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1.
Parasit Vectors ; 17(1): 383, 2024 Sep 10.
Artigo em Inglês | MEDLINE | ID: mdl-39256778

RESUMO

BACKGROUND: Antananarivo, the capital city of Madagascar, is experiencing a steady increase in population growth. Due to the abundance of mosquito vectors in this locality, the population exposed to mosquito-borne diseases is therefore also increasing, as is the risk of epidemic episodes. The aim of the present study was to assess, in a resource-limited setting, the information on mosquito population dynamics and disease transmission risk that can be provided through a longitudinal entomological study carried out in a multi-host single site. METHODS: Mosquitoes were collected every 15 days over 16 months (from January 2017 to April 2018) using six CDC-light traps in a peri-urban area of Antananarivo. Multivariable generalised linear models were developed using indoor and outdoor densities of the predominant mosquito species as response variables and moon illumination, environmental data and climatic data as the explanatory variables. RESULTS: Overall, 46,737 mosquitoes belonging to at least 20 species were collected, of which Culex antennatus (68.9%), Culex quinquefasciatus (19.8%), Culex poicilipes (3.7%) and Anopheles gambiae sensu lato (2.3%) were the most abundant species. Mosquito densities were observed to be driven by moon illumination and climatic factors interacting at different lag periods. The outdoor models demonstrated biweekly and seasonal patterns of mosquito densities, while the indoor models demonstrated only a seasonal pattern. CONCLUSIONS: An important diversity of mosquitoes exists in the peri-urban area of Antananarivo. Some well-known vector species, such as Cx. antennatus, a major vector of West Nile virus (WNV) and Rift-Valley fever virus (RVFV), Cx. quinquefasciatus, a major vector of WNV, Cx. poicilipes, a candidate vector of RVFV and An. gambiae sensu lato, a major vector of Plasmodium spp., are abundant. Importantly, these four mosquito species are present all year round, even though their abundance declines during the cold dry season, with the exception of Cx. quinquefasciatus. The main drivers of their abundance were found to be temperature, relative humidity and precipitation, as well as-for outdoor abundance only-moon illumination. Identifying these drivers is a first step towards the development of pathogen transmission models (R0 models), which are key to inform public health stakeholders on the periods of most risk for vector-borne diseases.


Assuntos
Culex , Mosquitos Vetores , Dinâmica Populacional , Animais , Madagáscar/epidemiologia , Mosquitos Vetores/virologia , Mosquitos Vetores/fisiologia , Estudos Longitudinais , Culex/virologia , Culex/fisiologia , Culex/classificação , Estações do Ano , Culicidae/virologia , Culicidae/fisiologia , Culicidae/classificação , Anopheles/fisiologia , Anopheles/virologia , Anopheles/classificação , Humanos , Densidade Demográfica , Vírus do Nilo Ocidental , Feminino
2.
Sci Adv ; 10(32): eadp1657, 2024 Aug 09.
Artigo em Inglês | MEDLINE | ID: mdl-39121225

RESUMO

Japanese encephalitis virus (JEV) is a major threat to human health. Bangladesh is considering introducing a JEV vaccine; however, the investment case is hampered by a limited understanding of key aspects of JEV ecology. We conducted a seroprevalence study in a high-incidence region using an assay that limits cross-reactivity with dengue virus. We also trapped mosquitoes and collected information about potential host species. We used mathematical models to recover risk factors for infection and underlying probabilities of severe disease and death. We observed 19.0% [95% confidence interval (CI):17.1 to 21.1] of JEV antibodies. On average, 0.7% (95% CI: 0.2 to 2.0) of the susceptible population gets infected yearly, with pig proximity being the main human infection risk factor. Our traps captured 10 different mosquito species that have been linked with JEV transmission. We estimated that 1 in 1000 infections results in severe disease, 1 in 10,000 results in death, and 76% of severe cases are missed by surveillance.


Assuntos
Vírus da Encefalite Japonesa (Espécie) , Encefalite Japonesa , Vacinas contra Encefalite Japonesa , Bangladesh/epidemiologia , Humanos , Encefalite Japonesa/epidemiologia , Encefalite Japonesa/prevenção & controle , Encefalite Japonesa/transmissão , Vacinas contra Encefalite Japonesa/imunologia , Vírus da Encefalite Japonesa (Espécie)/imunologia , Animais , Estudos Soroepidemiológicos , Adolescente , Adulto , Anticorpos Antivirais/imunologia , Anticorpos Antivirais/sangue , Criança , Masculino , Feminino , Adulto Jovem , Pré-Escolar , Pessoa de Meia-Idade , Culicidae/virologia , Mosquitos Vetores/virologia
3.
Emerg Infect Dis ; 30(9): 1918-1921, 2024 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-39174038

RESUMO

Alphavirus infections are transmitted by mosquitoes, but the mode of transmission for Mycobacterium ulcerans, which causes Buruli ulcer, is contested. Using notification data for Victoria, Australia, during 2017-2022, adjusted for incubation period, we show close alignment between alphavirus and Buruli ulcer seasons, supporting the hypothesis of mosquito transmission of M. ulcerans.


Assuntos
Infecções por Alphavirus , Úlcera de Buruli , Mosquitos Vetores , Mycobacterium ulcerans , Úlcera de Buruli/transmissão , Úlcera de Buruli/epidemiologia , Úlcera de Buruli/microbiologia , Mycobacterium ulcerans/isolamento & purificação , Infecções por Alphavirus/transmissão , Infecções por Alphavirus/epidemiologia , Humanos , Animais , Vitória/epidemiologia , Mosquitos Vetores/microbiologia , Mosquitos Vetores/virologia , Alphavirus/isolamento & purificação , Culicidae/microbiologia , Culicidae/virologia , Notificação de Doenças
4.
Viruses ; 16(8)2024 Jul 24.
Artigo em Inglês | MEDLINE | ID: mdl-39205156

RESUMO

Arboviruses are pathogens transmitted mainly by mosquitoes, ticks, and sandflies [...].


Assuntos
Infecções por Arbovirus , Arbovírus , Humanos , Arbovírus/classificação , Animais , Infecções por Arbovirus/virologia , Infecções por Arbovirus/transmissão , Carrapatos/virologia , Culicidae/virologia
5.
Viruses ; 16(8)2024 Aug 09.
Artigo em Inglês | MEDLINE | ID: mdl-39205250

RESUMO

Studies on animal virome have mainly concentrated on chordates and medically significant invertebrates, often overlooking sylvatic mosquitoes, constituting a major part of mosquito species diversity. Despite their potential role in arbovirus transmission, the viromes of sylvatic mosquitoes remain largely unexplored. These mosquitoes may also harbor insect-specific viruses (ISVs), affecting arboviral transmission dynamics. The Cerrado biome, known for rapid deforestation and its status as a biodiversity hotspot, offers an ideal setting for investigating mosquito viromes due to potential zoonotic spillover risks from land use changes. This study aimed to characterize the viromes of sylvatic mosquitoes collected from various locations within Minas Gerais state, Brazil. The total RNA was extracted from mosquito pools of Psorophora albipes, Sabethes albiprivus, Sa. chloropterus, Psorophora ferox, and Coquillettidia venezuelensis species, followed by high-throughput sequencing (HTS). Bioinformatic analysis included quality control, contig assembly, and viral detection. Sequencing data analysis revealed 11 near-complete viral genomes (new viruses are indicated with asterisks) across seven viral families and one unassigned genus. These included: Xinmoviridae (Ferox mosquito mononega-like virus* and Albipes mosquito Gordis-like virus*), Phasmaviridae (Sabethes albiprivus phasmavirus*), Lispiviridae (Pedras lispivirus variant MG), Iflaviridae (Sabethes albiprivus iflavivirus*), Virgaviridae (Buriti virga-like virus variant MG and Sabethes albiprivus virgavirus 1*), Flaviviridae (Psorophora ferox flavivirus*), Mesoniviridae (Alphamesonivirus cavallyense variant MG), and the genus Negevirus (Biggie virus variant MG virus and Coquillettidia venezuelensis negevirus*). Moreover, the presence of ISVs and potential novel arboviruses underscores the need for ongoing surveillance and control strategies to mitigate the risk of emerging infectious diseases.


