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1.
J Am Mosq Control Assoc ; 37(3): 119-124, 2021 09 01.
Article in English | MEDLINE | ID: mdl-34407171

ABSTRACT

The aim of this study was to consolidate mosquito information for 13 counties west of San Antonio, Bexar County, Texas, and to create a species checklist for future regional studies. The resulting checklist established a baseline for local mosquito-borne disease surveillance and can serve as a resource for public health officials. The 13 counties in this region were Bandera, Edwards, Kendall, Kerr, Kimble, Kinney, Maverick, Medina, Real, Sutton, Uvalde, Val Verde, and Zavala counties. To develop the checklist, county-level mosquito species data were extracted from 38 peer-reviewed publications and government documents, university reference collections, private collections, and the Texas Department of State Health Services' historical collection data. These data were combined with author field collections to create a comprehensive species list. Overall, 339 county-level records were documented through field studies with a total of 36 species representing 8 genera confirmed as being present in this region. An additional 14 species listed in historical surveillance records were not collected during this study.


Subject(s)
Checklist , Culicidae , Animals , Humans , Texas
2.
Pathogens ; 10(8)2021 Aug 13.
Article in English | MEDLINE | ID: mdl-34451489

ABSTRACT

From 2016 to 2018, Hidalgo County observed the emergence of Zika virus (ZIKV) infections along with sporadic cases of Dengue virus (DENV) and West Nile virus (WNV). Due to the emergence of ZIKV and the historical presence of other mosquito-borne illnesses, Hidalgo County obtained funding to enhance mosquito surveillance and educate residents on arboviruses and travel risks. During this time period, Hidalgo County mosquito surveillance efforts increased by 1.275%. This increase resulted in >8000 mosquitoes collected, and 28 mosquito species identified. Aedes aegypti, Ae albopictus and Culex quinquefasciatus made up approximately two-thirds of the mosquitoes collected in 2018 (4122/6171). Spatiotemporal shifts in vector species composition were observed as the collection period progressed. Significantly, temperature variations (p < 0.05) accounted for associated variations in vector abundance, whereas all other climate variables were not significant.

3.
Virology ; 562: 50-62, 2021 10.
Article in English | MEDLINE | ID: mdl-34256244

ABSTRACT

We describe the isolation and characterization of a novel insect-specific flavivirus (ISFV), tentatively named Aripo virus (ARPV), that was isolated from Psorophora albipes mosquitoes collected in Trinidad. The ARPV genome was determined and phylogenetic analyses showed that it is a dual host associated ISFV, and clusters with the main mosquito-borne flaviviruses. ARPV antigen was significantly cross-reactive with Japanese encephalitis virus serogroup antisera, with significant cross-reactivity to Ilheus and West Nile virus (WNV). Results suggest that ARPV replication is limited to mosquitoes, as it did not replicate in the sandfly, culicoides or vertebrate cell lines tested. We also demonstrated that ARPV is endocytosed into vertebrate cells and is highly immunomodulatory, producing a robust innate immune response despite its inability to replicate in vertebrate systems. We show that prior infection or coinfection with ARPV limits WNV-induced disease in mouse models, likely the result of a robust ARPV-induced type I interferon response.


Subject(s)
Flavivirus/immunology , Immunomodulation , Insect Viruses/immunology , Vertebrates/immunology , Animals , Antigens, Viral/immunology , Cross Reactions , Culicidae/virology , Disease Models, Animal , Flavivirus/genetics , Flavivirus/isolation & purification , Flavivirus/pathogenicity , Genome, Viral/genetics , Host Specificity , Immunity, Innate , Insect Viruses/genetics , Insect Viruses/isolation & purification , Insect Viruses/pathogenicity , Macrophages/immunology , Mice , Phylogeny , Vertebrates/virology , Viral Interference , Virus Replication , West Nile Fever/immunology , West Nile virus/immunology , West Nile virus/pathogenicity
4.
J Am Mosq Control Assoc ; 37(1): 28-33, 2021 03 01.
Article in English | MEDLINE | ID: mdl-33857317

ABSTRACT

Populations of Culex stigmatosoma and Cx. thriambus have been documented in the southwestern USA with a southward range extension to northern South America and Central America, respectively. Studies conducted in California indicate both species are potential vectors of West Nile virus. However, vector competence studies are lacking for other parts of the USA. During a multicounty regional surveillance study west of San Antonio, Texas, multiple errors were observed in the Texas distributional literature of these species. These errors involved incorrect distributional information in Texas and US publications. Evidence to correct these errant records was found upon further analysis of Texas literature and curated specimens. Therefore, the aims of this study were to present that evidence and then combine the corrected records with additional records from the Texas Department of State Health Services and from larval collections made during other Texas surveillance studies.


