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3081por Tonnang, Henri EZ, Tchouassi, David P, Juarez, Henry S, Igweta, Lilian K, Djouaka, Rousseau F“…Although shifts in the distribution and boundaries of the major malaria vectors (Anopheles gambiae s.s. and An. arabiensis) across Africa have been predicted, quantified areas of absolute change in zone of suitability for their survival have not been defined. …”
Publicado 2014
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3082por Kazemian, Majid, Suryamohan, Kushal, Chen, Jia-Yu, Zhang, Yinan, Samee, Md. Abul Hassan, Halfon, Marc S., Sinha, Saurabh“…Here, we demonstrate that methods we previously developed for computational cis-regulatory module (CRM) discovery in Drosophila can be used effectively in highly diverged (250–350 Myr) insect species including Anopheles gambiae, Tribolium castaneum, Apis mellifera, and Nasonia vitripennis. …”
Publicado 2014
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3083por Nuss, Andrew B., Ejendal, Karin F. K., Doyle, Trevor B., Meyer, Jason M., Lang, Emma G., Watts, Val J., Hill, Catherine A.“…Orthologous DOP2 receptors identified from the African malaria mosquito, Anopheles gambiae, the sand fly, Phlebotomus papatasi and the tsetse fly, Glossina morsitans, had high sequence similarity to CqDOP2 and AaDOP2. …”
Publicado 2015
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3084por Dida, Gabriel O, Gelder, Frank B, Anyona, Douglas N, Abuom, Paul O, Onyuka, Jackson O, Matano, Ally-Said, Adoka, Samson O, Kanangire, Canisius K, Owuor, Philip O, Ouma, Collins, Ofulla, Ayub VO“…Predators (n=297) belonging to 3 orders of Hemiptera (54.2%), Odonata (22.9%) and Coleoptera (22.9%), and mosquito larvae (n=4001) belonging to 10 species, which included An.gambiae s.l (44.9%), Culex spp. (34.8%) and An. coustani complex (13.8%), An. maculipalpis (3.6%), An. phaorensis (1.2%), An. funestus group (0.5%), An. azaniae (0.4%), An. hamoni (0.3%), An. christyi (0.3%), An. ardensis (0.08%), An. faini (0.07%), An. sergentii (0.05%) and 0.05% of Aedes mosquito larvae which were not identified to species level, due to lack of an appropriate key, were captured from different habitats along the Mara river. …”
Publicado 2015
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3085por Bagi, Judit, Grisales, Nelson, Corkill, Rebecca, Morgan, John C, N’Falé, Sagnon, Brogdon, William G, Ranson, Hilary“…METHODS: Bioassays were adapted to quantify the level of resistance to permethrin in laboratory colonies and field populations of Anopheles gambiae sensu lato. WHO susceptibility tube assays were used to produce data on mortality versus exposure time and CDC bottle bioassays were used to generate dose response data sets. …”
Publicado 2015
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3086“…We then tested the WHO and CDC bioassays on laboratory strains of Aedes aegypti, Anopheles stephensi, An. gambiae and An. arabiensis with different insecticide resistance levels against permethrin, λ-cyhalothrin, DDT, bendiocarb and malathion. …”
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3087por Goindin, Daniella, Delannay, Christelle, Ramdini, Cédric, Gustave, Joël, Fouque, Florence“…However, for the same parity rates, the estimation of infective life expectation is very different between Ae. aegypti and Anopheles gambiae mosquitoes. Correlation of field parity rates with transmission risks requires absolutely to be based on Ae. aegypti models, since available Anopheles sp. models underestimate greatly the females longevity.…”
Publicado 2015
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3088“…Six putative LW-sensitive opsins predicted in the yellow fever mosquito, Aedes aegypti and malaria mosquito, Anopheles gambiae, and eight in the southern house mosquito, Culex quinquefasciatus, suggest gene expansion in the Family Culicidae (mosquitoes) relative to other insects. …”
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3089“…BACKGROUND: The Anopheles gambiae complex consists of species that vary greatly in their capacity to transmit malaria. …”
