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Control of Meiotic Homolog Segregation in Arabidopsis

Control of Meiotic Homolog Segregation in Arabidopsis
拟南芥减数分裂同源分离的控制
批准号:
6751954
负责人:
Hong Ma
金额:
$23.02万
依托单位国家:
美国
项目类别:
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-07-01 至 2006-06-30

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中文摘要
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DESCRIPTION (provided by the applicant): Meiotic homolog pairing and attachment are essential for normal chromosome segregation during meiosis I. It is thought that both meiotic recombination and sister chromatid cohesion are required for homolog attachment at late prophase I and metaphase I. Sister chromatid cohesion is removed from the chromosomal arms at the metaphase I/anaphase I transition, allowing homologs to separate. Arabidopsis is an excellent system to investigate the molecular control of meiosis because its available molecular genetic tools and the feasibility of good cytological studies. An Arabidopsis mutant, sds, was isolated and found to be defective in maintaining meiotic homolog attachment at prophase I. The SDS gene encodes a novel cyclin-like protein, suggesting that a cyclin-CDK complex is required for homolog attachment. In addition, it was shown that another Arabidopsis gene, ASK1, is required for release of homolog for separation at anaphase I, and that the ask1 mutant meiotic cells show persistent localization of the putative Arabidopsis meiotic cohesion SYN1 on chromosomes at late metaphase I and anaphase I. Preliminary evidence suggests that SDS may genetically interact with ASK1, supporting the hypothesis that SDS may also regulate the removal of cohesions from the chromosome. It is also possible that SDS may regulate meiotic recombination. These Arabidopsis mutant and genes will be used to gain new insights about the control of meiotic homolog attachment, using genetic, cytological and molecular approaches. Both cytological and genetic experiments will be carried out to test these hypotheses about SDS function. In addition, genetic interaction between SDS and SYN1and ASK1 will be investigated. Because SDS is a putative novel cyclin, additional experiments will be performed to test for interactions between SDS and CDKs, to probe for possible functions of CDKs in meiosis, and to identify and characterize genes what encode proteins that interact with SDS. Furthermore, molecular and cell biological experiments will be done to characterize the expression pattern and protein localization of SDS, and to isolate a putative SDS-like gene.
期刊论文(13)
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科研奖励(0)
会议论文
The origins and early evolution of DNA mismatch repair genes--multiple horizontal gene transfers and co-evolution.
DNA不匹配修复基因的起源和早期进化 - 多个水平基因转移和共进化。
DOI: 10.1093/nar/gkm921
发表时间: 2007
期刊: NUCLEIC ACIDS RESEARCH
影响因子: 14.9
作者: [Lin, Zhenguo, Nei, Masatoshi, Ma, Hong]
通讯作者: Ma, Hong
DOI: 10.1091/mbc.e05-09-0902
发表时间: 2005-12
期刊: Molecular biology of the cell
影响因子: 3.3
作者: [A. Wijeratne;Changbin Chen;Wei Zhang;L. Timofejeva;Hong Ma]
通讯作者: A. Wijeratne;Changbin Chen;Wei Zhang;L. Timofejeva;Hong Ma
DOI: 10.1199/tab.0095
发表时间: 2006-01-01
期刊: The arabidopsis book
影响因子: --
作者: [Ma, Hong]
通讯作者: Ma, Hong
DOI: 10.1146/annurev.arplant.55.031903.141717
发表时间: 2005-01-01
期刊: Annual review of plant biology
影响因子: 23.9
作者: [Ma, Hong]
通讯作者: Ma, Hong
RAD51 gene functions in mitosis and meiosis of zebrafish
Control of Meiotic Homolog Segregation in Arabidopsis
Control of Meiotic Homolog Segregation in Arabidopsis
Control of Meiotic Homolog Segregation in Arabidopsis
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