秀丽隐杆线虫的同源配对、重组与分离。

Genome dynamics Pub Date : 2009-01-01 DOI:10.1159/000166618
M Zetka
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引用次数: 43

摘要

自由生活的雌雄同体线虫秀丽隐杆线虫的减数分裂具有在其他有性生殖系统中观察到的同样高度保守的特征。染色体在减数分裂时的准确分离依赖于减数分裂前期早期的标志性事件,包括同源染色体的配对、同源染色体之间的突触和交叉染色体的形成。对这些过程的解剖揭示了减数分裂机制的独特简化,影响了更复杂系统中减数分裂染色体行为的解释。染色体配对所需的染色体位点被整合到每条染色体的一端,重组起始的许多位点被分解成每对染色体的单个交叉,沿着有丝分裂染色体长度延伸的弥散(全新中心)动力学活动被减少到每条减数分裂染色体的单个末端。因此,对线虫的研究阐明并挑战了同源配对机制、交叉干扰和着丝点结构等长期存在的概念。由于染色体配对、突触和重组可以彼此独立进行,秀丽隐杆线虫为研究这些过程和减数分裂过程中协调它们的机制提供了一个简化的系统。本文综述了秀丽隐杆线虫减数分裂的主要特征,重点介绍了它对理解基本减数分裂过程的贡献。
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Homologue pairing, recombination and segregation in Caenorhabditis elegans.
Meiosis in the free-living, hermaphroditic nematode Caenorhabditis elegans is marked by the same highly conserved features observed in other sexually reproducing systems. Accurate chromosome segregation at the meiotic divisions depends on earlier landmark events of meiotic prophase, including the pairing of homologous chromosomes, synapsis between them, and the formation of crossovers. Dissection of these processes has revealed a unique simplification of meiotic mechanisms that impact the interpretation of meiotic chromosome behaviour in more complex systems. Chromosome sites required for chromosome pairing are consolidated to one end of each chromosome, the many sites of recombination initiation are resolved into a single crossover for each chromosome pair, and the diffuse (holocentric) kinetic activity that extends along the length of the mitotic chromosomes is reduced to a single end of each meiotic chromosome. Consequently, studies from the nematode have illuminated and challenged long-standing concepts of homologue pairing mechanisms, crossover interference, and kinetochore structure. Because chromosome pairing, synapsis, and recombination can proceed independently of one another, C. elegans has provided a simplified system for studying these processes and the mechanisms mediating their coordination during meiosis. This review covers the major features of C. elegans meiosis with emphasis on its contributions to understanding essential meiotic processes.
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