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41 results for “Culex mosquitoes”
Figure 1 in Aberrations in the larval chaetotaxy of mosquitoes (Diptera: Culicidae) of Iran and a taxonomic note on the seta 1-C (preclypeal seta) of Culex in southwestern Asia
Figure 1. (a) Anopheles (Cellia) dthali, Sistan and Baluchistan Province, Iran, 18 June 2006 (100×). (b) Anopheles (Anopheles) maculipennis, Ardebil Province, Iran, 3 July 2006 (200×).
Figure 6 in Aberrations in the larval chaetotaxy of mosquitoes (Diptera: Culicidae) of Iran and a taxonomic note on the seta 1-C (preclypeal seta) of Culex in southwestern Asia
Figure 6. (a) Culex (Culex) pipiens, Pipiens Group, Isfahan Province, Iran (200×). (b) Culex (Culex) mimeticus, Sitiens Group, Qom Province, Iran (200×).
Figure 7 in Aberrations in the larval chaetotaxy of mosquitoes (Diptera: Culicidae) of Iran and a taxonomic note on the seta 1-C (preclypeal seta) of Culex in southwestern Asia
Figure 7. (a) Culex (Oculeomyia) bitaeniorhynchus, Hormozgan Province, Iran (200×). (b) Culex (Culex) sitiens, Sitiens Group, Hormozgan Province, Iran (100×).
Figure 4 in Aberrations in the larval chaetotaxy of mosquitoes (Diptera: Culicidae) of Iran and a taxonomic note on the seta 1-C (preclypeal seta) of Culex in southwestern Asia
Figure 4. (a) Anopheles (Anopheles) marteri, Isfahan Province, Iran, 12 July 2007 (100×). (b) Culex (Maillotia) hortensis, North Khorasan Province, Iran, 11 July 2009 (200×).
Figure 9 in Aberrations in the larval chaetotaxy of mosquitoes (Diptera: Culicidae) of Iran and a taxonomic note on the seta 1-C (preclypeal seta) of Culex in southwestern Asia
Figure 9. (a) Culex (Culex) perexiguus, Pipiens Group, Isfahan Province, Iran (200×). (b) Culex (Barraudius) pusillus, Kerman Province, Iran (100×).
Figure 5 in Aberrations in the larval chaetotaxy of mosquitoes (Diptera: Culicidae) of Iran and a taxonomic note on the seta 1-C (preclypeal seta) of Culex in southwestern Asia
Figure 5. (a) Culex (Culex) theileri, Kurdistan Province, Iran, 7 August 2006 (100×). (b) Culex (Culex) tritaeniorhynchus, Sistan and Baluchistan Province, Iran (200×).
Data from: Gene-dosage effects on fitness in recent adaptive duplications: ace-1 in the mosquito Culex pipiens
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Data from: Composite linkage map and enhanced genome map for Culex pipiens complex mosquitoes
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Data from: High chlorpyrifos resistance in Culex pipiens mosquitoes: strong synergy between resistance genes
We investigated the genetic determinism of high chlorpyrifos resistance (HCR), a phenotype first described in 1999 in Culex pipiens mosquitoes surviving chlorpyrifos doses greater than or equal to1 mg l−1 and more recently found in field samples from Tunisia, Israel or Indian Ocean islands. Through chlorpyrifos selection, we selected several HCR strains that displayed over 10 000-fold resistance. All strains were homozygous for resistant alleles at two main loci: the ace-1 gene, with the resistant ace-1R allele expressing the insensitive G119S acetylcholinesterase, and a resistant allele of an unknown gene (named T) linked to the sex and ace-2 genes. We constructed a strain carrying only the T-resistant allele and studied its resistance characteristics. By crossing this strain with strains harboring different alleles at the ace-1 locus, we showed that the resistant ace-1R and the T alleles act in strong synergy, as they elicited a resistance 100 times higher than expected from a simple multiplicative effect. This effect was specific to chlorpyrifos and parathion and was not affected by synergists. We also examined how HCR was expressed in strains carrying other ace-1-resistant alleles, such as ace-1V or the duplicated ace-1D allele, currently spreading worldwide. We identified two major parameters that influenced the level of resistance: the number and the nature of the ace-1-resistant alleles and the number of T alleles. Our data fit a model that predicts that the T allele acts by decreasing chlorpyrifos concentration in the compartment targeted in insects.
Figure 3 in Culex quinquefasciatus predominance during integrated mosquito surveillance in an urban area of the Brazilian Amazon
Figure 3. Number of mosquitoes by species using two sampling techniques (A) collected indoors and outdoors (B) in nine neighborhoods from the city of Porto Velho, Rondônia, Brazilian Amazon.
Figure 1 in Infestation levels of Culex (Phytotelmatomyia) mosquitoes inhabiting water-filled Eryngium pandanifolium (Apiaceae) under different sunlight condition
Figure 1. Study area and Eryngium pandanifolium specimens.
Data from: How diverse detrital environments influence nutrient stoichiometry between males and females of the co-occurring container mosquitoes Aedes albopictus, Ae. aegypti, and Culex quinquefasciatus
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Data from: "Identification and assessment of single nucleotide polymorphisms (SNPs) between Culex complex mosquitoes." in Genomic Resources Notes Accepted 1 August 2014-30 September 2014
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Data from: Development of a high-throughput microsphere-based molecular assay to identify fifteen common bloodmeal hosts of Culex mosquitoes
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Data for: Nectar-dwelling microbes of common tansy are attractive to its mosquito pollinator, Culex pipiens
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Data from: High chlorpyrifos resistance in Culex pipiens mosquitoes: strong synergy between resistance genes
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Transcriptome profiling reveals potential key genes involved in metabolic resistance to malathion in Southern house mosquito, Culex quinquefasciatus
GEO Series GSE206489. Culex quinquefasciatus. 20 samples. Type: Expression profiling by high throughput sequencing.
Alteration in the Culex pipiens transcriptome reveals the implication of the mosquito immune system during Rift Valley fever phlebovirus infection
GEO Series GSE142339. Culex pipiens. 18 samples. Type: Expression profiling by high throughput sequencing.
Whole transcriptome responses among females of the filariasis and arbovirus vector mosquito Culex pipiens implicate TGF-β signaling and chromatin modification as key drivers of diapause induction
GEO Series GSE56722. Culex quinquefasciatus; Culex pipiens. 48 samples. Type: Expression profiling by array.
A whole transcriptome approach to investigate the genes involved in permethrin resistance in the Southern house mosquito, Culex quinquefasciatus
GEO Series GSE33736. Culex quinquefasciatus. 2 samples. Type: Expression profiling by high throughput sequencing.
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