Subject(s)
Animal Distribution , Culex/physiology , Ecosystem , Mosquito Vectors/physiology , Animals , Culex/growth & development , Larva/growth & development , Larva/physiology , Mosquito Vectors/growth & development , Texas , West Nile Fever/transmission , West Nile virus/physiology
5.
PLoS Negl Trop Dis ; 14(6): e0008343, 2020 06.
Article in English | MEDLINE | ID: mdl-32520944

ABSTRACT

St. Louis encephalitis virus (SLEV) is a flavivirus that circulates in an enzootic cycle between birds and mosquitoes and can also infect humans to cause febrile disease and sometimes encephalitis. Although SLEV is endemic to the United States, no activity was detected in California during the years 2004 through 2014, despite continuous surveillance in mosquitoes and sentinel chickens. In 2015, SLEV-positive mosquito pools were detected in Maricopa County, Arizona, concurrent with an outbreak of human SLEV disease. SLEV-positive mosquito pools were also detected in southeastern California and Nevada in summer 2015. From 2016 to 2018, SLEV was detected in mosquito pools throughout southern and central California, Oregon, Idaho, and Texas. To understand genetic relatedness and geographic dispersal of SLEV in the western United States since 2015, we sequenced four historical genomes (3 from California and 1 from Louisiana) and 26 contemporary SLEV genomes from mosquito pools from locations across the western US. Bayesian phylogeographic approaches were then applied to map the recent spread of SLEV. Three routes of SLEV dispersal in the western United States were identified: Arizona to southern California, Arizona to Central California, and Arizona to all locations east of the Sierra Nevada mountains. Given the topography of the Western United States, these routes may have been limited by mountain ranges that influence the movement of avian reservoirs and mosquito vectors, which probably represents the primary mechanism of SLEV dispersal. Our analysis detected repeated SLEV introductions from Arizona into southern California and limited evidence of year-to-year persistence of genomes of the same ancestry. By contrast, genetic tracing suggests that all SLEV activity since 2015 in central California is the result of a single persistent SLEV introduction. The identification of natural barriers that influence SLEV dispersal enhances our understanding of arbovirus ecology in the western United States and may also support regional public health agencies in implementing more targeted vector mitigation efforts to protect their communities more effectively.


Subject(s)
Culicidae/virology , Encephalitis Virus, St. Louis/classification , Encephalitis Virus, St. Louis/genetics , Encephalitis, St. Louis/epidemiology , Encephalitis, St. Louis/virology , Mosquito Vectors/virology , Animals , Bayes Theorem , Disease Outbreaks , Genome, Viral , Humans , Phylogeny , Phylogeography , United States/epidemiology , Whole Genome Sequencing
6.
Viruses ; 12(4)2020 03 31.
Article in English | MEDLINE | ID: mdl-32244531

ABSTRACT

This report describes and characterizes a novel entomobirnavirus, designated Port Bolivar virus (PTBV), that was isolated from a pool of Aedes sollicitans mosquitoes collected in a saltwater marsh in East Texas, USA. Full genome sequencing and phylogenetic analyses indicate that PTBV is distinct but genetically related to Drosophila X virus and mosquito X virus, which are assigned to species in the genus Entomobirnavirus, family Birnaviridae. PTBV produced cytopathic effect (CPE) in cultures of mosquito (C6/36) cells, but not in Vero cell cultures. Ultrastructural studies of PTBV in infected C6/36 cells demonstrated unenveloped virus particles about 55 nm in diameter.


