染色体显带与染色体畸变机制

Sanjay Kumar, Asikho Kiso, N. A. Kithan
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引用次数: 1

摘要

染色体鉴定依赖于染色体的形态特征,因此核型及其带型分析是鉴定染色体补体中每一条染色体最合适的技术。此外,断裂引起的畸变通过减少或增加染色体数目,在染色体组和染色体补体的进化中起着重要作用。因此,本章将对这两个方面进行详细讨论。目前,本章将重点介绍核型及其组成,核型趋势,进化及其在物种形成中的作用,带型模式和技术,染色体分化和线性化,带型应用及其用途,染色体畸变的检测和分析,染色体和染色单体畸变的类型以及染色体畸变和断裂的形成机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chromosome Banding and Mechanism of Chromosome Aberrations
Chromosome identification depends on the morphological features of the chromosome and therefore karyotype and its banding pattern analyses are the most suitable technique to identify each and every chromosome of a chromosome complement. Moreover, aberrations caused by breaks play an important role in the evolution of a chromosome set and chromosome complement by decreasing or increasing the chromosome number. Therefore, both the aspects are discussed in detail in the present chapter. At present, the chapter will highlight the karyotype and its components, karyotype trends, evolution and its role in speciation, banding pattern and techniques, chromosome differentiation and linearization, banding applications and their uses, detection and analysis of chromosomal aberrations, chromosome and chromatid types of aberrations and mechanism of the formation of chromosome aberrations and breaks for karyotype evolutionary trends.
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