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Minichromosomes and artificial chromosomes in Arabidopsis

机译:拟南芥中的微染色体和人工染色体

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Minichromosomes have been extensively used as tools for revealing the functional structures of eukaryotic chromosomes. However, the definition of a minichromosome is still ambiguous. Based on previous reports on various eukaryotes, minichromosomes are defined here to be chromosomes that are smaller than one third the size of the smallest chromosome in the given species. In Arabidopsis thaliana, therefore, chromosomes <8.5 Mb in length are classified as minichromosomes, although to date only six different minichromosomes have been found or created, probably due to their extremely small sizes that limit detection. Minichromosomes vary from 1.7 to 8.4 Mb in length and are much shorter than authentic chromosomes (25.3 to 38.0 Mb). Linear and circular minichromosomes have been identified, and both types are maintained as experimental lines. Most of the circular, ring-shaped minichromosomes in Arabidopsis are relatively stable at mitosis and transmissible to the next generation, regardless of the centromere form (dicentric or monocentric). Recently, a ring minichromosome was artificially generated by a combination of the Cre/LoxP and Ac/Ds systems. This artificial ring chromosome, AtARC1, has several advantages over the previously reported minichromosomes as a chromosome vector; therefore, this method of generating artificial ring chromosomes is expected to be improved for application to other plant species including important crops.
机译:微型染色体已被广泛用作揭示真核染色体功能结构的工具。但是,微染色体的定义仍然不明确。根据有关各种真核生物的先前报道,此处将微型染色体定义为小于给定物种中最小染色体大小的三分之一的染色体。因此,在拟南芥中,长度<8.5 Mb的染色体被归类为微型染色体,尽管迄今为止,仅发现或创建了六个不同的微型染色体,这可能是由于它们的极小尺寸限制了检测。微型染色体的长度在1.7至8.4 Mb之间,比真实的染色体(25.3至38.0 Mb)短得多。已经鉴定出线性和环状微染色体,并且将两种类型都保留为实验品系。拟南芥中的大多数圆形,环状微型染色体在有丝分裂时相对稳定,并且可以传播到下一代,而不管着丝粒的形式(双着丝粒或单着丝粒)。最近,通过Cre / LoxP和Ac / Ds系统的组合人工生成了环状微染色体。这种人工环状染色体AtARC1,比以前报道的微型染色体作为染色体载体具有许多优势。因此,预期这种产生人工环染色体的方法将得到改进,以应用于包括重要农作物在内的其他植物物种。

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