鱼类重复dna的染色体分布和进化。

Genome dynamics Pub Date : 2012-01-01 Epub Date: 2012-06-25 DOI:10.1159/000337950
M B Cioffi, L A C Bertollo
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引用次数: 110

摘要

鱼类在所有脊椎动物中表现出最大的多样性,这使得这一群体对许多进化问题的研究极具吸引力。鱼类基因组具有内在特征,这可能是观察到的鱼类物种惊人多样性的原因,但对它们的结构和组织知之甚少。通过对多个物种重复DNA序列的定位,已经产生了大量的数据,为更好地理解重复DNA序列在染色体组织中的作用提供了重要的信息来源。几乎所有种类的重复dna都已在鱼类中被绘制出来,所有被分析的鱼类基因组都至少包含一种,几乎所有类型的重复dna。DNA序列数据结合细胞遗传学技术对这些重复元素的染色体定位,可以提供一个更清晰的基因组图谱,即使已经测序,也尚未明确定义。在本章中,我们不打算分析鱼类中重复DNA的染色体分布的所有可用数据,而是希望引起人们对重复DNA序列对鱼类核型和基因组进化的影响的关注,特别关注B染色体的起源和维持以及性染色体的分化。我们还讨论了染色体分析和基因组数据的整合,这代表了鱼类细胞基因组学的一个有前途的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chromosomal distribution and evolution of repetitive DNAs in fish.

Fish exhibit the greatest diversity of all vertebrates, making this group extremely attractive for the study of a number of evolutionary questions. Fish genomes have intrinsic characteristics that may be responsible for the amazing diversity of fish species observed, but little is known about their structure and organization. A large amount of data from mapping of repetitive DNA sequences of several species has been generated, providing an important source of information for better understanding the involvement of repetitive DNA sequences in chromosomal organization. Almost all classes of repeated DNAs have been mapped in fishes, and all fish genomes analyzed contain at least one, mostly all types of repetitive DNAs. DNA sequence data combined with the chromosomal mapping of these repeated elements by means of cytogenetic techniques can provide a clearer picture of the genome, which is not yet clearly defined, even if already sequenced. In this chapter, we do not aim to analyze all available data on the chromosomal distribution of repetitive DNAs in fish species, but instead wish to draw attention to the impact of repetitive DNA sequences on fish karyotyping and genome evolution, with a particular focus on B chromosome origin and maintenance and on the differentiation of sex chromosomes. We also discuss the integration of chromosome analysis and genomic data, which represents a promising tool for fish cytogenomics.

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