates in The Netherlands. Cx. pipiens mosquitoes were collected using three different approaches. First, traps were deployed randomly throughout The Netherlands during the summers of 2011 and 2012 (active surveillance). Second, using a web-based reporting platform and media campaign, Dutch citizens were asked to send dead mosquitoes to our laboratory during the winter and summer of 2014 (passive surveillance). Third, larvae and adults were collected during the summer of 2014 from aboveground locations in Amsterdam to identify molestus larval habitats. Real-time PCR was used for identification to the level of biotype. We found that biotype molestus and hybrids were feeding indoors during winter and summer in The Netherlands and that hybridization rates ranged between 6% and 15%. Larval habitats of biotype molestus were found to occur aboveground. The high percentage of hybridization has implications for assessing the risk of WNV transmission, because hybrids are thought to have ideal characteristics for bridging WNV between birds and humans.


Asunto(s)
Culex/fisiología , Insectos Vectores/fisiología , Fiebre del Nilo Occidental/epidemiología , Virus del Nilo Occidental/aislamiento & purificación , Animales , Culex/genética , Culex/virología , Ecosistema , Europa (Continente)/epidemiología , Femenino , Humanos , Hibridación Genética , Insectos Vectores/genética , Insectos Vectores/virología , Larva , Masculino , Países Bajos/epidemiología , Vigilancia de la Población , Estaciones del Año
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