Ananiev Evgueni V, Wu Chengcang, Chamberlin Mark A, Svitashev Sergei, Schwartz Chris, Gordon-Kamm William, Tingey Scott
Pioneer Hi-Bred Int'l, Johnston, IA, 50131, USA.
Chromosoma. 2009 Apr;118(2):157-77. doi: 10.1007/s00412-008-0191-3. Epub 2008 Nov 18.
We report on the construction of maize minichromosomes using shuttle vectors harboring native centromeric segments, origins of replication, selectable marker genes, and telomeric repeats. These vectors were introduced into scutellar cells of maize immature embryos by microprojectile bombardment. Several independent transformation events were identified containing minichromosomes in addition to the normal diploid complement of 20 maize chromosomes. Immunostaining indicated that the minichromosomes recruited centromeric protein C, which is a specific component of the centromere/kinetochore complex. Minichromosomes were estimated to be 15-30 Mb in size based on cytological measurements. Fluorescent in situ hybridization (FISH) showed that minichromosomes contain the centromeric, telomeric, and exogenous unique marker sequences interspersed with maize retrotransposons. Minichromosomes were detected for at least a year in actively dividing callus cultures, providing evidence for their stability through numerous cell cycles. Plants were regenerated and minichromosomes were detected in root tips, providing confirmation of their normal replication and transmission during mitosis and through organogenesis. Assembly of maize artificial chromosomes may provide a tool to study centromere function and a foundation for developing new high capacity vectors for plant functional genomics and breeding.
我们报道了利用携带天然着丝粒片段、复制起点、选择标记基因和端粒重复序列的穿梭载体构建玉米小染色体的过程。通过微粒轰击将这些载体导入玉米未成熟胚的盾片细胞中。除了正常的20条玉米染色体二倍体之外,还鉴定出了几个含有小染色体的独立转化事件。免疫染色表明,小染色体募集了着丝粒蛋白C,它是着丝粒/动粒复合体的一个特定组成部分。根据细胞学测量,小染色体的大小估计为15 - 30 Mb。荧光原位杂交(FISH)显示,小染色体包含着丝粒、端粒和外源独特标记序列,这些序列与玉米反转录转座子相间分布。在活跃分裂的愈伤组织培养物中至少检测到小染色体存在一年,这为它们在众多细胞周期中的稳定性提供了证据。再生植株的根尖中检测到了小染色体,这证实了它们在有丝分裂期间以及通过器官发生过程中的正常复制和传递。玉米人工染色体的组装可能为研究着丝粒功能提供一种工具,并为开发用于植物功能基因组学和育种的新型高容量载体奠定基础。