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Restructuring of Holocentric Centromeres During Meiosis in the Plant Rhynchospora pubera

机译:植物毛状体毛霉减数分裂过程中的全中心着丝粒的重组。

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摘要

Centromeres are responsible for the correct segregation of chromosomes during mitosis and meiosis. Holocentric chromosomes, characterized by multiple centromere units along each chromatid, have particular adaptations to ensure regular disjunction during meiosis. Here we show by detecting CENH3, CENP-C, tubulin, and centromeric repeats that holocentromeres may be organized differently in mitosis and meiosis of Rhynchospora pubera. Contrasting to the mitotic linear holocentromere organization, meiotic centromeres show several clusters of centromere units (cluster-holocentromeres) during meiosis I. They accumulate along the poleward surface of bivalents where spindle fibers perpendicularly attach. During meiosis II, the cluster-holocentromeres are mostly present in the midregion of each chromatid. A linear holocentromere organization is restored after meiosis during pollen mitosis. Thus, a not yet described case of a cluster-holocentromere organization, showing a clear centromere restructuration between mitosis and meiosis, was identified in a holocentric organism.
机译:着丝粒负责有丝分裂和减数分裂过程中染色体的正确分离。以每个染色单体为中心的多个着丝粒单位为特征的全向染色体具有特殊的适应性,可确保减数分裂过程中的规则分离。在这里,我们通过检测CENH3,CENP-C,微管蛋白和着丝粒重复序列表明,在丝状假单胞菌的有丝分裂和减数分裂中,整体着丝粒的组织方式可能有所不同。与有丝分裂线性全向着丝粒组织相反,减数分裂着丝粒在减数分裂I期间显示出若干簇着丝粒单位(簇-全向着丝粒)。它们沿着二价的极向表面积累,纺锤体纤维垂直附着。在减数分裂II期间,簇状着丝粒主要出现在每个染色单体的中部区域。在花粉有丝分裂的减数分裂后,线性的整体着丝粒组织得以恢复。因此,在全中心生物体中发现了一个尚未描述的簇状整体着丝粒组织的案例,该案例显示出有丝分裂和减数分裂之间的着丝粒明显的重组。

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