1.Insecticide susceptibility and selection for resistance in a population of Aedes aegypti from Ratchaburi province, Thailand.
Pungasem Paeporn ; Phubeth Ya-umphan ; Kasin Supaphathom ; Pathom Savanpanyalert ; Pimpa Wattanachai ; Rasana Patimaprakorn
Tropical biomedicine 2004;21(2):1-6
The insecticide susceptibility of Aedes aegypti larvae and adults from four areas of Ratchaburi Province, Thailand was investigated using World Health Organization standard procedures. The larvae of Ae. aegypti in all areas were found to be susceptible to temephos. The strain with the highest level of temephos resistance was subjected to temephos selection. The resistance ratios increased to 2.74-fold from their parental non selected strain after 5 generations of selection. For the adult of Ae. aegypti, the study was conducted to determine the effects of 0.75 % permethrin and 0.05 % deltamethrin impregnated paper selection on the strain having the highest with the highest LT50 level. The results showed the increase in the LT50 to 7.46 and 1.18-fold after the third selected generation with 0.75 % permethrin and 0.05 % deltamethrin respectively. Mortality rates after exposing adults to discriminating concentrations showed that field populations in Ratchaburi Province were resistant to permethrin and deltamethrin. Alternative non-chemical measures need to be used in new of the emergence of resistance in the mosquito population.
Cancer resistance to treatment
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Selection (Genetics)
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Aedes aegypti
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Permethrin
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decamethrin
2.Molecular detection and phylogenetic analysis of Wolbachia infection in common mosquito species in Henan Province.
Y LIU ; D WANG ; Z HE ; D QIAN ; Y LIU ; C YANG ; D LU ; H ZHANG
Chinese Journal of Schistosomiasis Control 2023;35(4):389-393
OBJECTIVE:
To investigate the infection and genotypes of Wolbachia in common mosquito species in Henan Province, so as to provide insights into management of mosquito-borne diseases.
METHODS:
Aedes, Culex and Anopheles samples were collected from cowsheds, sheepfolds and human houses in Puyang, Nanyang City and Xuchang cities of Henan Province from July to September, 2022, and the infection of Wolbachia was detected. The 16S rDNA and wsp genes of Wolbachia were amplified and sequenced. Sequence alignment was performed using the BLAST software, and the obtained 16S rDNA gene sequence was compared with the sequence of the 16S rDNA gene in GenBank database. In addition, the phylogenetic trees were created based on 16S rDNA and wsp gene sequences using the software MEGA 11.0.
RESULTS:
A total 506 female adult mosquitoes were collected from three sampling sites in Nanyang, Xuchang City and Puyang cities from July to September, 2022. The overall detection of Wolbachia was 45.1% (228/506) in mosquitoes, with a higher detection rate in A. albopictus than in Cx. pipiens pallens [97.9% (143/146) vs. 50.6% (85/168); χ2 = 88.064, P < 0.01]. The detection of Wolbachia in Cx. pipiens pallens was higher in Xuchang City (96.8%, 62/64) than in Nanyang (15.6%, 7/45) and Puyang cities (27.1%, 16/59) (χ2 = 89.950, P < 0.01). The homologies of obtained Wolbachia 16S rDNA and wsp gene sequences were 95.3% to 100.0% and 81.7% to 99.8%. Phylogenetic analysis based on wsp gene sequences showed Wolbachia supergroups A and B in mosquito samples, with wAlbA and wMors strains in supergroup A and wPip and wAlbB strains in supergroup B. Wolbachia strain wAlbB infection was detected in A. albopictus in Puyang and Nanyang Cities, while Wolbachia strain wPip infection was identified in A. albopictus in Xuchang City. Wolbachia strain wAlbA infection was detected in Cx. pipiens pallens sampled from three cities, and one Cx. pipiens pallens was found to be infected with Wolbachia strain wMors in Nanyang City.
CONCLUSIONS
Wolbachia infection is commonly prevalent in Ae. albopictus and Cx. pipiens pallens from Henan Province, and Wolbachia strains wAlbB and wAlbA are predominant in Ae. albopictus, while wPip strain is predominant in Cx. pipiens pallens. This is the first report to present Wolbachia wMors strain infection in Cx. pipiens pallens in Henan Province.
