Natural Variation in Meiotic Recombination in Maize.
Natural Variation in Meiotic Recombination in Maize.
批准号:
0702454
负责人:
Wojciech Pawlowski
金额:
$40.47万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-07-01 至 2010-06-30
中文摘要
本项目的目的是研究玉米减数分裂重组的自然多样性。 减数分裂重组是遗传变异的主要来源,负责在后代中产生新的基因组合。 重组在真核生物进化中的作用以及调控重组频率的机制是现代生物学的中心问题。 然而,虽然对重组的机制方面有很多了解,包括大量已被鉴定的减数分裂蛋白,但调节减数分裂重组速率的因素仍然知之甚少。 为了了解减数分裂重组途径的定量调节,必须首先检查重组率的变化程度。 本研究探讨了全球(整个基因组)重组率的变化,使用一组27个不同的自交系,捕获超过80%的玉米等位基因多样性。 最近发展的染色体涂染技术被用来测量每个玉米染色体上的杂交数。 此外,两个重组蛋白,RAD 51和MLH 1,这标志着两个主要的重组中间体的染色体病灶,进行了定量。 还探讨了关键玉米重组基因的自然多样性。 这组不同的玉米自交系用于检查这些基因的DNA序列的变异以及它们的表达水平。 在该项目范围内产生的数据将作为未来研究的基础,以确定影响玉米减数分裂重组频率的QTL,并检查重组频率的变化和候选重组基因的变化之间的关联。 最终,这项研究将导致阐明机制,调节减数分裂重组率在plant.Understanding重组机制是在植物育种的中心问题,因为重组产生新的遗传变异,育种应用选择。 植物育种者可以使用超重组基因系来减少性状渐渗期间的连锁阻力,获得代表新的理想基因组合的重组体,使用较小的育种群体,并加速育种周期。 对本科生和高中生的外联和培训是该项目的一个重要组成部分。 这些活动被纳入康奈尔/博伊斯汤普森研究所的植物基因组推广计划(http:outreach-pgrp.cornell.edu)。 该计划成立于2003年,促进了大量由NSF植物基因组研究计划资助的各种推广工作。 该项目将参与大学和高中学生的暑期实习计划,每年接待一名大学实习生和一名高中实习生。 该项目还将继续参加康奈尔大学植物基因组推广计划协调的高中教师课程开发讲习班。 该项目的当前状态可在http://plbrgen.cals.cornell.edu/programsandprojects/departmental/pawlowski_lab/Wojtek-Projects-Recomb.html上获得
英文摘要
The goal of this project is to examine natural diversity in meiotic recombination in maize. Meiotic recombination is the main source of genetic variation, responsible for creating new gene combinations in the progeny. The role of recombination in evolution of eukaryotes and the mechanisms that regulate recombination frequencies are central questions of modern biology. However, while much is known about the mechanistic aspects of recombination, including a large number of meiotic proteins that have been identified, factors that regulate rates of meiotic recombination remain poorly understood. To understand the quantitative regulation of the meiotic recombination pathway, the extent of variation in recombination rates must first be examined. This study explores the variation in global (across the whole genome) recombination rates using a set of 27 diverse inbred lines that capture over 80% of allelic diversity in maize. The recently developed chromosome painting techniques are used to measure the numbers of crossovers on each of the maize chromosomes. In addition, chromosomal foci of two recombination proteins, RAD51 and MLH1, which mark two main recombination intermediates, are quantified. Natural diversity in key maize recombination genes is also explored. The set of diverse maize inbreds is used to examine variation in DNA sequence of these genes as well as their level of expression. The data generated within the scope of the project will serve as a foundation for future research to identify QTLs affecting meiotic recombination frequencies in maize and to examine associations between the variation of recombination frequencies and variation in candidate recombination genes. Eventually, this research will lead to elucidating mechanisms that regulate meiotic recombination rates in plants.Understanding the mechanisms of recombination is a central issue in plant breeding because recombination generates new genetic variation on which breeders apply selection. Plant breeders could use hyper-recombinogenic lines to reduce linkage drag during introgression of traits, obtain recombinants representing new desirable combinations of genes, use smaller breeding populations, and accelerate the breeding cycle. Outreach and training of undergraduate and high school students are an important part of this project. These activities are integrated into the Plant Genome Outreach Program at Cornell/Boyce Thompson Institute (http://outreach-pgrp.cornell.edu). This program, established in 2003, facilitates a large number of diverse outreach efforts funded by the NSF Plant Genome Research Program. The project will participate in the Summer Internship Program for college and high school students, hosting one college intern and one high school intern each year. The project will also continue to participate in the Curriculum Development Workshop for High School Teachers coordinated by the Plant Genome Outreach Program at Cornell. Current status of the project is available at http://plbrgen.cals.cornell.edu/programsandprojects/departmental/pawlowski_lab/Wojtek-Projects-Recomb.html
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会议论文
RESEARCH-PGR: Controlling recombination in maize
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批准号:2232948
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项目类别:Standard Grant
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资助金额:$320.0万
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财政年份:2023
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负责人:Wojciech Pawlowski
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依托单位:
BTT EAGER: Controlling meiotic recombination in crops by manipulating DNA methylation
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财政年份:2019
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负责人:Wojciech Pawlowski
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依托单位:
ERA-CAPS: Meiotic recombination in plants (MEIOREC): The effect of chromosome axis remodeling on recombination outcomes in large-genome plants.
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批准号:1841696
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项目类别:Standard Grant
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资助金额:$63.55万
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财政年份:2018
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负责人:Wojciech Pawlowski
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依托单位:
RESEARCH-PGR: Understanding Recombination in Maize
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批准号:1546792
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项目类别:Continuing Grant
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资助金额:$404.49万
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财政年份:2016
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负责人:Wojciech Pawlowski
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依托单位:
A High-Resolution Map of Recombination in Maize
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批准号:1025881
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项目类别:Continuing Grant
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资助金额:$406.14万
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财政年份:2011
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负责人:Wojciech Pawlowski
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依托单位:
国内基金
海外基金
高等植物远缘杂交诱导的表观遗传变异(epigenetic variation)现象及其在物种进化和新种形成中的作用
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批准号:30430060
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项目类别:重点项目
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资助金额:140.0万元
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批准年份:2004
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负责人:刘宝
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依托单位: