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Rearrangements in Genomes with Centromeres Part I: Translocations

机译:具有着丝粒的基因组重排第一部分:易位

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A centromere is a special region in the chromosome that plays a vital role during cell division. Every new chromosome created by a genome rearrangement event must have a centromere in order to survive. This constraint has been ignored in the computational modeling and analysis of genome rearrangements to date. Unlike genes, the different centromeres are indistinguishable, they have no orientation, and only their location is known. A prevalent rearrangement event in the evolution of multi-chromosomal species is translocation, i.e., the exchange of tails between two chromosomes. A translocation may create a chromosome with no centromere in it. In this paper we study for the first time centromeres-aware genome rearrangements. We present a polynomial time algorithm for computing a shortest sequence of translocations transforming one genome into the other, where all of the intermediate chromosomes must contain centromeres. We view this as a first step towards analysis of more general genome rearrangement models that take centromeres into consideration.
机译:着丝粒是染色体中的一个特殊区域,在细胞分裂过程中起着至关重要的作用。由基因组重排事件产生的每个新染色体都必须具有着丝粒才能生存。迄今为止,该约束在基因组重排的计算建模和分析中已被忽略。与基因不同,不同的着丝粒是无法区分的,它们没有方向,只能知道它们的位置。在多染色体物种的进化中普遍发生的重排事件是易位,即两个染色体之间的尾巴交换。易位可能会产生一条没有着丝粒的染色体。在本文中,我们首次研究了着丝粒感知的基因组重排。我们提出了一种多项式时间算法,用于计算将一个基因组转化为另一个基因组的最短易位序列,其中所有中间染色体都必须包含着丝粒。我们认为这是分析更着重于着丝粒的一般基因组重排模型的第一步。

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