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The Evolution of Chromosome Numbers: Mechanistic Models and Experimental Approaches

机译:染色体数字的演变:机械模型和实验方法

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摘要

Chromosome numbers have been widely used to describe the most fundamental genomic attribute of an organism or a lineage. Although providing strong phylogenetic signal, chromosome numbers vary remarkably among eukaryotes at all levels of taxonomic resolution. Changes in chromosome numbers regularly serve as indication of major genomic events, most notably polyploidy and dysploidy. Here, we review recent advancements in our ability to make inferences regarding historical events that led to alterations in the number of chromosomes of a lineage. We first describe the mechanistic processes underlying changes in chromosome numbers, focusing on structural chromosomal rearrangements. Then, we focus on experimental procedures, encompassing comparative cytogenomics and genomics approaches, and on computational methodologies that are based on explicit models of chromosome-number evolution. Together, these tools offer valuable predictions regarding historical events that have changed chromosome numbers and genome structures, as well as their phylogenetic and temporal placements.
机译:染色体数字已被广泛用于描述生物体或血统的最基本的基因组属性。虽然提供了强大的系统发育信号,但染色体数在各种水分分辨率下的真核生物中显着变化。染色体数量的变化定期用作主要基因组事件的指示,最符合尺寸的多倍体和脱脂倍差。在这里,我们审查了我们对历史事件的推断力的最新进步,导致了血统染色体数量的改变。我们首先描述了染色体数量的潜在变化的机制过程,专注于结构染色体重排。然后,我们专注于实验程序,包括比较细胞素学和基因组学方法,以及基于染色体数量演化的显式模型的计算方法。这些工具在一起提供了有关有关已改变染色体数和基因组结构的历史事件的有价值的预测,以及它们的系统发育和时间安置。

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