Molecular Characterization of an Anopheline Ammonium Transporter
Molecular Characterization of an Anopheline Ammonium Transporter
批准号:
9181115
负责人:
Ronald Jason Pitts
金额:
$23.54万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-06-01 至 2018-05-31
关键词:
AddressAdultAmmoniaAmmoniumAnopheles gambiaeAttentionBehaviorBehavioralBiteBloodCarrier ProteinsChemicalsClustered Regularly Interspaced Short Palindromic RepeatsComparative StudyCulicidaeDevelopmentDrosophila genusEvolutionFemaleGene FamilyGene SilencingGene TargetingGenerationsGenesGoalsHomologous GeneHumanImmune SeraInsectaInvestigationKairomonesLeadLifeLightLocationMalariaMapsMaxillaMediatingMessenger RNAMolecularMorbidity - disease rateMosquito-borne infectious diseaseOdorant ReceptorsOvipositionPathway interactionsPhysiologicalPlayProcessProtein FamilyProteinsRNA InterferenceResearchResourcesRoleSensorySeriesSignal TransductionSiteSmell PerceptionStagingSupporting CellVariantappendagebasecell typedesigndisorder controlfeedingin vivoinnovationinsightknockout genemalaria transmissionmembermortalitymutantnovelnovel strategiesnull mutationpreferencereceptorresearch studyresponsesensory inputtranscription activator-like effector nucleasestransmission processvectorvector mosquito
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Project Summary
The ability of the malaria vector mosquito Anopheles gambiae to sense and locate human blood meal
hosts remains rudimentary. In this process, chemosensory signals and olfaction in particular, provide the
dominant sensory inputs for Anopheline and other mosquitoes and accordingly play a critical role in modulating
behaviors that impact vectorial capacity. The goal of this revised proposal is to extend ongoing preliminary
studies to characterize the molecular pathways underlying the mosquito's ability to sense and respond to
ammonia that is an essential component of human-derived odorants that attract blood-feeding females. Here
we focus on the role of AgAmt1, a putative ammonia transporter in Anopheles gambiae that may be required
for the olfactory sensory transduction of ammonia, which is a critically important, human-derived kairomone for
mosquito host seeking. These studies will provide additional insights into the mechanisms of insect olfaction
and constitute an important resource for the design and implementation of effective disease control strategies
that target Anopheles gambiae and a wide range of related vector species.
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