Assuntos
Infecções por Arbovirus , Arbovírus , Culicidae , Mosquitos Vetores , Filogenia , Viroma , Animais , Brasil , Arbovírus/genética , Arbovírus/classificação , Arbovírus/isolamento & purificação , Viroma/genética , Culicidae/virologia , Infecções por Arbovirus/transmissão , Infecções por Arbovirus/virologia , Mosquitos Vetores/virologia , Genoma Viral , Sequenciamento de Nucleotídeos em Larga Escala , Vírus de Insetos/genética , Vírus de Insetos/classificação , Vírus de Insetos/isolamento & purificação
6.
Ann Parasitol ; 70(2): 55-71, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-39097293

RESUMO

USUV in Europe is detected in vectors (mosquitoes) and has a reservoir in vertebrates. There are known fatal epidemics among birds, especially blackbirds. Currently, USUV also causes rare infections in humans. However, the emergence of clinical cases, including severe neurological symptoms, and the finding of seroprevalence in asymptomatic people (e.g. blood donors, forest workers), indicate that USUV, due to its neurotropism, may become a potential public health problem. Therefore, it is very important to monitor cases infections in humans, migratory and resident birds and other animals that may constitute a reservoir of the virus, but also detection of the virus in mosquitoes (vectors), including alien and invasive species, as well as the impact of climatic factors on the ability to spread the virus in the Europe. There is currently no evidence of virus transmission during transfusion or transplantation, but the potential risk of virus transmission from an asymptomatic blood donor to an mmunocompromised recipient must be considered. Although the occurrence of USUV in European countries is currently not a significant threat, surveillance and screening of blood donors for USUV should be carried out during the period of vector activity and during WNV epidemics, as well as in patients with symptoms of meningitis and encephalitis.


Assuntos
Flavivirus , Animais , Humanos , Culicidae/virologia , Infecções por Flavivirus/virologia , Mosquitos Vetores/virologia
7.
Parasit Vectors ; 17(1): 341, 2024 Aug 13.
Artigo em Inglês | MEDLINE | ID: mdl-39138532

RESUMO

BACKGROUND: Rift Valley fever virus (RVFV) is a zoonotic mosquito-borne virus with serious implications for livestock health, human health, and the economy in Africa, and is suspected to be endemic in north-eastern KwaZulu-Natal (KZN), South Africa. The vectors of RVFV in this area are poorly known, although several species, such as Aedes (Neomelaniconion) mcintoshi, Aedes (Neomelaniconion) circumluteolus, Aedes (Aedimorphus) durbanensis, and Culex (Lasioconops) poicilipes may be involved. The aim of the study was to determine the vertebrate blood meal sources of potential RVFV mosquito vectors in north-eastern KZN and to characterize the host-biting network. METHODS: Blood-fed mosquitoes were collected monthly from November 2019 to February 2023 using a backpack aspirator, CO2-baited Centers for Disease Control and Prevention (CDC) miniature light traps and tent traps, in the vicinity of water bodies and livestock farming households. The mosquitoes were morphologically identified. DNA was extracted from individual mosquitoes and used as templates to amplify the vertebrate cytochrome c oxidase I (COI) and cytochrome b (cytb) genes using conventional polymerase chain reaction (PCR). Amplicons were sequenced and queried in GenBank and the Barcode of Life Data systems to identify the vertebrate blood meal sources and confirm mosquito identifications. All mosquitoes were screened for RVFV using real time reverse transcription (RT)-PCR. RESULTS: We identified the mammalian (88.8%) and avian (11.3%) blood meal sources from 409 blood-fed mosquitoes. Aedes circumluteolus (n = 128) made up the largest proportion of collected mosquitoes. Cattle (n = 195) and nyala (n = 61) were the most frequent domestic and wild hosts, respectively. Bipartite network analysis showed that the rural network consisted of more host-biting interactions than the reserve network. All mosquitoes tested negative for RVFV. CONCLUSIONS: Several mosquito species, including Ae. circumluteolus, and vertebrate host species, including cattle and nyala, could play a central role in RVFV transmission. Future research in this region should focus on these species to better understand RVFV amplification.


