Peng C K, Buldyrev S V, Havlin S, Simons M, Stanley H E, Goldberger A L
Department of Physics, Boston University, Massachusetts 02215, USA.
Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 1994 Feb;49(2):1685-9. doi: 10.1103/physreve.49.1685.
Long-range power-law correlations have been reported recently for DNA sequences containing noncoding regions. We address the question of whether such correlations may be a trivial consequence of the known mosaic structure ("patchiness") of DNA. We analyze two classes of controls consisting of patchy nucleotide sequences generated by different algorithms--one without and one with long-range power-law correlations. Although both types of sequences are highly heterogenous, they are quantitatively distinguishable by an alternative fluctuation analysis method that differentiates local patchiness from long-range correlations. Application of this analysis to selected DNA sequences demonstrates that patchiness is not sufficient to account for long-range correlation properties.
最近有报道称,包含非编码区的DNA序列存在长程幂律相关性。我们探讨了这样一个问题:这种相关性是否可能是DNA已知镶嵌结构(“斑驳性”)的一个平凡结果。我们分析了两类由不同算法生成的斑驳核苷酸序列组成的对照——一类没有长程幂律相关性,另一类有长程幂律相关性。尽管这两种类型的序列都高度异质,但通过一种能区分局部斑驳性和长程相关性的替代波动分析方法,它们在数量上是可区分的。将这种分析应用于选定的DNA序列表明,斑驳性不足以解释长程相关特性。