Parasitic diseases transmitted by mosquitoes are a major threat to life and health throughout the world. Our ultimate objective is to develop methods for generating strains of vector mosquitoes that are resistent to parasites. These resistent strains of mosquitoes will provide us with tools to study the effects of genetic manipulation on pathogen propagation and transmission. Such strains could be used in novel disease-control strategies that require the release of genetically altered mosquitoes. This Competing Continuation describes experiments that result in the expression of exogenous genes in the salivary glands of the vector mosquito, Aedes aegypti.
The specific aims are to 1) define the expression patterns in the salivary glands of female mosquitoes of three reporter genes, chloramphenicol acetyl transferase, beta-galactosidase, and beta-glucuronidase, under control of the Drosophila melanogaster heatshock 70 gene promoter, 2) define the promoters of the genes, D7, encoding the major female salivary gland-specific protein, and Maltase-like 1, in the heterologous and homologous expression systems, and 3) complete the primary characterization of two genes, Amy1 and G12, expressed specifically in the salivary glands. The heterologous assay is the stable transformation of D. melanogaster with hybrid gene constructs composed of a mosquito putative promoter fragment linked to a reporter gene. The homologous expression assay involves microinjection of DNA into mosquito embryos, allowing the mosquitoes to develop to the desired developmental stage, and then assaying for the reporter gene activity. Completion of these experiments will provide techniques for evaluating exogenous gene expression in mosquitoes, a necessary prerequisite to our goal of generating resistant strains.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI029746-05
Application #
3144672
Study Section
Tropical Medicine and Parasitology Study Section (TMP)
Project Start
1989-09-01
Project End
1996-04-30
Budget Start
1993-05-01
Budget End
1994-04-30
Support Year
5
Fiscal Year
1993
Total Cost
Indirect Cost
Name
University of California Irvine
Department
Type
Schools of Arts and Sciences
DUNS #
161202122
City
Irvine
State
CA
Country
United States
Zip Code
92697
Bottino-Rojas, Vanessa; Talyuli, Octavio A C; Carrara, Luana et al. (2018) The redox-sensing gene Nrf2 affects intestinal homeostasis, insecticide resistance, and Zika virus susceptibility in the mosquito Aedes aegypti. J Biol Chem 293:9053-9063
Macias, Vanessa M; Jimenez, Alyssa J; Burini-Kojin, Bianca et al. (2017) nanos-Driven expression of piggyBac transposase induces mobilization of a synthetic autonomous transposon in the malaria vector mosquito, Anopheles stephensi. Insect Biochem Mol Biol 87:81-89
Carballar-Lejarazú, R; Brennock, P; James, A A (2016) Suppressor of hairy-wing, modifier of mdg4 and centrosomal protein of 190 gene orthologues of the gypsy insulator complex in the malaria mosquito, Anopheles stephensi. Insect Mol Biol 25:460-9
Peng, Z; Xu, W W; Sham, Y et al. (2016) Mosquito salivary allergen Aed a 3: cloning, comprehensive molecular analysis, and clinical evaluation. Allergy 71:621-8
Alonso-Morales, Alberto; González-López, Lorena; Cázares-Raga, Febe Elena et al. (2015) Protein phosphorylation during Plasmodium berghei gametogenesis. Exp Parasitol 156:49-60
Lo, Eugenia; Yewhalaw, Delenasaw; Zhong, Daibin et al. (2015) Molecular epidemiology of Plasmodium vivax and Plasmodium falciparum malaria among Duffy-positive and Duffy-negative populations in Ethiopia. Malar J 14:84
Gantz, Valentino M; Jasinskiene, Nijole; Tatarenkova, Olga et al. (2015) Highly efficient Cas9-mediated gene drive for population modification of the malaria vector mosquito Anopheles stephensi. Proc Natl Acad Sci U S A 112:E6736-43
Wang, Yueqiang; Tan, Anjiang; Xu, Jun et al. (2014) Site-specific, TALENs-mediated transformation of Bombyx mori. Insect Biochem Mol Biol 55:26-30
Macias, V; Coleman, J; Bonizzoni, M et al. (2014) piRNA pathway gene expression in the malaria vector mosquito Anopheles stephensi. Insect Mol Biol 23:579-86
Marinotti, Osvaldo; Ngo, Tuan; Kojin, Bianca B et al. (2014) Integrated proteomic and transcriptomic analysis of the Aedes aegypti eggshell. BMC Dev Biol 14:15

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