Animals
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Humans
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Phylogeny
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Wolbachia/genetics*
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Culex/genetics*
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Aedes/genetics*
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DNA, Ribosomal
3.Isolation, identification and analysis of the expression profile of miRNAs in Aedes albopictus.
Pei-ming ZHENG ; Jin-ya WU ; Jin-bao GU ; Zhi-jian TU ; Xiao-guang CHEN
Journal of Southern Medical University 2010;30(4):677-680
OBJECTIVETo verify the miRNA in Aedes albopictus and characterize the expression profile of several miRNAs across all the life stages of Aedes albopictus.
METHODSBased on the published miRNA sequences of Anopheles gambiae and Aedes aegypti, 6 DIG-labeled antisense probes were synthesized. The total RNAs from Aedes albopictus in 6 developmental stages (embryo, early larvae, late larvae, pupa, male and female adults) were extracted with a mirVana miRNA isolation kit, loaded onto 15% denaturing polyacrylamide gel and hybridized with the appropriate DIG-labeled probes.
RESULTSNorthern blotting detected 5 miRNAs in Aedes albopictus, of which mir-9a was mainly expressed in embryo and larva stages, let-7 in pupa and adult stages, miR-184 in all life stages, mir-M1 only in the embryos and miR-1175 in all the life stages except for embryos. The expression profiles of these miRNAs in Aedes albopictus were similar to those in D. melanogaster and An.stepheni. miR-1174 was not detected in any of the developmental stages of Aedes albopictus.
CONCLUSIONThese results present the first direct experimental evidence of miRNA in Aedes albopictus. The expression profiles of the analyzed miRNAs in Aedes albopictus showed stage specificity and conservation with other mosquitoes. Further studies on the functions of these miRNAs may offer new insights in mosquito biology and may lead to novel approaches to the development of insecticides.
Aedes ; genetics ; Animals ; Female ; Gene Expression Profiling ; Genes, Insect ; Larva ; genetics ; Male ; MicroRNAs ; genetics ; isolation & purification ; Pupa ; genetics
4.Omics of vector mosquitoes: a big data platform for vector biology and vector-borne diseases.
Yang WU ; Lihua XIE ; Peiwen LIU ; Xiaocong LI ; Guiyun YAN ; Xiaoguang CHEN
Journal of Southern Medical University 2015;35(5):625-630
Recently the studies on mosquito genomics, transcriptomics and small RNAomics developed rapidly with the novel biotechnologies of the next generation sequencing techniques. The genome sequences of several important vector mosquitoes including Anopheles gambiae, Culex quinquefasciatus, and Aedes aegypti have been published. The genome sizes vary among the different species of mosquitoes and are consistent with the number of the repeat regions. The released genome sequences facilitate gene cloning and identification as for OBP, OR and dsx genes. Transcriptomics provides a useful tool for functional analyses of the mosquito genes, and using this technique, the molecular basis of mosquito blooding, gland proteins and diapauses have been explored. Studies on small RNAomics suggest important roles of miRNAs and piRNAs in ovary development, blood digestion, and immunity against virus infection. The studies on mosquito omics have generated a big data platform for investigation of vector biology and vector-transmitted disease prevention.
Aedes
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genetics
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Animals
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Anopheles
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genetics
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Culex
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genetics
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Gene Expression Profiling
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Genome, Insect
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Genomics
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High-Throughput Nucleotide Sequencing
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MicroRNAs
5.Sequences analysis of cytochrome C oxidase subunit I gene in Aedes albopictus from different geographic strains in China.
Chinese Journal of Epidemiology 2003;24(6):491-493
OBJECTIVETo compare the sequences of cytochrome C oxidase subunit I gene (COI) in Aedes albopictus from different geographic strains in China and to discuss the differences in susceptibility among different geographic strains to dengue virus (DV).
METHODSCOI was amplified with polymerase chain reaction method and sequenced from its genomic DNA. Molecular phylogenetic trees were constructed with Neighbor-Joining method.