Assuntos
Aedes , Mosquitos Vetores , Febre do Vale de Rift , Vírus da Febre do Vale do Rift , Animais , África do Sul , Mosquitos Vetores/virologia , Mosquitos Vetores/fisiologia , Vírus da Febre do Vale do Rift/genética , Vírus da Febre do Vale do Rift/isolamento & purificação , Vírus da Febre do Vale do Rift/fisiologia , Febre do Vale de Rift/transmissão , Febre do Vale de Rift/virologia , Febre do Vale de Rift/epidemiologia , Aedes/virologia , Aedes/fisiologia , Aedes/genética , Aedes/classificação , Humanos , Comportamento Alimentar , Culex/virologia , Culex/fisiologia , Mordeduras e Picadas de Insetos , Feminino , Culicidae/virologia , Culicidae/fisiologia , Culicidae/classificação
8.
Virus Res ; 348: 199447, 2024 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-39117146

RESUMO

One third of all emerging infectious diseases are vector-borne, with no licensed antiviral therapies available against any vector-borne viruses. Zika virus and Usutu virus are two emerging flaviviruses transmitted primarily by mosquitoes. These viruses modulate different host pathways, including the PI3K/AKT/mTOR pathway. Here, we report the effect on ZIKV and USUV replication of two AKT inhibitors, Miransertib (ARQ-092, allosteric inhibitor) and Capivasertib (AZD5363, competitive inhibitor) in different mammalian and mosquito cell lines. Miransertib showed a stronger inhibitory effect against ZIKV and USUV than Capivasertib in mammalian cells, while Capivasertib showed a stronger effect in mosquito cells. These findings indicate that AKT plays a conserved role in flavivirus infection, in both the vertebrate host and invertebrate vector. Nevertheless, the specific function of AKT may vary depending on the host species. These findings indicate that AKT may be playing a conserved role in flavivirus infection in both, the vertebrate host and the invertebrate vector. However, the specific function of AKT may vary depending on the host species. A better understanding of virus-host interactions is therefore required to develop new treatments to prevent human disease and new approaches to control transmission by insect vectors.


Assuntos
Infecções por Flavivirus , Flavivirus , Proteínas Proto-Oncogênicas c-akt , Replicação Viral , Zika virus , Animais , Flavivirus/fisiologia , Flavivirus/efeitos dos fármacos , Flavivirus/genética , Humanos , Proteínas Proto-Oncogênicas c-akt/metabolismo , Proteínas Proto-Oncogênicas c-akt/genética , Linhagem Celular , Zika virus/fisiologia , Zika virus/efeitos dos fármacos , Infecções por Flavivirus/virologia , Infecções por Flavivirus/transmissão , Vertebrados/virologia , Antivirais/farmacologia , Mosquitos Vetores/virologia , Chlorocebus aethiops , Culicidae/virologia , Interações Hospedeiro-Patógeno
10.
Acta Trop ; 257: 107321, 2024 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-38972559

RESUMO

Fragmented landscapes in Mexico, characterized by a mix of agricultural, urban, and native vegetation cover, presents unique ecological characteristics that shape the mosquito community composition and mosquito-borne diseases. The extent to which landscape influences mosquito populations and mosquito-borne diseases is still poorly understood. This work assessed the effect of landscape metrics -agriculture, urban, and native vegetation cover- on mosquito diversity and arbovirus presence in fragmented tropical deciduous forests in Central Mexico during 2021. Among the 21 mosquito species across six genera we identified, Culex quinquefasciatus was the most prevalent species, followed by Aedes aegypti, Ae. albopictus, and Ae. epactius. Notably, areas with denser native vegetation cover displayed higher mosquito species richness, which could have an impact on phenomena such as the dilution effect. Zika and dengue virus were detected in 85% of captured species, with first reports of DENV in several Aedes species and ZIKV in multiple Aedes and Culex species. These findings underscore the necessity of expanding arbovirus surveillance beyond Ae. aegypti and advocate for a deeper understanding of vector ecology in fragmented landscapes to adequately address public health strategies.


