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质量而非数量:河豚基因组

Quality not quantity: the pufferfish genome.

作者信息

Elgar G

机构信息

Dept. of Medicine, University of Cambridge, Addenbrookes' Hospital, Cambridge, UK.

出版信息

Hum Mol Genet. 1996;5 Spec No:1437-42. doi: 10.1093/hmg/5.supplement_1.1437.

DOI:10.1093/hmg/5.supplement_1.1437
PMID:8875249
Abstract

The genome of the pufferfish, Fugu rubripes (Fugu) is compact. With a similar gene complement to mammals and a genome size of just 400 Mb, gene density is high averaging one every 6-7 kb. Initial characterization of this genome has shown that although genes are much smaller and more densely spaced, their intron/exon structure is conserved with the resulting introns being small. There is little repetitive DNA in the genome and this greatly facilitates comparative genomic studies. The coding content of genes is highly conserved as are critical regulatory elements of some genes. Other DNA is not, however, and this allows the identification of homologous coding sequence between Fugu and mammalian genes. Although the genome of Fugu is 7.5 times smaller than the human genome, not all genes are reduced proportionately. Some regions of the genome show conserved synteny with mammalian genomes, although at the present time only short physical distances have been examined. The structure of the genome is also being studied. Initial data suggest that this may be different to that found in mammals. It is not clear that the same kind of isochore structure is present in this early vertebrate genome. Patterns of methylation may be different resulting in a different distribution of CpG islands. An attempt is being made to centralize both resources and data from the genome of Fugu so that everything may be integrated into a single, publicly accessible database which in turn, may be integrated with databases from other organisms.

摘要

河豚(红鳍东方鲀)的基因组较为紧凑。其基因组成与哺乳动物相似,基因组大小仅为400兆碱基对,基因密度很高,平均每6 - 7千碱基对就有一个基因。对该基因组的初步特征分析表明,尽管基因要小得多且间隔更紧密,但其内含子/外显子结构是保守的,所产生的内含子较小。基因组中几乎没有重复DNA,这极大地促进了比较基因组学研究。基因的编码内容高度保守,一些基因的关键调控元件也是如此。然而,其他DNA并非如此,这使得能够识别河豚和哺乳动物基因之间的同源编码序列。尽管河豚的基因组比人类基因组小7.5倍,但并非所有基因都按比例缩小。基因组的一些区域与哺乳动物基因组显示出保守的同线性,尽管目前仅检测了较短的物理距离。基因组结构也在研究之中。初步数据表明其可能与哺乳动物的不同。目前尚不清楚在这种早期脊椎动物基因组中是否存在与哺乳动物相同类型的等密度区结构。甲基化模式可能不同,导致CpG岛的分布也不同。人们正在努力集中来自河豚基因组的资源和数据,以便将所有内容整合到一个单一的、可公开访问的数据库中,进而该数据库可与其他生物的数据库整合。

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