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Telomere-led bouquet formation facilitates homologous chromosome pairing and restricts ectopic interaction in fission yeast meiosis

机译:端粒引导的花束形成促进同源染色体配对并限制裂变酵母减数分裂中的异位相互作用

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摘要

A polarized chromosomal arrangement with clustered telomeres in a meiotic prophase nucleus is often called bouquet and is thought to be important for the pairing of homologous chromosomes. Fluorescence in situ hybridization in fission yeast indicated that chromosomal loci are positioned in an ordered manner as anticipated from the bouquet arrangement. Blocking the formation of the telomere cluster with the kms1 mutation created a disorganized chromosomal arrangement, not only for the regions proximal to the telomere but also for interstitial regions. The kms1 mutation also affected the positioning of a linear minichromosome. Consistent with this cytological observation, the frequency of ectopic homologous recombination between a linear minichromosome and a normal chromosome increased in the kms1 background. Intragenic recombination between allelic loci is reduced in the kms1 mutant, but those between non-allelic loci are unaffected or slightly increased. Thus, telomere-led chromosome organization facilitates homologous pairing and also restricts irregular chromosome pairing during meiosis.
机译:减数分裂前期核中带有端粒簇的极化染色体排列通常称为花束,被认为对同源染色体配对很重要。裂变酵母中的荧光原位杂交表明,如从花束排列中预期的那样,染色体基因座以有序的方式定位。用kms1突变阻止端粒簇的形成不仅导致端粒近端的区域而且是间质区域的染色体排列混乱。 kms1突变还影响线性微型染色体的定位。与此细胞学观察一致,在kms1背景中,线性微型染色体和正常染色体之间异位同源重组的频率增加。 kms1突变体中等位基因座之间的基因内重组减少,但非等位基因座之间的基因内重组不受影响或略有增加。因此,端粒主导的染色体组织促进了同源配对,并且还限制了减数分裂过程中不规则的染色体配对。

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