Costantini Maria, Musto Héctor
Department of Biology and Evolution of Marine Organisms, Stazione Zoologica Anton Dohrn, Villa Comunale, 80121, Napoli, Italy.
Laboratorio de Organización y Evolución del Genoma, Unidad de Genómica Evolutiva, Facultad de Ciencias, 11400, Montevideo, Uruguay.
J Mol Evol. 2017 Mar;84(2-3):93-103. doi: 10.1007/s00239-017-9785-9. Epub 2017 Feb 27.
The recent availability of a number of fully sequenced genomes (including marine organisms) allowed to map very precisely the isochores, based on DNA sequences, confirming the results obtained before genome sequencing by the ultracentrifugation in CsCl. In fact, the analytical profile of human DNA showed that the vertebrate genome is a mosaic of isochores, typically megabase-size DNA segments that belong to a small number of families characterized by different GC levels. In this review, we will concentrate on some general genome features regarding the compositional organization from different organisms and their evolution, ranging from vertebrates to invertebrates until unicellular organisms. Since isochores are tightly linked to biological properties such as gene density, replication timing, and recombination, the new level of detail provided by the isochore map helped the understanding of genome structure, function, and evolution. All the findings reported here confirm the idea that the isochores can be considered as a "fundamental level of genome structure and organization." We stress that we do not discuss in this review the origin of isochores, which is still a matter of controversy, but we focus on well established structural and physiological aspects.
最近许多全序列基因组(包括海洋生物的基因组)的可得性,使得基于DNA序列能够非常精确地绘制等密度区带图谱,这证实了在进行基因组测序之前通过氯化铯超速离心所获得的结果。事实上,人类DNA的分析图谱表明,脊椎动物基因组是由等密度区带组成的镶嵌体,这些等密度区带通常是兆碱基大小的DNA片段,属于少数以不同GC含量为特征的家族。在这篇综述中,我们将专注于一些关于不同生物体组成组织及其进化的一般基因组特征,范围从脊椎动物到无脊椎动物,直至单细胞生物。由于等密度区带与基因密度、复制时间和重组等生物学特性紧密相关,等密度区带图谱所提供的新的详细程度有助于理解基因组的结构、功能和进化。这里报道的所有发现都证实了这样一种观点,即等密度区带可被视为“基因组结构和组织的基本层次”。我们强调,在这篇综述中我们不讨论等密度区带的起源,这仍然是一个有争议的问题,而是专注于已确立的结构和生理方面。