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3090por Mmbando, Arnold S., Ngowo, Halfan S., Kilalangongono, Masoud, Abbas, Said, Matowo, Nancy S., Moore, Sarah J., Okumu, Fredros O.“…The collections were done hourly (1830hrs-0730hrs) and mosquito catches compared between push-pull and controls. An. gambiae s.l. and An. funestus s.l. were assessed by PCR to identify sibling species, and ELISA to detect Plasmodium falciparum and blood meal sources. …”
Publicado 2017
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3091“…However, only comparative analysis of gene expression levels between distant species with two extra-embryonic membranes, like A. gambiae or C. albipunctata, and D. melanogaster, has been conducted. …”
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3092“…RESULTS: Morphological and PCR analysis of anopheline larvae revealed the presence of An. arabiensis, a member of the Anopheles gambiae complex. Seven out of 9 physiochemical parameters showed higher concentrations in polluted larval habitats in comparison to control site. …”
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3093por Iwashita, Hanako, Higa, Yukiko, Futami, Kyoko, Lutiali, Peter A., Njenga, Sammy M., Nabeshima, Takeshi, Minakawa, Noboru“…Mosquito flavivirus was detected in three pools of Anopheles gambiae s.l. collected in the dry and rainy seasons. …”
Publicado 2018
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3094“…A key feature of the vectorial capacity of the major sub-Saharan African malaria vector Anopheles gambiae sensu stricto (s.s.) is its tendency to feed almost exclusively on humans. …”
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3095por Mazigo, Humphrey D., Mboera, Leonard E. G., Rumisha, Susan F., Kweka, Eliningaya J.“…Similarly, the control arm maintained highest density of Anopheles gambiae sensu lato larvae compared to interventions blocks (F = 21.6, P < 0.001). …”
Publicado 2019
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3096por Marshall, John M., Raban, Robyn R., Kandul, Nikolay P., Edula, Jyotheeswara R., León, Tomás M., Akbari, Omar S.“…Here, we review the disease-refractory genes designed to date to target Plasmodium falciparum malaria transmitted by Anopheles gambiae, and arboviruses transmitted by Aedes aegypti, including dengue serotypes 2 and 3, chikungunya, and Zika viruses. …”
Publicado 2019
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3097por Nkahe, Diane Leslie, Kopya, Edmond, Djiappi-Tchamen, Borel, Toussile, Wilson, Sonhafouo-Chiana, Nadege, Kekeunou, Sevilor, Mimpfoundi, Remy, Awono-Ambene, Parfait, Wondji, Charles Sinclair, Antonio-Nkondjio, Christophe“…Background: Pyrethroid resistance is rapidly expanding in An. gambiae s.l. populations across Sub-Saharan Africa. …”
Publicado 2020
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3098“…Furthermore, molecular identification of Anopheles gambiae s.l was carried out using species-specific Polymerase Chain Reaction. …”
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3099por Ngom, El Hadji Malick, Virgillito, Chiara, Manica, Mattia, Rosà, Roberto, Pichler, Verena, Sarleti, Noemi, Kassé, Isseu, Diallo, Mawlouth, della Torre, Alessandra, Dia, Ibrahima, Caputo, Beniamino“…From the methodological perspective, results show a higher specificity of BG traps for Cx. quinquefasciatus and of CDC traps for An. gambiae s.l. and highlight that, despite both traps target the host-seeking fraction of the population, they provide different patterns of species abundance, temporal dynamics and host-seeking activity, leading to possible misinterpretation of the species bionomics. …”
Publicado 2021
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3100por Debrah, Isaiah, Afrane, Yaw A., Amoah, Linda E., Ochwedo, Kevin O., Mukabana, Wolfgang R., Zhong, Daibin, Zhou, Guofa, Lee, Ming‑Chieh, Onyango, Shirley A., Magomere, Edwin O., Atieli, Harrysone, Githeko, Andrew K., Yan, Guiyun“…Approximately 59%, 35% and 5% of An. funestus larvae co-existed with An. gambiae s.l, Culex spp and An. coustani in the same habitats respectively. …”
Publicado 2021
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