RESULTSSequence length of COI fragment in each geographic strains was 415 bp. The rates of shift and reverse of base pairs in Simao strain were 1.93% and 0.24% respectively. The rate of shift in Mawei and Nanning strains was 0.48%. The analyses of phylogenetic of COI sequences showed that there was close relationship between Simao strain in Yunnan and Mawei strain in Guizhou and between Mawei strain and Nanning strain in Guangxi.
CONCLUSIONSThe susceptibility was widely related to many factors including genetic and environmental ones. COI in Aedes albopictus from different geographic strains in China belonged to the same gene type. There were no direct correlations between COI gene type in different geographic strains and susceptibility to DV.
Aedes ; genetics ; virology ; Animals ; Dengue ; transmission ; Electron Transport Complex IV ; genetics ; Genotype ; Insect Vectors ; Polymerase Chain Reaction
6.Cloning, identification and preliminary functional analysis of odorant receptor 7 gene of Aedes albopictus.
Ning ZHOU ; Xiaoming WANG ; Yuhua DENG ; Hongmei LIU ; Tong LIU ; Xiaoguang CHEN
Journal of Southern Medical University 2014;34(10):1420-1425
OBJECTIVETo clone and identify olfactory receptor odorant receptor 7 (OR7) gene of Aedes albopictus and analyze its expression profile and calcium regulation function.
METHODRT-PCR was used to amplify the olfactory receptor OR7 gene of Ae. albopictus and OR7 expression was detected in different tissues and organs. The coding sequence of OR7 gene was cloned in eukaryotic expression vector pME18s, which was then transfected into HEK293 cells. The calcium callback function in response to odor molecule stimulation was analyzed by calcium imaging technique.
RESULTSThe OR7 gene of Ae. albopictus was cloned and sequence analysis showed that its coding region was 1395 bp. RT-PCR detected OR7 expression in the larvae, pupae and adult mosquitoes, especially in female mosquitos. Preliminary analysis of calcium callback function demonstrated the specific regulation of calcium absorption by OR7 in response to odor molecule stimulation.
CONCLUSIONThe OR7 gene of Ae. albopictus has been cloned successfully. OR7 is highly expressed in female mosquitos and is capable of specific recognition of the odor molecules.
Aedes ; genetics ; Animals ; Cloning, Molecular ; Female ; Gene Expression ; Genes, Insect ; HEK293 Cells ; Humans ; Larva ; Pupa ; Receptors, Odorant ; genetics
7.Zika Virus and Zika Viral Disease.
Chinese Journal of Virology 2016;32(1):121-127
Since Zika virus (ZIKV) has firstly been isolated in 1947, Uganda, outbreaks of Zika fever have been reported in many areas such as in Africa, Southeast Asia and America. Imported cases in China also have been reported. Zika virus belongs to the family Flaviviridae, genus Flavivirus, and include Africa subtype and Asia subtype. It is a mosquito-borne virus primarily transmitted by Aedes aegypti mosquitoes. Sexual transmission, Blood transmission and mother-to-fetus transmission were also reported. Zika virus can go though blood-brain barrier and infect central nervous system. Symptoms are generally mild and self-limited, but recent evidence suggests a possible association between maternal Zika virus infection and adverse fetal outcomes, such as congenital microcephaly, as well as a possible association with Guillain-Barré syndrome. Laboratorial Diagnosis includes nucleic acid detection, Serological test, and isolation of virus. Currently, no vaccine or medication exists to prevent or treat Zika virus infection. Preventive measures against Zika virus infection should be taken through prevention of mosquito bites and surveillance in epidemic area.
Aedes
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physiology
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virology
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Animals
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Humans
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Insect Vectors
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physiology
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virology
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Zika Virus
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genetics
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physiology
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Zika Virus Infection
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transmission
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virology
8.Identification of MicroRNA-like Viral Small RNAs from AaeDV.
