首页> 外文期刊>Chromosome research: An international journal on the molecular, supramolecular and evolutionary aspects of chromosome biology >Effect of colchicine and telocentric chromosome conformation on centromere and telomere dynamics at meiotic prophase I in wheat-rye additions.
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Effect of colchicine and telocentric chromosome conformation on centromere and telomere dynamics at meiotic prophase I in wheat-rye additions.

机译:秋水仙碱和端粒染色体构象对小麦-黑麦添加过程中减数分裂前期I着丝粒和端粒动力学的影响。

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摘要

Association of telomeres in a bouquet and clustering of centromere regions have been proposed to be involved in the search and recognition of homologous partners. We have analysed the role of these structures in meiotic chromosome pairing in wheat-rye addition lines by applying colchicine for disturbing presynaptic telomere movements and by modifying the centromere position from submetacentric to telocentric for studying centromere effects. Rye chromosomes, wheat and rye centromeres, and telomeres were identified by fluorescence in-situ hybridization. Presynaptic association of centromeres in pairs or in more complex structures involved mainly non-homologous chromosomes as deduced from the behaviour of rye centromeres. While centromere association was not affected by colchicine, colchicine inhibited bouquet formation, which caused failure of homologous synapsis. Homologous centromeres of rye telocentrics associated earlier than those of rye submetacentric chromosomes, indicating that migration of the telocentrics' centromeres to the telomere pole during bouquet formation facilitated their association. Homologous chromosomes associated in premeiotic interphase can recognize each other and initiate synapsis at zygotene. However, telomere convergence is needed for bringing together the majority of homologous pairs that normally occupy separate territories in premeiotic nuclei.
机译:端粒在花束和着丝粒区域簇中的关联已被提议参与同源伴侣的搜索和识别。我们通过应用秋水仙碱干扰突触前的端粒运动,并通过改变着丝粒位置从亚中心到端粒来研究着丝粒效应,从而分析了这些结构在小麦-黑麦添加系减数分裂染色体配对中的作用。通过荧光原位杂交鉴定了黑麦染色体,小麦和黑麦着丝粒以及端粒。从黑麦着丝粒的行为推论,着丝粒的突触前缔合成对或更复杂的结构主要涉及非同源染色体。虽然着丝氨酸不影响着丝粒缔合,但秋水仙碱抑制了花束形成,从而导致同源突触的失败。黑麦末端中心的同源着丝粒比黑麦亚中心染色体的同源着丝粒早,这表明在花束形成过程中,末端中心的着丝粒向端粒极的迁移促进了它们的缔合。减数分裂前期相关的同源染色体可以互相识别并在合子中启动突触。但是,需要端粒融合才能将通常在减数分裂前核中占据独立领土的大多数同源对聚集在一起。

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