Subject(s)
Aedes/virology , Entomobirnavirus/classification , Entomobirnavirus/physiology , Amino Acid Sequence , Animals , Base Sequence , Cell Line , Cytopathogenic Effect, Viral , Entomobirnavirus/genetics , Entomobirnavirus/ultrastructure , Genome, Viral/genetics , Insect Viruses/classification , Insect Viruses/genetics , Insect Viruses/physiology , Insect Viruses/ultrastructure , Phylogeny , RNA, Viral/genetics , Species Specificity , Texas , Virion/ultrastructure
7.
J Am Mosq Control Assoc ; 35(3): 233-237, 2019 09.
Article in English | MEDLINE | ID: mdl-31647710

ABSTRACT

South Texas is recognized as a potential area for the emergence and re-emergence of mosquito-borne diseases due to recent circulation of Zika, chikungunya, and dengue viruses. During 2017, high Aedes aegypti abundance found in the city of Brownsville, TX, in combination with the previous year's local transmission of Zika virus, triggered the activation of the Texas Department of State Health Services Emergency Mosquito Control Contingency Contract. A contract with the Clarke Environmental and Mosquito Control was a response to control Ae. aegypti, using a ground-based wide-area larvicide spray (WALS™) containing Bacillus thuringiensis israelensis. The WALS application was evaluated through a field-based bioassay and by comparing surveillance data pre- and post-WALS application. The WALS application bioassay demonstrated that the larvicide was effective up to 60 m into the target properties. Additionally, the number of Ae. aegypti captured in traps decreased in the WALS intervention areas compared with the untreated control areas, with an estimated 29% control.


Subject(s)
Aedes , Bacillus thuringiensis/chemistry , Mosquito Control/methods , Aedes/drug effects , Aedes/growth & development , Animals , Larva/drug effects , Texas
8.
J Am Mosq Control Assoc ; 35(1): 55-64, 2019 03.
Article in English | MEDLINE | ID: mdl-31442181

ABSTRACT

The distribution of Culex coronator Dyar and Knab by county in Texas was updated by combining data from peer-reviewed literature, military and government reports, and university and private collections, and by collecting specimens from counties where data had not been reported. With 254 counties in Texas, the initial collection effort was focused on counties east of US Highway 277, which runs from Val Verde County on the US and Mexico border to Wichita County on the Texas and Oklahoma border. The study resulted in 127 counties with Cx. coronator presence data. The remaining 127 counties need to be surveyed for this species.


Subject(s)
Animal Distribution , Culex , Animals , Texas
9.
PLoS Negl Trop Dis ; 13(7): e0007473, 2019 07.
Article in English | MEDLINE | ID: mdl-31306420

ABSTRACT

The N-linked glycosylation motif at amino acid position 154-156 of the envelope (E) protein of West Nile virus (WNV) is linked to enhanced murine neuroinvasiveness, avian pathogenicity and vector competence. Naturally occurring isolates with altered E protein glycosylation patterns have been observed in WNV isolates; however, the specific effects of these polymorphisms on avian host pathogenesis and vector competence have not been investigated before. In the present study, amino acid polymorphisms, NYT, NYP, NYF, SYP, SYS, KYS and deletion (A'DEL), were reverse engineered into a parental WNV (NYS) cDNA infectious clone to generate WNV glycosylation mutant viruses. These WNV glycosylation mutant viruses were characterized for in vitro growth, pH-sensitivity, temperature-sensitivity and host competence in American crows (AMCR), house sparrows (HOSP) and Culex quinquefasciatus. The NYS and NYT glycosylated viruses showed higher viral replication, and lower pH and temperature sensitivity than NYP, NYF, SYP, SYS, KYS and A'DEL viruses in vitro. Interestingly, in vivo results demonstrated asymmetric effects in avian and mosquito competence that were independent of the E-protein glycosylation status. In AMCRs and HOSPs, all viruses showed comparable viremias with the exception of NYP and KYS viruses that showed attenuated phenotypes. Only NYP showed reduced vector competence in both Cx. quinquefasciatus and Cx. tarsalis. Glycosylated NYT exhibited similar avian virulence properties as NYS, but resulted in higher mosquito oral infectivity than glycosylated NYS and nonglycosylated, NYP, NYF, SYP and KYS mutants. These data demonstrated that amino acid polymorphisms at E154/156 dictate differential avian host and vector competence phenotypes independent of E-protein glycosylation status.


