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Variable Patterning of Chromatin Remodeling Telomere Positioning Synapsis and Chiasma Formation of Individual Rye Chromosomes in Meiosis of Wheat-Rye Additions

机译:麦黑添加减数分裂中单个黑麦染色体的染色质重塑端粒定位突触和嵌合体形成的可变模式

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摘要

Meiosis, the type of cell division that halves the chromosome number, shows a considerable degree of diversity among species. Unraveling molecular mechanisms of the meiotic machinery has been mainly based on meiotic mutants, where the effects of a change were assessed on chromosomes of the particular species. An alternative approach is to study the meiotic behavior of the chromosomes introgressed into different genetic backgrounds. As an allohexaploid, common wheat tolerates introgression of chromosomes from related species, such as rye. The behavior of individual pairs of rye homologues added to wheat has been monitored in meiotic prophase I and metaphase I. Chromosome 4R increased its length in early prophase I much more than other chromosomes studied, implying chromosome specific patterns of chromatin organization. Chromosome conformation affected clustering of telomeres but not their dispersion. Telomeres of the short arm of submetacentric chromosomes 4R, 5R, and 6R failed more often to be included in the telomere cluster either than the telomeres of the long arms or telomeres of metacentrics such as 2R, 3R, and 7R. The disturbed migration of the telomeres of 5RS and 6RS was associated with failure of synapsis and chiasma formation. However, despite the failed convergence of its telomere, the 4RS arm developed normal synapsis, perhaps because the strong increase of its length in early prophase I facilitated homologous encounters in intercalary regions. Surprisingly, chiasma frequencies in both arms of 4R were reduced. Similarly, the short arm of metacentric chromosome 2R often failed to form chiasmata despite normal synapsis. Chromosomes 1R, 3R, and 7R showed a regular meiotic behavior. These observations are discussed in the context of the behavior that these chromosomes show in rye itself.
机译:减数分裂是将染色体数目减半的细胞分裂类型,它显示出物种之间相当大的多样性。减数分裂机制的分子机制主要是基于减数分裂突变体的,其中评估了变化对特定物种染色体的影响。另一种方法是研究渗入不同遗传背景的染色体的减数分裂行为。作为异源六倍体,普通小麦可耐受黑麦等相关物种的染色体渗入。已在减数分裂前期I和中期I中监测了添加到小麦中的各对黑麦同源物的行为。染色体4R在早期前期I中的长度比研究的其他染色体长得多,这暗示着染色质组织的染色体特定模式。染色体构象影响端粒的聚集,但不影响它们的分散。亚超中心染色体4R,5R和6R短臂的端粒比长臂端粒或超中心点如2R,3R和7R的端粒更难以被包括在端粒簇中。 5RS和6RS端粒的迁移受阻与突触失败和横裂形成有关。然而,尽管其端粒融合失败,但4RS臂仍能正常突触,这可能是因为其在I期早期早期长度的强烈增加促进了inter间区域的同源相遇。出人意料的是,4R两侧的chiasma频率降低了。同样,尽管突触正常,但亚中心染色体2R的短臂却常常无法形成Chiasmata。 1R,3R和7R染色体表现出规则的减数分裂行为。这些观察是在这些染色体在黑麦自身中表现出的行为的背景下讨论的。

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