Ds Regional Mutagenesis: A Platform for Defining Gene Function in Maize
Ds Regional Mutagenesis: A Platform for Defining Gene Function in Maize
批准号:
1314143
负责人:
Thomas Brutnell
金额:
$67.01万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-10-01 至 2016-09-30
中文摘要
PI: Thomas P. Brutnell (Donald Danforth Plant Science Center)CoPI: Erik W. Vollbrecht(爱荷华州立大学)主要合作者:Jonathan P. Duvick(爱荷华州立大学)玉米是美国种植的最具经济意义的粮食、饲料和生物燃料作物。它作为美国和国外的主粮的优势是建立在极其广泛的种质基础和高度成功的育种努力之上的。然而,随着世界人口和能源成本以惊人的速度增长,我们面临着第二次绿色革命的需要。这将包括开发第二代作物和开发抗旱、耐盐和提高氮利用效率的新种质。这些努力的核心是需要将基因型与表型联系起来。也就是说,基因型变异是如何导致表型变异的?突变分析一直是遗传学的基石,是将基因型变异与表型变异联系起来的重要工具。因此,该项目的目标是开发一种非常强大的反向遗传资源来定义玉米的基因功能。超过1500个d插入线的序列索引集合将作为这个项目的基础。将利用d插入到紧密连接位点的趋势来产生功能缺失基因插入,绘制基因边界,包括启动子和增强子元件,并定义QTL间隔中的基因空间。将开发一种社区驱动的分层“d基因敲除”服务,以扩展d基因插入突变的效用,为拥有不同资源的科学家提供服务。候选基因将从社区中征集,期望每个目标基因的多个等位基因将从局部d插入中恢复。还将开发一个基于网络的公共界面,提供收集到的d插入的详细信息,以及设计包含d插入位点偏好的反向遗传筛选的新工具。该项目的中心目标是通过创新课程将正在进行的植物科学研究带入高中课堂。在三年的资助期内,每年将在博伊斯汤普森学院举办一次课程发展研讨会。CDW的目标是为高中、社区大学和小型大学的生物课程开发探究式的植物科学活动。教师将获得必要的实验室和教学材料的资助,并将与一名博士后助理和一名外联协调员合作,在学年期间实施这些模块。还将举办讲习班,培训研究生、博士后和PI掌握最好地利用本项目开发的d系所需的遗传和分子技术。通过该项目产生的数据、项目更新和遗传材料链接将在http://www.plantgdb.org/prj/AcDsTagging/和http://www.maizegdb.org/上发布
英文摘要
PI: Thomas P. Brutnell (Donald Danforth Plant Science Center)CoPI: Erik W. Vollbrecht (Iowa State University)Key Collaborator: Jonathan P. Duvick (Iowa State University)Maize is the most economically important food, feed and biofuel crop grown in the US. Its predominance as a staple grain for the US and abroad is built on an extremely broad germplasm base and upon highly successful breeding efforts. However, as world population and energy costs increase at an alarming rate, we are faced with the need for a second green revolution. This will include developing second generation crops and developing new germplasm with enhanced resistance to drought, salt tolerance and improved nitrogen use efficiency. At the core of these efforts is a need to link genotype to phenotype. That is, how does genotypic variation contribute to phenotypic variation? Mutational analysis has been the cornerstone of genetics and has been an essential tool to link genotypic variation to phenotypic variation. Thus, the goal of this project is to develop an extremely powerful reverse genetics resource to define gene function in maize. A sequence-indexed collection of over 1,500 Ds insertion lines will serve as a foundation for this project. The tendency of Ds to insert to closely linked sites will be exploited to generate loss-of-function gene insertions, map the boundaries of genes, including promoter and enhancer elements, and define the gene space in QTL intervals. A community-driven, tiered "Ds knockout" service will be developed to extend the utility of Ds insertional mutagenesis to serve scientists with varying resources. Candidate genes will be solicited from the community with the expectation that multiple alleles of each targeted gene will be recovered from local Ds insertions. A web-based public interface will also be developed to provide detailed information on the Ds insertions available in the collection as well as new tools for designing reverse genetic screens that incorporate the insertion site preferences of Ds. A central aim of this project is to bring the excitement of ongoing plant science research into high school classrooms through innovative curricula. For each of the three years of the grant, a Curriculum Development Workshop (CDW) will be held at the Boyce Thompson Institute. The goal of the CDW is to develop inquiry-based plant science activities for high school, community college and small college biology courses. Teachers will receive funding for necessary lab and teaching materials and will work with a postdoctoral associate and an outreach coordinator to implement these modules during the academic year. Workshops will also be held to train graduate students, postdocs and PI in the genetic and molecular techniques required to best exploit the Ds lines developed during this project. Data generated through this project, project updates and links to genetic materials will be posted at http://www.plantgdb.org/prj/AcDsTagging/ and http://www.maizegdb.org/
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Ds Regional Mutagenesis: A Platform for Defining Gene Function in Maize
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批准号:0922701
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项目类别:Continuing Grant
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资助金额:$259.49万
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财政年份:2010
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负责人:Thomas Brutnell
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依托单位:
A Two Component Activator/Dissociation Platform for Reverse and Forward Genetic Analysis in Maize
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批准号:0501713
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项目类别:Continuing Grant
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资助金额:$377.95万
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财政年份:2005
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负责人:Thomas Brutnell
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依托单位:
Growth Facilities for Genomics-Based Studies of Plant Signal Transduction Networks
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批准号:0140532
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项目类别:Standard Grant
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资助金额:$26.06万
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财政年份:2002
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负责人:Thomas Brutnell
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依托单位:
Molecular Genetic Dissection of Red/Far-Red Light Signaling Pathways in Maize
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批准号:0110297
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项目类别:Continuing Grant
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资助金额:$35.05万
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财政年份:2001
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负责人:Thomas Brutnell
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依托单位:
Regional Mutagenesis Utilizing Activator (Ac) in Maize
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批准号:0076892
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项目类别:Continuing Grant
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资助金额:$108.04万
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财政年份:2000
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负责人:Thomas Brutnell
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依托单位:
海外基金