Subject(s)
Disease Vectors , Viral Envelope Proteins/metabolism , West Nile Fever/virology , West Nile virus/metabolism , Aedes , Amino Acid Motifs , Animals , Chlorocebus aethiops , Culex/virology , Culicidae/virology , Disease Models, Animal , Female , Glycosylation , Hydrogen-Ion Concentration , Mice , Mutation , Phenotype , Sparrows/virology , Vero Cells , Viral Envelope Proteins/genetics , Viremia , Virulence , Virus Replication , West Nile virus/genetics
10.
PLoS Negl Trop Dis ; 11(8): e0005718, 2017 Aug.
Article in English | MEDLINE | ID: mdl-28796789

ABSTRACT

The yellow fever mosquito Aedes aegypti inhabits much of the tropical and subtropical world and is a primary vector of dengue, Zika, and chikungunya viruses. Breeding populations of A. aegypti were first reported in California (CA) in 2013. Initial genetic analyses using 12 microsatellites on collections from Northern CA in 2013 indicated the South Central US region as the likely source of the introduction. We expanded genetic analyses of CA A. aegypti by: (a) examining additional Northern CA samples and including samples from Southern CA, (b) including more southern US populations for comparison, and (c) genotyping a subset of samples at 15,698 SNPs. Major results are: (1) Northern and Southern CA populations are distinct. (2) Northern populations are more genetically diverse than Southern CA populations. (3) Northern and Southern CA groups were likely founded by two independent introductions which came from the South Central US and Southwest US/northern Mexico regions respectively. (4) Our genetic data suggest that the founding events giving rise to the Northern CA and Southern CA populations likely occurred before the populations were first recognized in 2013 and 2014, respectively. (5) A Northern CA population analyzed at multiple time-points (two years apart) is genetically stable, consistent with permanent in situ breeding. These results expand previous work on the origin of California A. aegypti with the novel finding that this species entered California on multiple occasions, likely some years before its initial detection. This work has implications for mosquito surveillance and vector control activities not only in California but also in other regions where the distribution of this invasive mosquito is expanding.


Subject(s)
Aedes/genetics , Introduced Species , Microsatellite Repeats , Aedes/virology , Animals , Bayes Theorem , California , Genetic Variation , Genotype , Insect Vectors/genetics , Insect Vectors/virology
12.
J Med Entomol ; 53(2): 425-34, 2016 Mar.
Article in English | MEDLINE | ID: mdl-26718715

ABSTRACT

West Nile virus (WNV) is enzootic in northern Colorado. Annual surveillance activities in Fort Collins, CO, include collecting female Culex mosquitoes and testing them for the presence of WNV RNA in order to calculate 1) Culex female abundance, 2) WNV infection rate, and 3) the vector index (VI). These entomological risk indices inform public policy regarding the need for emergency adulticiding. Currently, these are calculated on a city-wide basis. In this study, we present descriptive data from historical surveillance records spanning 2006-2013 to discern seasonal and yearly patterns of entomological risk for WNV infection. Also, we retrospectively test the hypothesis that entomological risk is correlated with human transmission risk and is heterogeneous within the City of Fort Collins. Four logistically relevant zones within the city were established and used to test this hypothesis. Zones in the eastern portion of the city consistently had significantly higher Culex abundance and VI compared with zones in the west, leading to higher entomological risk indicators for human WNV infection in the east. Moreover, the relative risk of a reported human case of WNV infection was significantly higher in the eastern zones of the city. Our results suggest that a more spatially targeted WNV management program may better mitigate human risk for WNV infection in Fort Collins, and possibly other cities where transmission is enzootic, while at the same time reducing pesticide use.


