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玉米小染色体多拷贝的积累。

Accumulation of multiple copies of maize minichromosomes.

作者信息

Masonbrink R E, Birchler J A

机构信息

Division of Biological Sciences, University of Missouri, Columbia, MO 65211, USA.

出版信息

Cytogenet Genome Res. 2012;137(1):50-9. doi: 10.1159/000339615. Epub 2012 Jul 21.

Abstract

Multiple copies of B chromosomes in maize (Zea mays) can accumulate in the genome using the B chromosome's accumulation mechanism, specifically nondisjunction at the second pollen mitosis and preferential fertilization of the egg. Using this mechanism, we accumulated 4 different-sized minichromosomes derived from the B chromosome to test the chromosome limits of the cell. The accumulation of normal B chromosomes is associated with multiple phenotypes including white stripes and asymmetric leaf blades, but when minichromosomes are accumulated these symptoms are absent. We also found that multiple B chromosome-derived minichromosomes can coexist with A chromosome-derived minichromosomes. During the years that these experiments were conducted, we found many B chromosome rearrangements and fragments, 2 recoverable A chromosome fragments, and observed a minichromosome breakage-fusion-bridge cycle in roots.

摘要

玉米(Zea mays)中的B染色体多拷贝可利用B染色体的积累机制在基因组中积累,具体表现为在第二次花粉有丝分裂时不分离以及卵细胞的优先受精。利用这一机制,我们积累了4条源自B染色体的不同大小的小染色体,以测试细胞的染色体极限。正常B染色体的积累与多种表型相关,包括白色条纹和不对称叶片,但积累小染色体时这些症状并不出现。我们还发现,多条源自B染色体的小染色体可与源自A染色体的小染色体共存。在进行这些实验的几年间,我们发现了许多B染色体重排和片段、2个可恢复的A染色体片段,并在根中观察到了一个小染色体断裂-融合-桥循环。

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