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Characterization and Expression of microRNA Genes in Anopheles gambiae

Characterization and Expression of microRNA Genes in Anopheles gambiae
冈比亚按蚊 microRNA 基因的表征和表达
批准号:
7244139
负责人:
Zhijian Jake Tu
金额:
$14.26万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-06-01 至 2008-05-31

项目摘要

项目成果

Zhijian Jake Tu的其他基金

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中文摘要
翻译
描述(由申请人提供):按蚊是疟疾的主要传播媒介。蚊子基因组学的最新发展以及从其他生物学领域收集到的范式转变的见解为大大提高我们对蚊子遗传学,生理学和行为的理解提供了令人兴奋的机会。蚊子生物学的新见解无疑将促进对抗疟疾和其他蚊子传播疾病的新策略的发展。拟议研究的长期目标是确定冈比亚按蚊中一类名为microRNAs (miRNAs)的新型基因调控分子的生物学功能,并通过研究miRNAs在与蚊子媒介能力密切相关的过程中的潜在作用,发现控制媒介传播疾病的新方法。mirna是大约22个核苷酸长的非编码rna,通过结合同源mRNA进行切割或翻译抑制来调节细胞基因的表达。在一些生物体中,microrna在胚胎发育、干细胞分裂、神经发生、造血细胞分化和细胞死亡过程中起着关键的调节分子作用。它们还与病毒感染和癌症的控制有关。mirna代表了媒介生物学中一个巨大的尚未开发的研究领域,它可以极大地扩展我们现有的知识,并为控制媒介传播的疾病提供潜在的靶点。我们最近通过比较安氏和白蛉之间保守的非编码序列,鉴定了一些假定的蚊子特异性miRNA。冈比亚蚊和埃及伊蚊。我们的初步miRNA阵列数据表明,血餐后几种miRNA的水平发生了显著变化。在这个探索性的R21项目中,我们将1)鉴定来自An的广谱mirna。利用基因组尺度的计算预测和直接克隆的综合双轨方法,确定了an的miRNA表达的时空特征。冈比亚人在吸血前和吸血后的不同时间点。我们将提供大量mirna的信息,为未来的研究奠定基础。我们将专注于识别那些可能调节不同组织中血餐触发过程的mirna。总的来说,拟议的研究将通过开始填补我们对蚊子生物学理解的主要空白来促进媒介研究,并有助于控制蚊媒传染病的新策略。
英文摘要
DESCRIPTION (provided by applicant): Anopheline mosquitoes constitute the primary vectors of malaria. Recent developments in mosquito genomics as well as paradigm-shifting insights gleaned from other areas of biology provide exciting opportunities to greatly enhance our understanding of mosquito genetics, physiology, and behavior. New insights in mosquito biology will undoubtedly facilitate the development of novel strategies to combat malaria and other mosquito-borne diseases. The long term objectives of the proposed research are to determine the biological functions of a novel class of gene regulatory molecules named microRNAs (miRNAs) in Anopheles gambiae and uncover novel approaches to control vector-borne diseases by investigating the potential roles of miRNAs in processes that are intimately linked to mosquito vectorial capacity. miRNAs are approximately 22 nucleotide long non-coding RNAs that modulate the expression of cellular genes by binding to cognate mRNA for cleavage or translational repression. In some organisms, microRNAs serve as key regulatory molecules during embryonic development, stem cell division, neurogenesis, haematopoietic cell differentiation, and cell death. They are also implicated in the control of viral infections and cancer. MiRNAs represent a vast and untapped research area in vector biology that could greatly expand our current knowledge and provide potential targets for control of vector-borne diseases. We have recently identified a number of putative mosquito-specific miRNA by comparing conserved non-coding sequences between An. gambiae and Aedes aegypti. Our preliminary miRNA array data indicate that the levels of several miRNAs change significantly after a blood meal. During this exploratory R21 project, we will 1) Identify a broad spectrum of miRNAs from An. gambiae, using an integrated, two-track approach that involves genome-scale computational prediction and direct cloning, 2) Determine the spatiotemporal profiles of miRNA expression in An. gambiae before and at different time points after a bloodmeal. We will provide information on a large repertoire of miRNAs that will serve as the foundation for future research. We will focus on identifying those miRNAs likely to regulate bloodmeal-triggered processes in different tissues. Overall, the proposed research will facilitate vector research by starting to fill a major gap in our understanding of mosquito biology and contribute to novel strategies to control mosquito-borne infectious diseases.
期刊论文(2)
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会议论文
DOI: 10.1111/imb.12152
发表时间: 2015-04
期刊: Insect molecular biology
影响因子: 2.6
作者: [Hu W, Criscione F, Liang S, Tu Z]
通讯作者: Tu Z
DOI: 10.1186/1471-2164-10-581
发表时间: 2009-12-04
期刊: BMC genomics
影响因子: 4.4
作者: [Li S, Mead EA, Liang S, Tu Z]
通讯作者: Tu Z
Sex determination and the sex-determining locus in aedine mosquitoes
The male-determining locus of Culex quinquefasciatus
Sex ratio distortion in Aedes aegypti
Sex ratio distortion in Aedes aegypti
海外基金