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各种生物体基因组中核苷酸分布之间的相关性和反相关性。

Correlations and anticorrelations among nucleotide distributions along the genomes of various organisms.

作者信息

Häring D, Kypr J

机构信息

Institute of Biophysics, Academy of Sciences of the Czech Republic, Brno.

出版信息

J Biomol Struct Dyn. 1999 Oct;17(2):267-73. doi: 10.1080/07391102.1999.10508359.

Abstract

We have analyzed correlations of nucleotide distributions along more than 50 megabases of the longest sequenced parts of the human, mouse, Drosophila, Arabidopsis, yeast, E.coli and three kinds of viral genomes. The strongest correlations were observed between the distributions of C and G, in particular in the genome of Drosophila. This correlation was much weaker, though still strong, in the human genome and E.coli that exhibited the same level of this correlation. The C/G correlation hardly originates from the isochores because the isochores were not reported to occur in the genomes of Drosophila and E. coil. The genomic distribution curves of adenine and thymine were also positively correlated in all analyzed organisms except for the yeast where they were anticorrelated. Still stronger anticorrelations were, however, observed between the genomic distributions of A and C and between G and T. These genomic distributions anticorrelated almost generally and very strong. These anticorrelations are likely to originate from point mutations resulting from unrepaired GA mispairing as a replication intermediate. The C/A or G/T anticorrelation or compensation is a very strong and general new phenomenon that shapes the genomic nucleotide sequences.

摘要

我们分析了人类、小鼠、果蝇、拟南芥、酵母、大肠杆菌以及三种病毒基因组最长测序部分超过50兆碱基上核苷酸分布的相关性。在C和G的分布之间观察到最强的相关性,特别是在果蝇基因组中。在人类基因组和大肠杆菌中,这种相关性虽然仍然很强,但要弱得多,且两者呈现出相同的相关水平。C/G相关性几乎不可能源自等密度区,因为在果蝇和大肠杆菌的基因组中并未报道存在等密度区。除了酵母中腺嘌呤和胸腺嘧啶的基因组分布呈反相关外,在所有分析的生物体中,腺嘌呤和胸腺嘧啶的基因组分布曲线也呈正相关。然而,在A和C以及G和T的基因组分布之间观察到更强的反相关。这些基因组分布几乎普遍且非常强烈地呈反相关。这些反相关可能源自作为复制中间体的未修复GA错配导致的点突变。C/A或G/T反相关或补偿是一种塑造基因组核苷酸序列的非常强烈且普遍的新现象。

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