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Inactivation of a centromere during the formation of a translocation in maize

机译:玉米易位形成过程中着丝粒的失活

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Fluorescence in situ hybridization analysis of a reciprocal translocation in maize between chromosomes 1 and 5 that has been used extensively in maize genetics revealed the presence of an inactive centromere at or near the breakpoints of the two chromosomes. This centromere contains both the satellite repeat, CentC, and the centromeric retrotransposon family, CRM, that are typical of centromere regions in maize. This site does not exhibit any of the tested biochemical features of active centromeres such as association with CENP-C and phosphorylation of serine-10 on histone H3. The most likely scenario for this chromosome arrangement is that a centromere was included in the repair process that formed the translocation but became inactive and has been inherited in this state for several decades. The documentation of an inactive A chromosome centromere in maize extends the evidence for an epigenetic component to centromere function in plants. This case provides an experimental example of how karyotype evolution might proceed via changes in centromere inactivation.
机译:对玉米染色体1和5之间相互易位的荧光原位杂交分析已在玉米遗传学中得到广泛应用,揭示了在两个染色体的断裂点或附近存在无活性着丝粒的现象。该着丝粒包含卫星重复序列CentC和着丝粒逆转座子家族CRM,它们是玉米着丝粒区域的典型特征。该位点没有显示出活性着丝粒的任何经过测试的生化特征,例如与CENP-C的结合以及组蛋白H3上丝氨酸10的磷酸化。这种染色体排列的最可能情况是修复过程中包括着丝粒,该着丝粒形成了易位,但是变得不活跃,并且在这种状态下已经遗传了几十年。玉米中无活性的A染色体着丝粒的记录扩展了植物中着丝粒功能的表观遗传成分的证据。该案例提供了一个实验示例,说明核型进化可能通过着丝粒失活的变化进行。

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