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DNA 中隐秘的简单性是遗传变异的主要来源。

Cryptic simplicity in DNA is a major source of genetic variation.

作者信息

Tautz D, Trick M, Dover G A

出版信息

Nature. 1986;322(6080):652-6. doi: 10.1038/322652a0.

Abstract

DNA regions which are composed of a single or relatively few short sequence motifs usually in tandem ('pure simple sequences') have been reported in the genomes of diverse species, and have been implicated in a range of functions including gene regulation, signals for gene conversion and recombination, and the replication of telomeres. They are thought to accumulate by DNA slippage and mispairing during replication and recombination or extension of single-strand ends. In order to systematize the range of DNA simplicity and the genetic nature of the regions that are simple, we have undertaken an extensive computer search of the DNA sequence library of the European Molecular Biology Laboratory (EMBL). We show here that nearly all possible simple motifs occur 5-10 times more frequently than equivalent random motifs. Furthermore, a new computer algorithm reveals the widespread occurrence of significantly high levels of a new type of 'cryptic simplicity' in both coding and noncoding DNA. Cryptically simple regions are biased in nucleotide composition and consist of scrambled arrangements of repetitive motifs which differ within and between species. The universal existence of DNA simplicity from monotonous arrays of single motifs to variable permutations of relatively short-lived motifs suggests that ubiquitous slippage-like mechanisms are a major source of genetic variation in all regions of the genome, not predictable by the classical mutation process.

摘要

由单个或相对较少的短序列基序通常串联组成的DNA区域(“纯简单序列”)已在多种物种的基因组中被报道,并且涉及一系列功能,包括基因调控、基因转换和重组信号以及端粒复制。它们被认为是在复制、重组或单链末端延伸过程中通过DNA滑动和错配而积累的。为了系统整理DNA简单性的范围以及简单区域的遗传性质,我们对欧洲分子生物学实验室(EMBL)的DNA序列库进行了广泛的计算机搜索。我们在此表明,几乎所有可能的简单基序出现的频率比等效随机基序高5至10倍。此外,一种新的计算机算法揭示了在编码和非编码DNA中普遍存在着显著高水平的新型“隐蔽简单性”。隐蔽简单区域在核苷酸组成上存在偏差,由重复基序的混乱排列组成,这些排列在物种内部和物种之间有所不同。从单个基序的单调阵列到相对短暂基序的可变排列,DNA简单性的普遍存在表明,无处不在的类似滑动的机制是基因组所有区域遗传变异的主要来源,这是经典突变过程无法预测的。

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