Subject(s)
Culex/virology , Insect Vectors/virology , West Nile Fever/epidemiology , West Nile virus , Animals , Colorado/epidemiology , Female , Humans , Population Density , Retrospective Studies , Risk Assessment , Seasons
13.
Viruses ; 7(9): 4911-28, 2015 Sep 10.
Article in English | MEDLINE | ID: mdl-26378568

ABSTRACT

Arthropod-borne viruses (arboviruses), especially those transmitted by mosquitoes, are a significant cause of morbidity and mortality in humans and animals worldwide. Recent discoveries indicate that mosquitoes are naturally infected with a wide range of other viruses, many within taxa occupied by arboviruses that are considered insect-specific. Over the past ten years there has been a dramatic increase in the literature describing novel insect-specific virus detection in mosquitoes, which has provided new insights about viral diversity and evolution, including that of arboviruses. It has also raised questions about what effects the mosquito virome has on arbovirus transmission. Additionally, the discovery of these new viruses has generated interest in their potential use as biological control agents as well as novel vaccine platforms. The arbovirus community will benefit from the growing database of knowledge concerning these newly described viral endosymbionts, as their impacts will likely be far reaching.


Subject(s)
Culicidae/virology , Viruses/isolation & purification , Animals , Arbovirus Infections/prevention & control , Arbovirus Infections/transmission , Entomology/trends , Humans , Mosquito Control/methods , Mosquito Control/trends , Virology/trends
14.
Am J Trop Med Hyg ; 92(2): 422-8, 2015 Feb.
Article in English | MEDLINE | ID: mdl-25510714

ABSTRACT

Recently, there has been a dramatic increase in the detection and characterization of insect-specific viruses in field-collected mosquitoes. Evidence suggests that these viruses are ubiquitous in nature and that many are maintained by vertical transmission in mosquito populations. Some studies suggest that the presence of insect-specific viruses may inhibit replication of a super-infecting arbovirus, thus altering vector competence of the mosquito host. Accordingly, we screened our laboratory mosquito colonies for insect-specific viruses. Pools of colony mosquitoes were homogenized and inoculated into cultures of Aedes albopictus (C6/36) cells. The infected cells were examined by electron microscopy and deep sequencing was performed on RNA extracts. Electron micrograph images indicated the presence of three different viruses in three of our laboratory mosquito colonies. Potential implications of these findings for vector competence studies are discussed.


Subject(s)
Aedes/virology , Arbovirus Infections/transmission , Arboviruses/physiology , Insect Vectors/virology , Aedes/ultrastructure , Animals , Arbovirus Infections/virology , Arboviruses/genetics , Arboviruses/ultrastructure , Cell Line , Female , Male , Microscopy, Electron, Transmission , Phylogeny
15.
Am J Trop Med Hyg ; 91(5): 1066-72, 2014 Nov.
Article in English | MEDLINE | ID: mdl-25157120

ABSTRACT

St. Louis encephalitis virus (SLEV) has shown greater susceptibility to oral infectivity than West Nile virus (WNV) in Culex mosquitoes. To identify the viral genetic elements that modulate these disparate phenotypes, structural chimeras (WNV-pre-membrane [prM] and envelope [E] proteins [prME]/SLEV.IC (infectious clone) and SLEV-prME/WNV.IC) were constructed in which two of the structural proteins, the prM and E, were interchanged between viruses. Oral dose-response assessment with the chimeric/parental WNV and SLEV was performed to characterize the infection phenotypes in Culex mosquitoes by artificial blood meals. The median infectious dose required to infect 50% of Cx. quinquefasciatus with WNV was indistinguishable from that of the SLEV-prME/WNV.IC chimeric virus. Similarly, SLEV and WNV-prME/SLEV.IC virus exhibited an indistinguishable oral dose-response relationship in Cx. quinquefasciatus. Infection rates for WNV.IC and SLEV-prME/WNV.IC were significantly lower than SLEV.IC and WNV-prME/SLEV.IC infection rates. These results indicated that WNV and SLEV oral infectivities are not mediated by genetic differences within the prM and E proteins.


