迭代函数系统分形用于DNA读框的检测和显示

D. Ashlock, J. B. Golden
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引用次数: 15

摘要

我们报告了一种使用进化算法来选择数据驱动迭代函数系统参数的技术。这种迭代函数系统通常由均匀随机数驱动以产生分形。取而代之的是,我们用一个有偏差的源来模拟有或没有停止密码子的DNA来驱动迭代功能系统。一种进化算法被用来产生分形,以直观地显示阅读框DNA。我们在两个不同的阅读框中使用结核分枝杆菌的全基因组进行第二组实验。用进化算法定位的分形正确地将模拟数据和分枝杆菌DNA分离为帧内和帧外。除非与迭代函数系统的不同成员相关联的点被遮蔽,否则分形不会给分枝杆菌数据的差异提供戏剧性的视觉线索。仔细检查分形可以深入了解DNA的结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Iterated function system fractals for the detection and display of DNA reading frame
We report a technique for using an evolutionary algorithm to select the parameters for a data-driven iterated function system. Such iterated function systems are typically driven with uniform random numbers to produce fractals. We instead drive the iterated function system with a biased source mimicking DNA with and without stop codons. An evolutionary algorithm is used to produce fractals that visually display the reading frame DNA. We perform a second set of experiments using the whole genome of mycobacterium tuberculosis in two different reading frames. The fractals located with our evolutionary algorithm correctly separate the DNA into in-frame and out-of-frame for the simulated data and the mycobacterium DNA. The fractals do not give dramatic visual cues to the differences for the mycobacterium data unless points associated with different members of the iterated function system are shaded. Close examination of the fractals yields insight into DNA structure.
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