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首页> 外文期刊>Cytogenetic and genome research >Chromosome dynamics in meiotic prophase i in plants. (Special Issue: Advances in plant cytogenetics.)
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Chromosome dynamics in meiotic prophase i in plants. (Special Issue: Advances in plant cytogenetics.)

机译:植物减数分裂前期的染色体动力学(特刊:植物细胞遗传学的进展。)

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Early stages of meiotic prophase are characterized by complex and dramatic chromosome dynamics. Chromosome behavior during this period is associated with several critical meiotic processes that take place at the molecular level, such as recombination and homologous chromosome recognition and pairing. Studies to characterize specific patterns of chromosome dynamics and to identify their exact roles in the progression of meiotic prophase are only just beginning in plants. These studies are facilitated by advances in imaging technology in the recent years, including development of ultra-resolution three-dimensional and live microscopy methods. Studies conducted so far indicate that different chromosome regions exhibit different dynamics patterns in early prophase. In many species telomeres cluster at the nuclear envelope at the beginning of zygotene forming the telomere bouquet. The bouquet has been traditionally thought to facilitate chromosome pairing by bringing chromosome ends into close proximity, but recent studies suggest that its main role may rather be facilitating rapid movements of chromosomes during zygotene. In some species, including wheat and Arabidopsis, there is evidence that centromeres form pairs (couple) before the onset of pairing of chromosome arms. While significant advances have been achieved in elucidating the patterns of chromosome behavior in meiotic prophase I, factors controlling chromosome dynamics are still largely unknown and require further studies.
机译:减数分裂前期的早期阶段的特征是复杂而剧烈的染色体动力学。在此期间的染色体行为与在分子水平上发生的几个关键减数分裂过程相关,例如重组,同源染色体识别和配对。鉴定染色体动力学特定模式并鉴定其在减数分裂前期进程中的确切作用的研究仅在植物中才刚刚开始。近年来,随着成像技术的进步,包括超分辨率三维和实时显微镜方法的发展,促进了这些研究。迄今为止进行的研究表明,不同的染色体区域在早期前期表现出不同的动力学模式。在许多物种中,端粒在合子开始时形成核包膜,形成端粒束。传统上认为这种花束通过使染色体末端紧密接近来促进染色体配对,但是最近的研究表明,它的主要作用可能是促进合子期染色体的快速运动。在包括小麦和拟南芥在内的某些物种中,有证据表明着丝粒在染色体臂配对开始之前就形成了一对(配对)。尽管阐明减数分裂前期I的染色体行为模式已取得重大进展,但控制染色体动力学的因素仍是未知之数,需要进一步研究。

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