Assuntos
Arbovírus , Biodiversidade , Culicidae , Mosquitos Vetores , Animais , Arbovírus/isolamento & purificação , Arbovírus/classificação , México/epidemiologia , Mosquitos Vetores/virologia , Mosquitos Vetores/classificação , Culicidae/virologia , Culicidae/classificação , Agricultura , Aedes/virologia , Aedes/classificação , Cidades , Zika virus/isolamento & purificação , Zika virus/genética , Ecossistema
11.
Acta Trop ; 257: 107322, 2024 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-39004112

RESUMO

Arboviruses have always been a significant public health concern. Metagenomic surveillance has expanded the number of novel, often unclassified arboviruses, especially mosquito-borne and mosquito-specific viruses. This report presents the first description of a novel single-stranded RNA virus, Wanghe virus, identified from mosquitoes that were collected in Shandong Province in 2022. In this study, a total of 4,795 mosquitoes were collected and then divided into 105 pools according to location and species. QRT-PCR and nested PCR were performed to confirm the presence of Wanghe virus, and its genomic features and phylogenetic relationships were further analyzed. Our results revealed that Wanghe virus was detected in 9 out of the 105 mosquito pools, resulting in a minimum infection rate (MIR) of 0.19 % (9/4,795). One complete genome sequence and three viral partial sequences were obtained from the Wanghe virus-positive pools. Pairwise distance analysis indicated that these amplified sequences shared high nucleotide identity. Phylogenetic analysis demonstrated that Wanghe virus is most closely related to Guiyang Solinvi-like virus 3, which belongs to Solinviviridae. Further analyses indicated that Wanghe virus is a new, unclassified member of Solinviviridae.


Assuntos
Culicidae , Genoma Viral , Filogenia , Animais , China , Culicidae/virologia , Vírus de RNA/genética , Vírus de RNA/isolamento & purificação , Vírus de RNA/classificação , RNA Viral/genética , Arbovírus/genética , Arbovírus/isolamento & purificação , Arbovírus/classificação , Mosquitos Vetores/virologia
12.
Acta Trop ; 258: 107324, 2024 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-39009235

RESUMO

Mosquito-borne diseases are a known tropical phenomenon. This review was conducted to assess the mecha-nisms through which climate change impacts mosquito-borne diseases in temperate regions. Articles were searched from PubMed, Scopus, Web of Science, and Embase databases. Identification criteria were scope (climate change and mosquito-borne diseases), region (temperate), article type (peer-reviewed), publication language (English), and publication years (since 2015). The WWH (who, what, how) framework was applied to develop the research question and thematic analyses identified the mechanisms through which climate change affects mosquito-borne diseases. While temperature ranges for disease transmission vary per mosquito species, all are viable for temperate regions, particularly given projected temperature increases. Zika, chikungunya, and dengue transmission occurs between 18-34 °C (peak at 26-29 °C). West Nile virus establishment occurs at monthly average temperatures between 14-34.3 °C (peak at 23.7-25 °C). Malaria establishment occurs when the consecutive average daily temperatures are above 16 °C until the sum is above 210 °C. The identified mechanisms through which climate change affects the transmission of mosquito-borne diseases in temperate regions include: changes in the development of vectors and pathogens; changes in mosquito habitats; extended transmission seasons; changes in geographic spread; changes in abundance and behaviors of hosts; reduced abundance of mosquito predators; interruptions to control operations; and influence on other non-climate factors. Process and stochastic approaches as well as dynamic and spatial models exist to predict mosquito population dynamics, disease transmission, and climate favorability. Future projections based on the observed relations between climate factors and mosquito-borne diseases suggest that mosquito-borne disease expansion is likely to occur in temperate regions due to climate change. While West Nile virus is already established in some temperate regions, Zika, dengue, chikungunya, and malaria are also likely to become established over time. Moving forward, more research is required to model future risks by incorporating climate, environmental, sociodemographic, and mosquito-related factors under changing climates.


Assuntos
Mudança Climática , Culicidae , Mosquitos Vetores , Doenças Transmitidas por Vetores , Animais , Humanos , Doenças Transmitidas por Vetores/transmissão , Doenças Transmitidas por Vetores/epidemiologia , Mosquitos Vetores/virologia , Mosquitos Vetores/fisiologia , Culicidae/virologia , Culicidae/fisiologia , Doenças Transmitidas pela Água/epidemiologia , Doenças Transmitidas pela Água/virologia , Doenças Transmitidas pela Água/transmissão , Malária/transmissão , Malária/epidemiologia , Temperatura , Doenças Transmitidas por Mosquitos
13.
J Virol ; 98(8): e0008324, 2024 Aug 20.
Artigo em Inglês | MEDLINE | ID: mdl-38995042

