Function of Guy1, a Y-specific gene of Anopheles stephensi
Function of Guy1, a Y-specific gene of Anopheles stephensi
批准号:
8492308
负责人:
Zhijian Jake Tu
金额:
$23.45万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-01-15 至 2014-12-31
关键词:
Anopheles GenusAttentionBehaviorBiteBloodChromosomesCloningCommunicable DiseasesComplementComplementary DNACouplingCulicidaeDNADataDepositionDevelopmentDiagnosisDiseaseDrosophila melanogasterDrug resistanceEmbryoEmbryonic DevelopmentEnsureEvolutionExposure toFemaleFertilityFutureGene ExpressionGene Expression ProfileGenesGeneticGenetic TranscriptionGenomicsHumanInjection of therapeutic agentInsectaInsecticide ResistanceInsecticidesInvestigationLaboratoriesLengthMalariaMeasuresMessenger RNAMethodsMiddle EastModelingMolecularMonitorMosquito ControlMosquito-borne infectious diseaseNatureOutcomeParasitesPartner in relationshipPharmaceutical PreparationsPhenotypePhylogenetic AnalysisPhysiologyPopulationRecording of previous eventsRegulationResearchReverse Transcriptase Polymerase Chain ReactionSex BehaviorSignal TransductionSiteSpermatogenesisSystemTechnologyTestingTimeTransgenesTransgenic OrganismsVaccinesWorkY Chromosomebasecombateggexperienceexposed human populationfeedingflygene functiongenetic manipulationimprovedknock-downmalenext generation sequencingnovelnovel markernovel strategiesparalogous genepathogenpromoterpublic health relevanceresearch studysexsex determinationsexual dimorphismtranscriptome sequencingvector
中文摘要
描述(由申请人提供):按蚊是疟疾的主要媒介,疟疾是人类历史上最致命和代价最高的疾病之一。目前还没有有效的疟疾疫苗,尽管正在测试有希望的候选疫苗。目前的控制战略依赖于及时诊断和药物治疗以及减少人类接触传染性蚊虫叮咬。随着杀虫剂和药物抗药性的增加,这些措施的效果越来越差。迫切需要新的疟疾控制方法。最近,下一代测序技术在蚊子基因组学中的应用为我们提供了令人兴奋的机会,以前所未有的方式增强了我们对蚊子遗传学、生理学和行为的理解。这些信息将有助于制定防治疟疾和其他蚊媒疾病的新战略。只有雌性蚊子以血液为食并传播疾病病原体。按蚊使用XX/XY性别决定系统。有证据表明Y染色体上的显性雄性决定因子启动了按蚊属物种的性分化。遗传学研究表明,昆虫Y染色体参与调节雄性育性、交配行为和整体基因表达。然而,Y基因的分子特征是罕见的一些模式物种之外,主要是由于重复的Y染色体的性质和克隆重复丰富的异染色质序列的困难。我们最近发现了一些Y基因,其中包括一个我们称之为Guy 1(Y独有基因)的新基因。我们选择在R21项目中研究Guy 1的功能,因为Guy 1在早期胚胎合子转录的起始点转录,并且它是一个单拷贝基因,没有常染色体或X染色体。我们将测试Guy 1参与早期胚胎性别分化的假设。我们将研究异位Guy 1表达(Aim 1)和Guy 1敲低(Aim 2)对性别相关表型以及发育和胚胎基因表达的一般变化的影响。这项研究将有助于我们的长期目标,这是阐明按蚊性二型的遗传基础,并制定相关的和新的控制策略。在这项研究中开发的方法将为其他按蚊物种的未来工作提供信息。我们期望超越这个R21,调查Y基因功能的机制,通过操纵Y基因开发蚊子控制应用程序,并建立Y基因作为系统发育,人口和交配行为研究的新标记。
英文摘要
DESCRIPTION (provided by applicant): Anopheles mosquitoes are the primary vectors of malaria, one of the most deadly and costly diseases in human history. There is no effective vaccine against malaria, although promising candidates are being tested. Current control strategies rely on prompt diagnosis and drug treatment and the reduction of human exposure to infectious mosquito bites. These measures are becoming less effective as insecticide- and drug-resistance increases. Novel approaches to malaria control are urgently needed. Recent application of next-generation sequencing technologies to mosquito genomics offers exciting opportunities to enhance our understanding of mosquito genetics, physiology, and behavior, in ways that were previously unimaginable. This information will enable the development of new strategies to combat malaria and other mosquito-borne diseases. Only female mosquitoes feed on blood and transmit disease pathogens. Anopheles mosquitoes use the XX/XY sex-determination system. There is evidence that a dominant male-determining factor(s) on the Y chromosome initiates sexual differentiation in an Anopheles species. Genetic studies show that insect Y chromosomes are involved in the regulation of male fertility, mating behavior, and global gene expression. However, molecular characterizations of Y genes are rare outside of a few model species, mostly due to the repetitive nature of the Y chromosome and the difficulty of cloning repeat-rich heterochromatic sequences. We have recently discovered a few Y genes including a novel gene we call Guy1 (Gene Unique to Y). We choose to investigate the function of Guy1 in this R21 project because Guy1 is transcribed at the very onset of zygotic transcription in the early embryo and it is a single copy gene with no autosomal or X paralog. We will test the hypothesis that Guy1 is involved in sexual differentiation in the early embryo. We will investigate the effect of ectopic Guy1 expression (Aim 1) and Guy1 knockdown (Aim 2) on sex-related phenotypes as well as general changes in development and embryonic gene expression. This research will contribute to our long-term objective, which is to illuminate the genetic basis of sexual dimorphism in anopheline mosquitoes and develop relevant and new control strategies. The approach developed in this research will inform future work in other Anopheles species. We anticipate extending beyond this R21 to investigate the mechanism of Y gene function, develop mosquito control applications through the manipulation of Y genes, and establish Y genes as novel markers for phylogenetic, population and mating behavior studies.
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