Kaszás Etienne, Kato Akio, Birchler James A
Division of Biological Sciences, University of Missouri, Columbia 65211, USA.
Genome. 2002 Aug;45(4):759-68. doi: 10.1139/g02-023.
B chromosome derivatives suffering from breaks within their centromere were examined cytologically and molecularly. We showed by high resolution FISH that misdivision of the centromere of a univalent chromosome can occur during meiosis. The breaks divide the centromere repeat sequence cluster. A telocentric chromosome formed by misdivision was found to have the addition of telomeric repeats to the broken centromere. A ring chromosome formed after misdivision occurred by fusion of the broken centromere to the telomere. Pulsed-field electrophoresis analyses were performed on the telocentric and ring chromosomes to identify fragments that hybridize to both the telomeric repeat and the B-specific centromeric repeat. We conclude that healing of broken maize centromeres can be achieved through the mechanisms of addition or fusion of telomeric repeat sequences to the broken centromere.
对着丝粒内部发生断裂的B染色体衍生物进行了细胞学和分子学检查。我们通过高分辨率荧光原位杂交显示,单价染色体的着丝粒在减数分裂期间可能发生错分。这些断裂将着丝粒重复序列簇分开。发现由错分形成的端着丝粒染色体在断裂的着丝粒上添加了端粒重复序列。错分后通过断裂的着丝粒与端粒融合形成了环状染色体。对端着丝粒染色体和环状染色体进行了脉冲场电泳分析,以鉴定与端粒重复序列和B特异性着丝粒重复序列都杂交的片段。我们得出结论,玉米断裂着丝粒的修复可以通过将端粒重复序列添加或融合到断裂着丝粒的机制来实现。