RESUMO

Mosquitoes can transmit several pathogenic viruses to humans, but their natural viral community is also composed of a myriad of other viruses such as insect-specific viruses (ISVs) and those that infect symbiotic microorganisms. Besides a growing number of studies investigating the mosquito virome, the majority are focused on few urban species, and relatively little is known about the virome of sylvatic mosquitoes, particularly in high biodiverse biomes such as the Brazilian biomes. Here, we characterized the RNA virome of 10 sylvatic mosquito species from Atlantic forest remains at a sylvatic-urban interface in Northeast Brazil employing a metatranscriptomic approach. A total of 16 viral families were detected. The phylogenetic reconstructions of 14 viral families revealed that the majority of the sequences are putative ISVs. The phylogenetic positioning and, in most cases, the association with a high RNA-dependent RNA polymerase amino acid divergence from other known viruses suggests that the viruses characterized here represent at least 34 new viral species. Therefore, the sylvatic mosquito viral community is predominantly composed of highly divergent viruses highlighting the limited knowledge we still have about the natural virome of mosquitoes in general. Moreover, we found that none of the viruses recovered were shared between the species investigated, and only one showed high identity to a virus detected in a mosquito sampled in Peru, South America. These findings add further in-depth understanding about the interactions and coevolution between mosquitoes and viruses in natural environments. IMPORTANCE: Mosquitoes are medically important insects as they transmit pathogenic viruses to humans and animals during blood feeding. However, their natural microbiota is also composed of a diverse set of viruses that cause no harm to the insect and other hosts, such as insect-specific viruses. In this study, we characterized the RNA virome of sylvatic mosquitoes from Northeast Brazil using unbiased metatranscriptomic sequencing and in-depth bioinformatic approaches. Our analysis revealed that these mosquitoes species harbor a diverse set of highly divergent viruses, and the majority comprises new viral species. Our findings revealed many new virus lineages characterized for the first time broadening our understanding about the natural interaction between mosquitoes and viruses. Finally, it also provided several complete genomes that warrant further assessment for mosquito and vertebrate host pathogenicity and their potential interference with pathogenic arboviruses.


Assuntos
Culicidae , Filogenia , Viroma , Animais , Brasil , Viroma/genética , Culicidae/virologia , Mosquitos Vetores/virologia , Genoma Viral , RNA Viral/genética , Vírus de Insetos/genética , Vírus de Insetos/classificação , Vírus de Insetos/isolamento & purificação , Vírus de RNA/genética , Vírus de RNA/classificação , Vírus de RNA/isolamento & purificação
15.
Acta Trop ; 257: 107272, 2024 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-38885823

RESUMO

The Orthoflavivirus ilheusense (ILHV) is an arbovirus that was first isolated in Brazil in 1944 during an epidemiologic investigation of yellow fever. Is a member of the Flaviviridae family and it belongs to the antigenic complex of the Ntaya virus group. Psorophora ferox is the primary vector of ILHV and this study presents the isolation and phylogenetic analysis of ILHV in a pool of Ps. ferox collected in the state of Goiás in 2021. Viral isolation tests were performed on Vero cells and C6/36 clones. The indirect immunofluorescence test (IFI) was used to confirm the positivity of the sample. The positive sample underwent RT-qPCR, sequencing, and phylogenetic analysis. This is the first report of ILHV circulation in this municipality and presented close relationship between this isolate and another ILHV isolate collected in the city of Belém (PA).


Assuntos
Culicidae , Filogenia , Animais , Brasil , Células Vero , Culicidae/virologia , Chlorocebus aethiops , Flavivirus/genética , Flavivirus/isolamento & purificação , Flavivirus/classificação , Mosquitos Vetores/virologia
16.
Parasit Vectors ; 17(1): 270, 2024 Jun 26.
Artigo em Inglês | MEDLINE | ID: mdl-38926834

