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Gene density in the Giemsa bands of human chromosomes.

机译:人类染色体的吉姆萨带中的基因密度。

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摘要

The human genome is formed by isochores belonging to five families, L1, L2, H1, H2 and H3, that are characterized by increasing GC levels and gene concentrations. In-situ hybridization of DNA from different isochore families provides, therefore, information not only on the correlation between isochores and chromosomal bands, but also on the distribution of genes in chromosomes. Three subsets of R(everse) bands were identified: H3+, H3* and H3-, that contain large, moderate, and no detectable amounts, respectively, of the gene-richest H2 and H3 isochores, and replicate very early and early, respectively, in S phase of the cell cycle. Here, we investigated the GC levels, replication timings and DNA compaction of G(iemsa) bands. We showed that G bands comprise two different subsets of bands, one of which is predominantly composed of L1 isochores, replicates at the end of the S phase, has a higher DNA compaction relative to H3+ bands and corresponds to the darkest G bands of Francke (1994). In contrast, the other subset is composed of L2 and H1 isochores, has less-extreme properties in replication and composition and corresponds to the less-dark G bands of Francke.
机译:人类基因组由属于五个家族(L1,L2,H1,H2和H3)的等时线形成,其特征是GC水平和基因浓度增加。因此,来自不同等时线家族的DNA的原位杂交不仅提供了等时线与染色体条带之间的相关性,而且还提供了染色体中基因分布的信息。确定了R(反向)条带的三个子集:H3 +,H3 *和H3-,分别包含大,中和无可检测量的基因最丰富的H2和H3等时线,并且分别在很早和很早就复制了,处于细胞周期的S期。在这里,我们调查了GC(GC)水平,复制时间和G(iemsa)乐队的DNA压缩。我们发现G波段包含两个不同的波段子集,其中一个主要由L1等轴线组成,在S期末复制,相对于H3 +波段具有更高的DNA紧实度,并对应于Francke最暗的G波段( 1994)。相反,另一个子集由L2和H1等时线组成,在复制和组成方面具有极低的性质,并对应于Francke的较暗的G带。

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