Subject(s)
Culex/virology , Culicidae/virology , Encephalitis Virus, St. Louis/genetics , Viral Proteins/genetics , West Nile virus/genetics , Animals , Encephalitis Virus, St. Louis/isolation & purification , Female , Phenotype , Viral Proteins/isolation & purification , West Nile virus/isolation & purification
16.
Virology ; 427(2): 90-7, 2012 Jun 05.
Article in English | MEDLINE | ID: mdl-22425062

ABSTRACT

We established a laboratory colony of Culex pipiens mosquitoes from eggs collected in Colorado and discovered that mosquitoes in the colony are naturally infected with Culex flavivirus (CxFV), an insect-specific flavivirus. In this study we examined transmission dynamics of CxFV and effects of persistent CxFV infection on vector competence for West Nile virus (WNV). We found that vertical transmission is the primary mechanism for persistence of CxFV in Cx. pipiens, with venereal transmission potentially playing a minor role. Vector competence experiments indicated possible early suppression of WNV replication by persistent CxFV infection in Cx. pipiens. This is the first description of insect-specific flavivirus transmission dynamics in a naturally infected mosquito colony and the observation of delayed dissemination of superinfecting WNV suggests that the presence of CxFV may impact the intensity of enzootic transmission of WNV and the risk of human exposure to this important pathogen.


Subject(s)
Culex/virology , Flavivirus/classification , Flavivirus/isolation & purification , Insect Vectors , West Nile virus/physiology , Animals , Female , Host-Pathogen Interactions , Larva/virology , Male , Virus Replication , West Nile Fever/transmission , West Nile Fever/virology
17.
J Med Entomol ; 48(5): 1031-8, 2011 Sep.
Article in English | MEDLINE | ID: mdl-21936322

ABSTRACT

This study determined the transovarial transmission (TOT) potential and tissue tropisms of Culex flavivirus (CxFV), an insect-specific flavivirus, in Culex pipiens (L.). Several hundred mosquito egg rafts were collected in the field, transferred to the insectaries, reared to the fourth larval instar, and identified using morphological characteristics. Cx. pipiens were reared to adults, allowed to oviposit in individual containers, and tested for CxFV RNA by reverse transcription-polymerase chain reaction (RT-PCR) and nucleotide sequencing. Eighteen CxFV RNA-positive females were identified from 26 females that oviposited viable egg rafts. Thirty F1 adults from each positive female were individually tested by RT-PCR for CxFV RNA. Viral RNA was detected in 526 of 540 progeny, and thus, the filial infection rate was 97.4%. Because all 18 positive females produced infected offspring, the TOT prevalence was 100%. These data indicated that efficient TOT of CxFV occurs in nature. To define the tissue tropisms of CxFV, different tissues (salivary glands, ovaries, testes, head, fat bodies, and midguts) were removed from the remainder of the F1 and tested by RT-PCR for CxFV RNA. Viral RNA was detected in all tissues. Additionally, uninfected laboratory-colonized Cx. pipiens were infected with CxFV by needle inoculation, and ovaries were collected at 4, 6, 8, and 12 d postinoculation and tested for CxFV RNA by RT-PCR. Viral RNA was detected at all time points, demonstrating that CxFV infects the ovaries as early as 4 d postinoculation. Surprisingly, however, we were unable to demonstrate transovarial transmission despite the presence of viral RNA in the ovaries. Nevertheless, the experiments performed with field-infected Cx. pipiens demonstrate that TOT is an efficient mechanism by which CxFV is maintained in mosquitoes in nature.


Subject(s)
Culex/virology , Flavivirus Infections/transmission , Flavivirus/isolation & purification , RNA, Viral/analysis , Animals , Base Sequence , Female , Flavivirus/classification , Iowa , Male , Ovary/virology , RNA, Viral/isolation & purification , Reverse Transcriptase Polymerase Chain Reaction
18.
Am J Trop Med Hyg ; 85(1): 162-8, 2011 Jul.
Article in English | MEDLINE | ID: mdl-21734143

ABSTRACT

In a previous study, a new flavivirus genome sequence was identified in Culex tarsalis mosquitoes obtained in Alberta, Canada and was shown to be genetically related to but distinct from members of the insect-specific flaviviruses. Nonstructural protein 5-encoding sequences amplified from Cx. tarsalis pools from western Canada have shown a high similarity to genome sequences of novel flaviviruses isolated from mosquitoes in California and Colorado. Despite wide distribution of this virus, designated Calbertado virus, strains demonstrate a high degree of nonstructural protein 5 nucleotide (> 90%) and amino acid (> 97%) identity. The ecology and geographic range of Calbertado virus warrants further study because it may potentially influence transmission of mosquito-borne flaviviruses, including important human pathogens such as West Nile and Saint Louis encephalitis viruses.