RESUMO

BACKGROUND: Cache Valley virus (CVV) is an understudied Orthobunyavirus with a high spillover transmission potential due to its wide geographical distribution and large number of associated hosts and vectors. Although CVV is known to be widely distributed throughout North America, no studies have explored its geography or employed computational methods to explore the mammal and mosquito species likely participating in the CVV sylvatic cycle. METHODS: We used a literature review and online databases to compile locality data for CVV and its potential vectors and hosts. We linked location data points with climatic data via ecological niche modeling to estimate the geographical range of CVV and hotspots of transmission risk. We used background similarity tests to identify likely CVV mosquito vectors and mammal hosts to detect ecological signals from CVV sylvatic transmission. RESULTS: CVV distribution maps revealed a widespread potential viral occurrence throughout North America. Ecological niche models identified areas with climate, vectors, and hosts suitable to maintain CVV transmission. Our background similarity tests identified Aedes vexans, Culiseta inornata, and Culex tarsalis as the most likely vectors and Odocoileus virginianus (white-tailed deer) as the most likely host sustaining sylvatic transmission. CONCLUSIONS: CVV has a continental-level, widespread transmission potential. Large areas of North America have suitable climate, vectors, and hosts for CVV emergence, establishment, and spread. We identified geographical hotspots that have no confirmed CVV reports to date and, in view of CVV misdiagnosis or underreporting, can guide future surveillance to specific localities and species.


Assuntos
Vírus Bunyamwera , Ecossistema , Mosquitos Vetores , Animais , Mosquitos Vetores/virologia , América do Norte/epidemiologia , Culicidae/virologia , Infecções por Bunyaviridae/transmissão , Infecções por Bunyaviridae/epidemiologia , Infecções por Bunyaviridae/virologia , Geografia , Culex/virologia , Aedes/virologia , Mamíferos/virologia , Cervos/virologia , Humanos , Ecologia
17.
Trends Microbiol ; 32(8): 725-727, 2024 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-38853121

RESUMO

The transmission of flaviviruses, such as dengue virus (DENV) and Zika virus (ZIKV), poses a significant threat to global public health. Zhang et al. recently showed that Rosenbergiella sp. YN46 (Rosenbergiella_YN46), a bacterium from the mosquito gut, inhibits flavivirus transmission and thus offers a potential biocontrol strategy with broad public health implications.


Assuntos
Flavivirus , Animais , Flavivirus/fisiologia , Humanos , Infecções por Flavivirus/transmissão , Infecções por Flavivirus/virologia , Infecções por Flavivirus/prevenção & controle , Zika virus/fisiologia , Culicidae/microbiologia , Culicidae/virologia , Vírus da Dengue/fisiologia , Microbioma Gastrointestinal/fisiologia , Mosquitos Vetores/virologia , Mosquitos Vetores/microbiologia
18.
An Acad Bras Cienc ; 96(2): e20230452, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38922274

RESUMO

The genus Flavivirus comprises approximately 80 different viruses. Phylogenetic relationships among its members indicate a clear ecological separation between those viruses transmitted by mosquitoes, ticks, with no known vector, and insect-specific Flaviviruses. The diversity and phylogenetic relationships among insect-specific flaviviruses circulating in the central and northern regions of Argentina were studied by performing molecular detection and characterization of the NS5 protein gene in mosquitoes collected in Córdoba, Chaco and Tucumán provinces. Overall, 68 out of 1776 pools were positive. CxFV, KRV and CFAV circulate in the 3 studied provinces. Several mosquito species (Aedes aegypti, Culex bidens, Cx. dolosus, Cx. interfor, Cx. quinquefasciatus, Cx. saltanensis, Haemagogus spegazzini) were found infected. A wide circulation of CxFV was observed in the central-northern region of Argentina. CxFV strains detected in our study clustered with strains circulating in Santa Fe and Buenos Aires provinces (Argentina), and other countries such as Indonesia, Mexico, Uganda and Taiwan. The presence of these viruses in mosquitoes could play an important role from the public health perspective, because it has been shown that previous CxFV infection can increase or block the infection of the mosquito by other pathogenic flaviviruses.