Yanhai WANG ; Jiang WU ; Jinbao GU
Chinese Journal of Virology 2015;31(5):537-541
Several virus families have been shown to encode microRNAs (miRNAs), which have roles in the infection and replication of viruses in host cells. These virus-encoded miRNAs are identified in double-stranded DNA virus (dsDNA virus) and in several RNA virus families, but not in single-stranded DNA virus (ssDNA virus). We used a bioinformatics approach based on VMir, miRNAFold and MaturePred software to predict virus-encoded miRNA-like small RNAs from the genome of a ssDNA virus: Aedes aegypti densovirus (AaeDV). Northern blotting and stem-loop reverse transcription-polymerase chain reaction (RT-PCR) were used to detect predicted small RNAs. A miRNA-like small RNA termed "AaeDVMD" was identified by stem-loop RT-PCR from predicted candidates. This is the first report demonstrating that a ssDNA virus can encode miRNA-like small RNAs. These data will aid further exploration of the interaction between the AaeDV and its mosquito host.
Aedes
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virology
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Animals
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Base Sequence
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Computational Biology
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Densovirinae
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chemistry
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genetics
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metabolism
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MicroRNAs
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chemistry
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genetics
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metabolism
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Molecular Sequence Data
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RNA, Viral
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chemistry
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genetics
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metabolism
9.Highly diversified Zika viruses imported to China, 2016.
Yanjun ZHANG ; Wenxian CHEN ; Gary WONG ; Yuhai BI ; Juying YAN ; Yi SUN ; Enfu CHEN ; Hao YAN ; Xiuyu LOU ; Haiyan MAO ; Shichang XIA ; George F GAO ; Weifeng SHI ; Zhiping CHEN
Protein & Cell 2016;7(6):461-464
10.Identification and sequence analysis of E gene of Dengue virus type 2 strain isolated from patient serum in Shenzhen.
Fan YANG ; Jian-fan HE ; Hui-xia XIAN ; Hai-long ZHANG ; Ya-qing HE ; Hong YANG ; Xiang-jie YAO
Chinese Journal of Preventive Medicine 2009;43(9):798-802
OBJECTIVETo isolate and identify the pathogen of Dengue fever from Shenzhen city in 2005 - 2006, and to analyze the molecular characteristics of the isolated Dengue virus strain as well as to explore its possible origin.
METHODSIgM and IgG of serum samples taken from 60 suspected Dengue fever patients were detected by ELISA and immunochromatography, and 9 specimens were positive. Nine samples from patients with early stage Dengue fever were used to isolate virus with C6/36 cell line and the positive cell cultures were identified by MGB fluorescent PCR. The type of isolated virus strain was determined by RT-semi-nested-PCR and fluorescent PCR. E gene of isolated virus strain was amplified by RT-PCR and sequenced. Homology and phylogenetic tree of E gene of Shenzhen Dengue virus with the strains isolated from other areas were constructed.
RESULTSOf nine antibody-positive serum samples, one strain of Dengue virus was successfully isolated. The isolated virus strain was confirmed as Dengue virus type 2 and designated as DEN2-SZ0521. The homology of nucleotide sequence and the deduced amino acid sequence of E gene of SZ0521 with standard type 2 Dengue virus NGC strain was 94.2% and 98.2%, but the homology with standard Dengue virus 1, 3, 4 in the same fragment were 59.1%, 57.2%, 58.5% and 68.1%, 66.7%, 63.2%, respectively. The phylogenetic tree indicated that SZ0521 had the greatest similarity with the Malay0412a/Tw strain and they lied in the same branch of the phylogenetic tree. The corresponding homology of nucleotide sequence and amino acid sequence was 99.8% and 100%, respectively. The isolated Dengue virus type 2 belonged to genotype IV with Indonesia-76, Somalia-84 and Sri Lanka-90.
CONCLUSIONDengue virus was isolated from Shenzhen for the first time, and it was classified as type 2. It was confirmed that the type 2 Dengue virus may come from the epidemic area in Malaysia.
Aedes ; virology ; Animals ; China ; Dengue ; virology ; Dengue Virus ; classification ; genetics ; isolation & purification ; Genes, Viral ; Humans ; Phylogeny ; Sequence Analysis, Protein ; Sequence Analysis, RNA