Subject(s)
Culicidae/virology , Flavivirus/classification , Alberta , Animals , Base Sequence , California , Colorado , DNA Primers , Flavivirus/genetics , Flavivirus/isolation & purification , Phylogeny , RNA, Viral/genetics , Reverse Transcriptase Polymerase Chain Reaction
19.
Am J Trop Med Hyg ; 85(1): 169-77, 2011 Jul.
Article in English | MEDLINE | ID: mdl-21734144

ABSTRACT

Mosquitoes were collected in Colorado during 2006 and 2007 to examine spatial and seasonal patterns of risk for exposure to Culex vectors and West Nile virus. We used universal flavivirus primers to test pools of Culex mosquitoes for viral RNA. This led to the detection and subsequent isolation of two insect-specific flaviviruses: Culex flavivirus (CxFV), which was first described from Japan, and a novel insect flavivirus, designated Calbertado virus (CLBOV), which has also been detected in California and Canada. We recorded both viruses in Cx. tarsalis and Cx. pipiens from Colorado. Furthermore, quantitative reverse transcription polymerase chain reaction (RT-PCR) revealed the presence of CxFV RNA in Cx. pipiens eggs and larvae from a laboratory colony established in 2005 and naturally infected with CxFV, suggesting vertical transmission as a means of viral maintenance in natural Culex populations. Finally, we present phylogenetic analyses of the relationships between insect-specific flaviviruses and other selected flaviviruses.


Subject(s)
Culex/virology , Flavivirus/isolation & purification , Animals , Colorado , Flavivirus/classification , Fluorescent Antibody Technique, Indirect , Phylogeny , Reverse Transcriptase Polymerase Chain Reaction , Seasons
20.
Parasit Vectors ; 4: 70, 2011 May 09.
Article in English | MEDLINE | ID: mdl-21554725

ABSTRACT

BACKGROUND: Culex spp. mosquitoes are considered to be the most important vectors of West Nile virus (WNV) detected in at least 34 species of mosquitoes in the United States. In North America, Culex pipiens pipiens, Culex pipiens quinquefasciatus, and Culex tarsalis are all competent vectors of WNV, which is considered to be enzootic in the United States and has also been detected in equines and birds in many states of Mexico and in humans in Nuevo Leon. There is potential for WNV to be introduced into Mexico City by various means including infected mosquitoes on airplanes, migrating birds, ground transportation and infected humans. Little is known of the geographic distribution of Culex pipiens complex mosquitoes and hybrids in Mexico City. Culex pipiens pipiens preferentially feed on avian hosts; Culex pipiens quinquefasciatus have historically been considered to prefer mammalian hosts; and hybrids of these two species could theoretically serve as bridge vectors to transmit WNV from avian hosts to humans and other mammalian hosts. In order to address the potential of WNV being introduced into Mexico City, we have determined the identity and spatial distribution of Culex pipiens complex mosquitoes and their hybrids. RESULTS: Mosquito larvae collected from 103 sites throughout Mexico City during 2004-2005 were identified as Culex, Culiseta or Ochlerotatus by morphological analysis. Within the genus Culex, specimens were further identified as Culex tarsalis or as belonging to the Culex pipiens complex. Members of the Culex pipiens complex were separated by measuring the ratio of the dorsal and ventral arms (DV/D ratio) of the male genitalia and also by using diagnostic primers designed for the Ace.2 gene. Culex pipiens quinquefasciatus was the most abundant form collected. CONCLUSIONS: Important WNV vectors species, Cx. p. pipiens, Cx. p. quinquefasciatus and Cx. tarsalis, are all present in Mexico City. Hybrids of Cx. p. pipiens and Cx. p. quinquefasciatus were also collected and identified. The presence and abundance of these WNV competent vectors is a cause for concern. Understanding the distribution of these vectors can help improve viral surveillance activities and mosquito control efforts in Mexico City.


Subject(s)
Culex/growth & development , Disease Vectors , Animals , Culex/anatomy & histology , Culex/classification , Culex/genetics , Humans , Insect Proteins/genetics , Larva/anatomy & histology , Larva/classification , Larva/genetics , Male , Mexico
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