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Centromere function and nondisjunction are independent components of the maize B chromosome accumulation mechanism

机译:着丝粒功能和不分离是玉米B染色体积累机制的独立组成部分

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摘要

Supernumerary or B chromosomes are selfish entities that maintain themselves in populations by accumulation mechanisms. The accumulation mechanism of the B chromosome of maize (Zea mays) involves nondisjunction at the second pollen mitosis, placing two copies of the B chromosome into one of the two sperm. The B chromosome long arm must be present in the same nucleus for the centromere to undergo nondisjunction. A centromere, containing all of the normal DNA elements, translocated from the B chromosome to the short arm of chromosome 9 was recently found to be epigenetically silenced for centromeric function. When intact B chromosomes were added to this genotype, thus supplying the long arm, the inactive centromere regained the property of nondisjunction causing the translocation chromosome 9 to be differentially distributed to the two sperm or resulted in chromosome breaks in 9S, occasionally producing new translocations. Translocation of the inactive B centromere to chromosome 7 transferred the nondisjunction property to this chromosome. The results provide insight into the molecular and evolutionary basis of this B chromosome accumulation mechanism by demonstrating that nondisjunction is caused by a process that does not depend on normal centromere function but that the region of the chromosome required for nondisjunction resides in the centromeric region.
机译:多余的或B染色体是自私的实体,通过积累机制维持自身在种群中的地位。玉米(Zea mays)B染色体的积累机制涉及在第二个花粉有丝分裂时不分离,将B染色体的两个副本放入两个精子之一。 B染色体长臂必须存在于同一核中,以使着丝粒不分离。最近发现,从B染色体转移到9号染色体短臂的着丝粒包含所有正常的DNA元素,其着丝粒功能被表观遗传沉默。当将完整的B染色体添加到该基因型从而提供长臂时,不活动的着丝粒恢复了非分离的性质,导致易位染色体9差异地分布到两个精子或导致9S染色体断裂,偶尔产生新的易位。无活性的B着丝粒向染色体7的易位将不分离特性转移至该染色体。通过证明不分离是由不依赖正常着丝粒功能的过程引起的,而是不分离所需的染色体区域位于着丝粒区域,该结果提供了对该B染色体积累机制的分子和进化基础的了解。

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