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Understanding Complex Gene Editing Systems in Protists

Understanding Complex Gene Editing Systems in Protists
了解原生生物中复杂的基因编辑系统
批准号:
6972973
负责人:
LAURA F LANDWEBER
金额:
$23.94万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1999
资助国家:
美国
项目状态:
已结题
起止时间:
1999-08-01 至 2009-06-30

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中文摘要
翻译
描述(由申请人提供):本研究的目的是研究原生生物中不寻常的生物信息处理形式,重点是stichotrichous纤毛虫的基因解读。拟议的研究结合了不同的方法来解决这个问题,并在基因组,进化和发展水平和时间尺度上测试假设。全球的目标是使用这个模型系统来探索微生物真核基因组中复杂重写系统的机制。具体目标包括:a)探索Tricha trifallax中乱序基因的全球分布,我们的模型系统用于基因组规模的研究,以及在早期分化的spirotrichous物种中乱序直系同源物的存在,用于进化时间尺度上的比较。B)在发育时间尺度上探测基因解读过程中的中间群体。c)将外源DNA或RNA引入发育中的大核的功能实验。d)测试小RNA在尖毛藻大核发育中的作用。e)鉴定和测试参与尖毛藻大核发育的候选基因。分子进化和直接实验数据的计算分析,如乱序基因重排的时间过程,将提供一个窗口,这种生物计算的复杂性和规则,如正确的基因处理的序列和分子的要求。分子生物学,功能基因组学,计算生物学和进化实验的结合,在这个建议提供了一个独特的机会,建立一个强大的理解基因解读纤毛虫的现象,仍然困惑研究界。
英文摘要
DESCRIPTION (provided by applicant): The goal of this research is to study unusual forms of biological information processing in protists, with emphasis on gene unscrambling in stichotrichous ciliates. The proposed research combines different approaches to this problem to address questions and test the hypotheses at the genomic, evolutionary, and developmental levels and time scales. The global aim is to use this model system to explore the mechanisms underlying complex rewriting systems in microbial eukaryotic genomes. Specific aims include: a) Probing the global distrbution of scrambled genes in Oxytricha trifallax, our model system for studies on a genomic scale, and the presence of scrambled orthologs in earlier diverging spirotrichous species for comparisons on an evolutionary time scale. b) Probing the populations of intermediates during the process of gene unscrambling on a developmental time scale. c) Functional experiments introducing foreign DNA or RNA into the developing macronucleus. d) Testing the role of small RNAs in macronuclear development in Oxytricha. e) Identification and testing of candidate genes involved in macronuclear development in Oxytricha. Computational analysis of both molecular evolutionary and direct experiment data-such as the time course of scrambled gene rearrangements-will provide a window into the complexity and rules of such biological computations, such as the sequence and molecular requirements for correct gene processing. The combination of molecular biology, functional genomics, computational biology, and evolutionary experiments in this proposal offers a unique opportunity to build a strong understanding of gene unscrambling in ciliates-a phenomenon that still mystifies the research community.
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Understanding Complex Genome Editing and RNA Biology in Oxytricha
Understanding Complex Gene Editing Systems and RNA Biology in Oxytricha
Understanding Complex Genome Editing and RNA Biology in Oxytricha
Understanding Complex Gene Editing Systems and RNA Biology in Oxytricha
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