Assuntos
Culicidae , Flavivirus , Mosquitos Vetores , Filogenia , Animais , Argentina , Flavivirus/classificação , Flavivirus/genética , Flavivirus/isolamento & purificação , Culicidae/virologia , Culicidae/classificação , Mosquitos Vetores/virologia , Mosquitos Vetores/classificação
19.
Nat Commun ; 15(1): 5179, 2024 Jun 19.
Artigo em Inglês | MEDLINE | ID: mdl-38898037

RESUMO

Viral genetic diversity presents significant challenges in developing antivirals with broad-spectrum activity and high barriers to resistance. Here we report development of proteolysis targeting chimeras (PROTACs) targeting the dengue virus envelope (E) protein through coupling of known E fusion inhibitors to ligands of the CRL4CRBN E3 ubiquitin ligase. The resulting small molecules block viral entry through inhibition of E-mediated membrane fusion and interfere with viral particle production by depleting intracellular E in infected Huh 7.5 cells. This activity is retained in the presence of point mutations previously shown to confer partial resistance to the parental inhibitors due to decreased inhibitor-binding. The E PROTACs also exhibit broadened spectrum of activity compared to the parental E inhibitors against a panel of mosquito-borne flaviviruses. These findings encourage further exploration of targeted protein degradation as a differentiated and potentially advantageous modality for development of broad-spectrum direct-acting antivirals.


Assuntos
Antivirais , Vírus da Dengue , Flavivirus , Proteólise , Internalização do Vírus , Humanos , Proteólise/efeitos dos fármacos , Animais , Antivirais/farmacologia , Flavivirus/efeitos dos fármacos , Flavivirus/genética , Flavivirus/metabolismo , Internalização do Vírus/efeitos dos fármacos , Vírus da Dengue/efeitos dos fármacos , Vírus da Dengue/fisiologia , Vírus da Dengue/genética , Culicidae/virologia , Ubiquitina-Proteína Ligases/metabolismo , Proteínas do Envelope Viral/metabolismo , Linhagem Celular
20.
mSphere ; 9(7): e0020324, 2024 Jul 30.
Artigo em Inglês | MEDLINE | ID: mdl-38912793

RESUMO

The microbiome plays vital roles in the life history of mosquitoes, including their development, immunity, longevity, and vector competence. Recent advances in sequencing technologies have allowed for detailed exploration into the diverse microorganisms harbored by these medically important insects. Although these meta-studies have cataloged the microbiomes of mosquitoes in several continents, much of the information currently available for North America is limited to the state of California. In this study, we collected >35,000 mosquitoes throughout Manitoba, Canada, over a 3-year period and then harnessed RNA sequencing and targeted reverse transcriptase-PCR to characterize the microbiomes of the eight most pervasive and important vector and pest species. The consensus microbiome of each species was overwhelmingly composed of viruses but also included fungi, bacteria, protozoa, and parasitic invertebrates. The microbial assemblages were heterogeneous between species, even within the same genus. We detected notable pathogens, including the causal agents of Cache Valley Fever, avian malaria, and canine heartworm. The remaining microbiome consisted largely of putatively insect-specific viruses that are not well characterized, including 17 newly discovered viruses from 10 different families. Future research should focus on evaluating the potential application of these viruses in biocontrol, as biomarkers, and/or in disrupting mosquito vectorial capacity. Interestingly, we also detected viruses that naturally infect honeybees and thrips, which were presumably acquired indirectly through nectar foraging behaviors. Overall, we provide the first comprehensive catalog of the microorganisms harbored by the most common and important mosquito vectors and pests in the Canadian Prairies. IMPORTANCE: Mosquitoes are the most dangerous animals on the planet, responsible for over 800,000 deaths per year globally. This is because they carry and transmit a plethora of human disease-causing microorganisms, such as West Nile virus and the malaria parasite. Recent innovations in nucleic acid sequencing technologies have enabled researchers unparalleled opportunities to characterize the suite of microorganisms harbored by different mosquito species, including the causal agents of disease. In our study, we carried out 3 years of intensive mosquito surveillance in Canada. We collected and characterized the microorganisms harbored by >35,000 mosquitoes, including the identification of the agents of Cache Valley fever, avian malaria, and canine heartworm. We also detected insect-specific viruses and discovered 17 new viruses that have never been reported. This study, which is the first of its kind in Canada and one of only a handful globally, will greatly aid in future infectious disease research.


Assuntos
Culicidae , Mosquitos Vetores , Animais , Mosquitos Vetores/microbiologia , Mosquitos Vetores/virologia , Culicidae/microbiologia , Culicidae/virologia , Vírus/genética , Vírus/classificação , Vírus/isolamento & purificação , Manitoba , Microbiota/genética , Bactérias/classificação , Bactérias/genética , Bactérias/isolamento & purificação , Bactérias/virologia , Canadá , Transcriptoma
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