Profiling Translated mRNAs from the Organ to Specific Cell Level for Modeling Mechanisms of Gene Regulation and Response to Hypoxia
Profiling Translated mRNAs from the Organ to Specific Cell Level for Modeling Mechanisms of Gene Regulation and Response to Hypoxia
批准号:
0750811
负责人:
Julia Bailey-Serres
金额:
$54.31万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-03-01 至 2012-02-29
中文摘要
分析从器官到特定细胞水平的翻译mrna,以模拟基因调控机制和对缺氧的反应,植物和动物利用大气中的氧气产生细胞功能所需的能量。当氧气含量减少时,这些生物会以一种微妙的方式做出反应。当田地被淹时,这可能发生在植物的根部,或者在心脏病发作或中风时发生在脑细胞中。目的是了解细胞忍受短暂缺氧的过程。研究的重点是细胞能量的保存,这种能量是通过改变基因转录物合成蛋白质的方式而发生的,基因转录物是基因和蛋白质之间的中间物。在植物和动物中,缺乏氧气的细胞在蛋白质合成中变得更有选择性。这是通过储存大多数基因转录物来实现的。然而,一些基因转录物逃脱了这种抑制;它们通常编码细胞应对压力所需的蛋白质。本项目将研究缺氧条件下基因转录物使用的调控。这将包括对根和茎以及特定细胞层的管理进行评估。这一分析将提供一个以前没有得到的分辨率水平-提供有关器官和特化细胞对应激反应的信息。这项研究还将探讨细胞储存基因转录本以节省能量的机制。更广泛的影响将是对科学家的跨学科培训:一名生物学家将接受计算机科学培训,一名化学家将接受植物生理学培训。本科生,其中一些将来自小型学院,将获得实践研究经验。另一个更广泛的影响将是为研究界提供植物系,可用于监测与特化细胞类型中蛋白质合成机制相关的基因转录。
英文摘要
Bailey-Serres Proposal # IOS-0750811Profiling Translated mRNAs from the Organ to Specific Cell Level for Modeling Mechanisms of Gene Regulation and Response to HypoxiaPlants and animals use oxygen from the atmosphere to produce the energy needed for cell function. These organisms respond in an exquisite manner when oxygen levels are diminished. This can occur in plant roots when a field is flooded or in a brain cell during a heart attack or stroke. The goal is to understand the process by which cells endure transient periods of inadequate oxygen. The focus is on the conservation of cellular energy that occurs through a change in the manner in which proteins are synthesized from gene transcripts - the intermediate between gene and protein. In plants, as well as in animals, cells that lack oxygen become more selective in protein synthesis. This occurs by storing most gene transcripts. However, some gene transcripts escape this repression; these generally encode the proteins that the cell requires to cope with the stress. This project will study the regulation of gene transcript use during oxygen deprivation. This will include evaluation of the management in the root and the shoot, as well as in specific layers of cells. This analysis will provide a level of resolution that has previously not been obtained - yielding information on the response to the stress that occurs in organs and specialized cells. The research will also address the mechanism by which cells store gene transcripts, in order to spare energy. A broader impact will be cross-disciplinary training of scientists: a biologist, will be trained in computer science and a chemist will be trained in plant physiology. Undergraduate students, some of whom will be from small colleges, will gain hands-on research experience. Another broader impact will be the provision of plant lines to the research community that can be used to monitor gene transcripts associated with the protein synthesis machinery in specialized cell types.
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Integrative Analysis of Plasticity in Cell Fate Determination in Plants
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Comparative genome-scale analyses of submergence and anaerobic germination mechanisms in rice and maize
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依托单位:
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2010 Collaborative Research: Integrating the Unknown-eome with Abiotic Stress Response Networks in Arabidopsis
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依托单位:
REU Site: Research Experiences for Undergraduates in Plant Cell Biology
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资助金额:$21.95万
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依托单位:
Positive and Negative Regulation of Rop Signaling in the Response to Oxygen Deprivation
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依托单位:
Support for 19th Annual Symposium in Plant Physiology at the University of California, Riverside Jan. 16-19, 1997
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Functions of the Acidic Ribosomal Proteins of Maize
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海外基金