Evolutionary Behavioral Genomics of Drosophila Courtship
Evolutionary Behavioral Genomics of Drosophila Courtship
批准号:
8298976
负责人:
Thomas Lee Turner
金额:
$28.79万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-08-01 至 2016-05-31
关键词:
AddressAffectAfricanAnimal CommunicationAnimalsAustriaBehaviorBehavioralBiological ModelsCollaborationsCollectionCourtshipDNA ResequencingDataDevelopmentDrosophila genusDrosophila melanogasterEcologyEnvironmentEvolutionFemaleFoundationsFrequenciesGenesGeneticGenetic DriftGenetic ModelsGenetic PolymorphismGenetic VariationGenomicsGenotypeGoalsHourHumanInbreedingInvestigationLeadLinkMaintenanceMale Genital OrgansMapsMethodsModelingMolecularMolecular GeneticsNatureNeurobiologyOutputPhenotypePhysiologic pulsePopulationPopulation GeneticsProductionRNA InterferenceResearchResolutionResourcesSample SizeSeriesStagingSystemSystems BiologyTechniquesTimeTissuesTransgenic OrganismsTranslatingValidationVariantWingWorkbasebehavioral genomicsbiological systemscomparativegenetic analysisgenetic variantgenome sequencinggenome wide association studygenome-wideinnovationinsightinterestmaleneurogeneticsneuromuscularnovel strategiessimulationtooltraitvibration
中文摘要
描述(申请人提供):全基因组关联研究有望对自然性状变异的遗传基础进行全面和系统的鉴定。通过量化遗传多态如何对特征产生大的、小的、精确的、一般的或条件性的影响,我们可以打开一个巨大的自然变异储藏库,这将帮助我们理解生物系统如何运作和进化。然而,要有良好的统计能力来识别具有低总体频率或适度影响的变异,需要通常令人望而却步的样本大小。在这里,我们开发了一种新的方法,“进化和重新测序”(E&R),它使用遗传模型系统果蝇来克服这一障碍。我们重新调整了黑腹盘藻的实验进化,它已经被用于解决种群遗传学中的基本问题超过100年,并对其进行了调整,以用于全基因组作图。结合高通量行为量化和各种统计方法,我们的技术将被用于建立基于基因的行为模型。这些模型的预测能力将告诉我们许多关于遗传信息的性质,以及将这些信息转化为行为输出的分子系统。这项研究的长期目标是描述在多种果蝇物种中,导致雄性和雌性求偶行为差异的遗传和环境影响的特征。这项工作从描述雄性求爱歌曲的产生开始:在求爱过程中,一只雄性果蝇伸出一只翅膀,反复地敲击这只翅膀,产生由一系列脉冲组成的翅膀振动歌曲。这些特征是果蝇行为的最好特征之一,无论是在黑腹果蝇身上还是在整个属内,它们目前都是神经生物学和分子遗传学研究的重点。因此,这些特征可以作为研究动物行为遗传基础的模型系统。具体地说,本研究的目的是:1)定位和表征影响黑腹金丝猴求偶歌声的遗传变异;2)对近缘黑腹金龟进行同样的研究,比较多个物种的研究结果;3)开始对AIMS 1和2中发现的基因和基因系统进行分子遗传学研究。
英文摘要
DESCRIPTION (provided by applicant): Genome-wide association studies hold the promise of comprehensive and systematic identification of the genetic basis of natural trait variation. By quantifying how genetic polymorphisms induce large, small, precise, general, or conditional effects on traits, we can unlock a vast reservoir of natural variation that will help us understand how biological systems function and evolve. However, good statistical power to identify variants with low population frequencies or modest effects requires sample sizes that are generally prohibitive. Here, we develop a new approach, "Evolve and Resequence" (E&R), that overcomes this barrier using the genetic model system Drosophila. We have re-purposed experimental evolution of D. melanogaster, which has been used for over 100 years to address fundamental questions in population genetics, and adapted it for use in genome-wide mapping. Together with high-throughput behavioral quantification and various statistical approaches, our technique will be used to build models of behavior based on genotype. The predictive power of these models will tell us a great deal about the nature of genetic information and the molecular systems that translate this information into behavioral output. The long-term goal of this research is to characterize the genetic and environmental influences that result in variation in courtship behavior, for both males and females, in multiple Drosophila species. This work begins with characterization of male courtship song production: during courtship, a Drosophila male extends a single wing and "twangs" this wing repeatedly to produce a wing vibration song consisting of a series of pulses. These traits are among the best characterized of Drosophila behaviors, both in D. melanogaster and across the genus, and they are currently the focus of intensive efforts in neurobiology and molecular genetics. As such, these traits serve as a model system for studying the genetic basis of behavior in animals. Specifically, this proposal aims to 1) locate and characterize the genetic variants affecting courtship song in D. melanogaster, 2) do the same for the closely related D. simulans, to compare and contrast results from multiple species, and 3) begin molecular genetic investigation of the genes and gene systems discovered in aims 1 and 2.
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Evolutionary Behavioral Genomics of Drosophila Courtship
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批准号:8160451
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项目类别:
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资助金额:$28.43万
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财政年份:2011
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负责人:Thomas Lee Turner
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依托单位:
Evolutionary Behavioral Genomics of Drosophila Courtship
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批准号:8475484
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项目类别:
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资助金额:$27.78万
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财政年份:2011
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负责人:Thomas Lee Turner
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依托单位:
Evolutionary Behavioral Genomics of Drosophila Courtship
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批准号:8667475
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项目类别:
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资助金额:$28.79万
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财政年份:2011
-
负责人:Thomas Lee Turner
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依托单位:
海外基金