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Amphibian and Avian Karyotype Evolution: Insights from Lampbrush Chromosome Studies

机译:两栖动物和鸟类染色体核型的进化:笔刷染色体研究的见解。

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摘要

Amphibian and bird karyotypes typically have a complex organization, which makes them difficult for standard cytogenetic analysis. That is, amphibian chromosomes are generally large, enriched with repetitive elements, and characterized by the absence of informative banding patterns. The majority of avian karyotypes comprise a small number of relatively large macrochromosomes and numerous tiny morphologically undistinguishable microchromosomes. A good progress in investigation of amphibian and avian chromosome evolution became possible with the usage of giant lampbrush chromosomes typical for growing oocytes. Due to the giant size, peculiarities of organization and enrichment with cytological markers, lampbrush chromosomes can serve as an opportune model for comprehensive high-resolution cytogenetic and cytological investigations. Here, we review the main findings on chromosome evolution in amphibians and birds that were obtained using lampbrush chromosomes. In particular, we discuss the data on evolutionary chromosomal rearrangements, accumulation of polymorphisms, evolution of sex chromosomes as well as chromosomal changes during clonal reproduction of interspecies hybrids.
机译:两栖类和鸟类核型通常具有复杂的组织,这使其很难进行标准的细胞遗传学分析。也就是说,两栖染色体通常很大,富含重复性元素,其特征是缺乏信息性条带模式。大多数禽类核型包含少量相对较大的大染色体和许多微小的形态上无法区分的微染色体。通过使用典型的卵母细胞巨大的毛笔染色体,两栖和鸟类染色体进化研究的良好进展成为可能。由于巨大的大小,组织的特殊性以及细胞标记的富集,电刷染色体可以作为全面高分辨率细胞遗传学和细胞学研究的合适模型。在这里,我们回顾了使用笔刷染色体获得的两栖动物和鸟类染色体进化的主要发现。特别是,我们讨论了物种间杂种的无性繁殖过程中进化染色体重排,多态性积累,性染色体进化以及染色体变化的数据。

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