Homolog pairing and segregation in Drosophila meiosis.

Genome dynamics Pub Date : 2009-01-01 DOI:10.1159/000166619
B D McKee
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引用次数: 32

Abstract

Pairing of homologous chromosomes is fundamental to their reliable segregation during meiosis I and thus underlies sexual reproduction. In most eukaryotes homolog pairing is confined to prophase of meiosis I and is accompanied by frequent exchanges, known as crossovers, between homologous chromatids. Crossovers give rise to chiasmata, stable interhomolog connectors that are required for bipolar orientation (orientation to opposite poles) of homologs during meiosis I. Drosophila is unique among model eukaryotes in exhibiting regular homolog pairing in mitotic as well as meiotic cells. I review the results of recent molecular studies of pairing in both mitosis and meiosis in Drosophila. These studies show that homolog pairing is continuous between pre-meiotic mitosis and meiosis but that pairing frequencies and patterns are altered during the mitotic-meiotic transition. They also show that, with the exception of X-Y pairing in male meiosis, which is mediated specifically by the 240-bp rDNA spacer repeats, chromosome pairing is not restricted to specific sites in either mitosis or meiosis. Instead, virtually all chromosome regions, both heterochromatic and euchromatic, exhibit autonomous pairing capacity. Mutations that reduce the frequencies of both mitotic and meiotic pairing have been recently described, but no mutations that abolish pairing completely have been discovered, and the genetic control of pairing in Drosophila remains to be elucidated.

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果蝇减数分裂的同源配对和分离。
同源染色体的配对是它们在减数分裂I期间可靠分离的基础,因此是有性生殖的基础。在大多数真核生物中,同源配对仅限于减数分裂I的前期,并伴随着同源染色单体之间频繁的交换,称为交叉。交叉会产生交叉,这是一种稳定的同源间连接器,是减数分裂过程中同源物双极取向(朝向相反的两极)所必需的。果蝇在有丝分裂和减数分裂细胞中表现出规律的同源配对,这在模式真核生物中是独一无二的。本文综述了最近在果蝇有丝分裂和减数分裂中配对的分子研究结果。这些研究表明,同源配对在减数分裂前有丝分裂和减数分裂之间是连续的,但配对频率和模式在有丝分裂-减数分裂过渡期间发生了改变。他们还表明,除了雄性减数分裂中的X-Y配对,这是由240 bp的rDNA间隔重复序列特异性介导的,染色体配对并不局限于有丝分裂或减数分裂中的特定位点。相反,几乎所有的染色体区域,无论是异色还是正色,都表现出自主配对的能力。减少有丝分裂和减数分裂配对频率的突变最近已经被描述,但没有发现完全取消配对的突变,并且果蝇配对的遗传控制仍有待阐明。
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