Phelps-Durr T L, Birchler J A
Division of Biological Sciences, University of Missouri, Columbia, MO 65211, USA.
Cytogenet Genome Res. 2004;106(2-4):309-13. doi: 10.1159/000079304.
The maize B chromosome is a dispensable chromosome and therefore serves as a model system to study centromere function. The B centromere region is estimated to be approximately 9,000 kb in size and contains a 1.4 kb repeat that is specific to this centromere. When maintained as a univalent, the B chromosome occasionally undergoes centric misdivision. Consecutive misdivision analysis of the maize B chromosome centromere has generated a collection of functional centromeres that are greatly reduced in complexity. These small centromeres are often correlated with strongly reduced meiotic transmission. Molecular analyses of the misdivision collection have revealed that the smallest functional maize B centromere is a minimum of 110 kb in size. Considering the collection as a whole, meiotic transmission becomes severely compromised when the estimated centromere size is reduced to a few hundred kilobases.
玉米B染色体是一条可有可无的染色体,因此是研究着丝粒功能的一个模型系统。B染色体着丝粒区域估计大小约为9000 kb,包含一个该着丝粒特有的1.4 kb重复序列。当作为单价染色体存在时,B染色体偶尔会发生着丝粒错分。对玉米B染色体着丝粒进行连续错分分析,产生了一系列复杂度大大降低的功能性着丝粒。这些小着丝粒通常与减数分裂传递的大幅减少相关。对错分集合的分子分析表明,最小的功能性玉米B着丝粒大小至少为110 kb。从整体上考虑这个集合,当估计的着丝粒大小减小到几百千碱基时,减数分裂传递会受到严重影响。